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-<h1>About hypotheses</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> <span style="font-weight: bold;"><B>Hypotheses</B></span> represent
- boundary conditions which will be taken into account at calculations of
- meshes or submeshes basing on geometrical objects. These hypotheses allow
- you to manage the level of detail of the resulting meshes or submeshes:
- when applying different hypotheses with different parameters you can preset
- the quantity of meshing elements which will compose your mesh. So, it
- will be possible to generate a rough or a more refined mesh or submesh.
- </p>
-
-<p> </p>
-
-<p>In <span style="font-weight: bold;"><B>MESH </B></span>there are the following
- Basic Hypotheses (to introduce them, you operate numerical values):</p>
-
-<ul type="disc" class="whs2">
-
- <li style="list-style: circle; /*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- type=circle
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm">1D Hypotheses</a> (for meshing of <span style="font-weight: bold;"><B>edges)</B></span>:</p></li>
-
- <ul type="disc" class="whs2">
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm#arithmetic_1D">Arithmetic 1D</a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm#Average_length">Average Length</a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm#deflection_1D">Deflection 1D </a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm#Number_of_elements">Number of segments</a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm#start_and_end_length">Start and end length</a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="arithmetic_1d.htm#automatic_length">Automatic Length</a></p></li>
- </ul>
-
- <li style="list-style: circle; /*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- type=circle
- class=kadov-p><p class="whs3"><a href="max._element_area_hypothesis.htm">2D Hypotheses</a> (for meshing
- of <span style="font-weight: bold;"><B>faces)</B></span>: </p></li>
-</ul>
-
-<ol type="disc" class="whs4">
-
- <ul type="disc" class="whs2">
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="max._element_area_hypothesis.htm#max_element_area">Max Element Area</a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="max._element_area_hypothesis.htm#length_from_edges">Length from
- Edges</a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs3"><a href="max._element_area_hypothesis.htm#quadrangle preference">Quadrangle
- Preference</a></p></li>
- </ul>
-</ol>
-
-<ul type="disc" class="whs2">
-
- <li style="list-style: circle; /*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- type=circle
- class=kadov-p><p class="whs3">3D
- Hypothesis (for meshing of <span style="font-weight: bold;"><B>volumes)</B></span>:
- </p></li>
-
- <ul type="disc" class="whs2">
-
- <li class=kadov-p><p><a href="max._element_volume_hypothsis.htm">Max
- Element Volume</a></p></li>
- </ul>
-</ul>
-
-<p> </p>
-
-<p>There also exist some <a href="non_conform_mesh_allowed_hypothesis.htm">Additional
- Hypotheses</a></p>
-
-<ul type="disc" class="whs2">
-
- <ul type="disc" class="whs2">
-
- <li class=kadov-p><p>Propagation of 1D Hypothesis on opposite edges</p></li>
-
- <li class=kadov-p><p>Non conform mesh allowed</p></li>
-
- <li class=kadov-p><p>Quadratic mesh</p></li>
- </ul>
-</ul>
-
-<p> </p>
-
-<p>The choice of a hypothesis depends on:</p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p>the geometrical object (shape) which will be meshed</p></li>
-
- <li class=kadov-p><p>the algorithm, which will be selected for meshing
- of this geometrical object (shape)</p></li>
-</ul>
-
-<p> </p>
-
-<p> </p>
-
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-<h1>About meshes</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> <span style="font-weight: bold;"><B>MESH</B></span> represents
- a discretization of a geometrical CAD model into a set of entities with
- a simple topology. In MESH there are two options of creation of meshes,
- you can:</p>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p>generate meshes on the basis of geometrical shapes
- produced in the GEOM module, </p></li>
-
- <li class=kadov-p><p>create your own meshes using the MESH functions
- destined for modification of generated meshes. </p></li>
-</ul>
-
-<p> </p>
-
-<p>The topology of a mesh is described by the relationships between its
- entities including:</p>
-
-<p class="whs3"> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Node</B></span>
- \96 0D element of a mesh presented by a point with coordinates (x, y, z).</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Edge</B></span>
- \96 1D element of a mesh defined by two nodes.</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Face</B></span>
- \96 2D element of a mesh defined by three or four edges (closed contour).</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Volume</B></span>
- \96 3D element of a mesh defined by several faces.</p></li>
-</ul>
-
-<p class="whs3"> </p>
-
-<p class="whs4">These entities are considered as topological
- entities and they don't imply any geometric representation. Only <span
- style="font-weight: bold;"><B>Nodes</B></span> reference geometric
- representations of points with definite coordinates. <span style="text-indent: 8px;">The
- node entity will contain additional
- information about its position in the space and its relations with the
- meshed CAD model. Its position could be described in the following way:</span></p>
-
-<p class="whs4"> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>2D
- position</B></span>. It is a free position defined by only two coordinates
- x,y.</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>3D
- position</B></span>. It is a free position defined by three coordinates x,y
- and z.</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Surface
- position</B></span>. It characterizes the position of a node on a geometric
- surface and is defined by the u,v position in the parametric space of
- the corresponding surface.</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Line
- position</B></span>. It characterizes the position of a node on a geometric
- curve and is defined by the u parameter and the corresponding curve.</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Vertex
- position</B></span>. It characterizes the position of a node on a geometric
- point of the meshed CAD model and is defined by the x,y,z coordinates
- of the corresponding vertex.</p></li>
-</ul>
-
-<p class="whs3"> </p>
-
-<p class="whs3"> </p>
-
-<h4 class="whs5">Connections</h4>
-
-<p class="whs6">Each mesh entity bounds 0 or more mesh entities
- of higher dimension. In the same way each mesh entity is bounded by 0
- or more mesh entities of lower dimension:</p>
-
-<p class="whs6"> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs6">A node bounds edges,
- faces and volumes</p></li>
-
- <li class=kadov-p><p class="whs6">An edge bounds faces,
- and volumes</p></li>
-
- <li class=kadov-p><p class="whs6">A face bounds volumes</p></li>
-
- <li class=kadov-p><p class="whs6">A volume is bounded
- by faces, edges and nodes</p></li>
-
- <li class=kadov-p><p class="whs6">A face is bounded by
- edges, and nodes</p></li>
-
- <li class=kadov-p><p class="whs6">An edge is bounded by
- nodes</p></li>
-</ul>
-
-<p class="whs6"> </p>
-
-<p class="whs6">You can notice that there are two types of
- connections: <span style="font-weight: bold;"><B>inverse</B></span> and <span
- style="font-weight: bold;"><B>direct</B></span> connections.</p>
-
-<p class="whs6"> </p>
-
-<h4 class="whs5">Inverse connections</h4>
-
-<p class="whs6"> </p>
-
-<p class="whs6">This relationship has a particularity that
- the order of bounded entities has not a direct meaning. Also the number
- of bounded entities is not fixed.</p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"><img src="../pics/exemple.gif" x-maintain-ratio="TRUE" width="36px" height="38px" border="0" class="img_whs7"> The edges surrounding a node.
- The 3rd edge has no more sense that the 5th one.</p>
-
-<p class="whs6"> </p>
-
-<p class="whs8">Direct connections</p>
-
-<p class="whs6"> </p>
-
-<p class="whs6">This relationship has a particularity that
- the order of bounding entities is meaningful. The number of bounding entities
- is fixed and depends on the type of the entity (hexahedron, tetrahedron,\85).</p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"><img src="../pics/exemple.gif" x-maintain-ratio="TRUE" width="36px" height="38px" border="0" class="img_whs7"> An edge is composed of two
- nodes. A face is composed of 3 or 4 edges depending if we are dealing
- with triangles or quadrangles.</p>
-
-<p class="whs6"> </p>
-
-<p class="whs6">The connections are not only restricted to
- entities of one dimension higher or lower. For example some algorithms
- may be interested to retrieve all the faces surrounding a node.</p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"> </p>
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-<h1>Basic meshing algorithms</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> The MESH module contains a set of meshing algorithms,
- which are used for meshing entities (1D, 2D, 3D) composing geometrical
- objects. </p>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p>For meshing of 1D entities (<span style="font-weight: bold;"><B>edges</B></span>):</p></li>
-</ul>
-
-<p> </p>
-
-<ol type="disc" class="whs3">
-
- <ul type="disc" class="whs2">
-
- <li style="list-style: circle;"
- type=circle
- class=kadov-p><p>Wire Discretisation meshing algorithm - splits
- a wire into a number of mesh segments following any 1D hypothesis.</p></li>
-
- <li style="list-style: circle;"
- type=circle
- class=kadov-p><p>Composite Side Discretisation algorithm -
- allows to apply any 1D hypothesis to a whole side of a geometrical face
- even if it is composed of several edges provided that they form C1 curve,
- have the same hypotheses assigned and form one side in all faces of the
- main shape of a mesh.</p></li>
- </ul>
-</ol>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p>For meshing of 2D entities (<span style="font-weight: bold;"><B>faces</B></span>):</p></li>
-</ul>
-
-<p> </p>
-
-<ol type="disc" class="whs3">
-
- <ul type="circle" class="whs4">
-
- <li class=kadov-p><p>Triangle meshing algorithms (Mefisto and Netgen
- 1D-2D ) - Faces are split into triangular elements.</p></li>
-
- <li class=kadov-p><p>Quadrangle meshing algorithm (Mapping) - Faces
- are split into quadrangular elements.</p></li>
- </ul>
-</ol>
-
-<p> </p>
-
-<table x-use-null-cells cellspacing="0" width="45.771%" class="whs5">
-<col class="whs6">
-<col class="whs7">
-
-<tr valign="top" class="whs8">
-<td width="42.826%" class="whs9">
-<p class="whs10"><img src="../image123.gif" width="170px" height="170px" border="0" class="img_whs11"></td>
-<td width="57.174%" class="whs12">
-<p class="whs13"><img src="../image124.gif" width="182px" height="177px" border="0" class="img_whs14"></td></tr>
-</table>
-
-<p> </p>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p>For meshing of 3D entities (<span style="font-weight: bold;"><B>volume
- objects</B></span>):</p></li>
-</ul>
-
-<p> </p>
-
-<ol type="disc" class="whs3">
-
- <ul type="circle" class="whs4">
-
- <li class=kadov-p><p>Hexahedron meshing algorithm (i,j,k) - Volumes
- are split into hexahedral (cubic) elements. </p></li>
-
- <li class=kadov-p><p>Tetrahedron (Netgen) meshing algorithm - Volumes
- are split into tetrahedral (pyramidal) elements. </p></li>
- </ul>
-</ol>
-
-<p> </p>
-
-<table x-use-null-cells cellspacing="0" width="30.595%" class="whs15">
-<col class="whs16">
-<col class="whs17">
-
-<tr valign="top" class="whs8">
-<td width="50.334%" class="whs18">
-<p><img src="../image125.gif" width="119px" height="299px" border="0" class="img_whs19"> </td>
-<td width="49.666%" class="whs20">
-<p><img src="../image126.gif" width="127px" height="298px" border="0" class="img_whs21"></td></tr>
-</table>
-
-<p> </p>
-
-<p> </p>
-
-<p>There also is a number of more specific algorithms: </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p><a href="../projection_algorithms.htm">for meshing
- by projection of another mesh</a></p></li>
-
- <li class=kadov-p><p><a href="../radial_prism.htm">for meshing geometrical
- objects with cavities</a></p></li>
-
- <li class=kadov-p><p><a href="../prism_3d_algorithm.htm">for meshing
- prismatic shapes.</a> </p></li>
-</ul>
-
-<h4 class="whs22"><a href="constructing_meshes.htm">Constructing
- meshes</a> <span style="font-weight: normal;">page describes in detail
- how to apply meshing algorithms.</span><a href="constructing_meshes.htm" style="font-weight: bold;">
- </a></h4>
-
-<p class="whs23"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark8">Define
- Meshing Algorithm</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
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-
-<head>
-<title>About quality controls</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>About quality controls</h1>
-
-<p class="whs1"><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs2"> <span style="font-weight: bold;"><B>Mesh
- quality control</B></span> in MESH is destined for visual control of the generated
- mesh.</p>
-
-<p class="whs1">Application of a definite quality control
- consists of usage of the corresponding algorithm, which calculates a value
- of a definite geometric characteristic (Area, Length of edges, etc) for
- all meshing elements, composing your mesh. Then all meshing elements are
- colored according the calculated values. The reference between the coloring
- of the meshing elements and these calculated values is shown with the
- help of a scalar bar, which is displayed near the presentation of your
- mesh. </p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">There are 1D, 2D and 3D quality controls.
- </p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">1D mesh quality controls:</p>
-
-<p class="whs1"> </p>
-
-<ul type="disc" class="whs3">
-
- <li class=kadov-p><p class="whs1"><a href="../free_borders.htm">Free
- borders</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="../borders_at_multi-connection.htm">Borders
- at multi-connection</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="../length.htm">Length</a></p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2D mesh quality controls:</p>
-
-<p class="whs1"> </p>
-
-<ul type="disc" class="whs3">
-
- <li class=kadov-p><p class="whs1"><a href="../free_edges.htm">Free
- edges</a></p></li>
-</ul>
-
-<ul type="disc" class="whs3">
-
- <li class=kadov-p><p class="whs1"><a href="length_of_edges.htm">Length
- 2D</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="../borders_at_multiconnection_2d.htm">Borders
- at multi-connection 2D</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="area_of_elements.htm">Area</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="taper.htm">Taper</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="aspect_ratio.htm">Aspect
- ratio</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="minimum_angle.htm">Minimum
- angle</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="warp.htm">Warping</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="skew.htm">Skew</a></p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class="whs1">3D mesh quality controls:</p>
-
-<p class="whs1"> </p>
-
-<ul type="disc" class="whs3">
-
- <li class=kadov-p><p class="whs1"><a href="../aspect_ratio_3d.htm">Aspect
- ratio 3D</a></p></li>
-
- <li class=kadov-p><p class="whs1"><a href="../volume.htm">Volume</a></p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
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-</body>
-</html>
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-
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-
-<head>
-<title>Adding nodes and elements</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Adding nodes and elements</h1>
-
-<p>In MESH you can add to your mesh different elements such as:</p>
-
-<p> </p>
-
-<ul type="disc" class="whs1">
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_nodes">Nodes</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_edges">Edges</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_triangles">Triangles</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_quadrangles">Quadrangles</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_polygons">Polygons</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_tetrahedrons">Tetrahedrons</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_hexahedrons">Hexahedrons</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a href="#Adding_polyhedrons">Polyhedrons</a></p></li>
-</ul>
-
-<p> </p>
-
-<p class=TODO>To add a node or an element to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs3">1. Select your mesh in the Object Browser
- or in the 3D viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">2. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose the <span style="font-weight: bold;"><B>Add </B></span>item,
- the following associated submenu will appear:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../image146.gif" width="155px" height="189px" border="0" class="img_whs4"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">From this submenu select the type of element
- which you would like to add to your mesh. </p>
-
-<p class="whs3"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> sample TUI Scripts of <a href="../modifying_meshes.htm#bookmark">Adding
- Nodes and Elements</a><a href="../modifying_meshes.htm#bookmark8"> </a>operations.
- </p>
-
-<p> </p>
-
-<h4><a name=Adding_nodes>Adding nodes</a></h4>
-
-<p class="whs3"><img src="../pics/addnode.png" x-maintain-ratio="TRUE" width="332px" height="222px" border="0" class="img_whs5"> </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"> <img src="../pics/add_node.png" x-maintain-ratio="TRUE" width="257px" height="247px" border="0" class="img_whs6"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box set coordinates for your
- node in the <span style="font-weight: bold;"><B>Coordinates </B></span>set of
- fields and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. Your node will be created:</p>
-
-<p class="whs3"> </p>
-
-<h4><a name=Adding_edges>Adding edges</a></h4>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/addedge.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs7"> <img src="../pics/add_edge.png" x-maintain-ratio="TRUE" width="260px" height="255px" border="0" class="img_whs8"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box specify the nodes which
- will form your edge by selecting them in the 3D viewer with pressed Shift
- button and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. Your edge will be created:</p>
-
-<p class="whs3"> </p>
-
-<h4><a name=Adding_triangles>Adding triangles</a></h4>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../pics/addtriangle.png" x-maintain-ratio="TRUE" width="332px" height="257px" border="0" class="img_whs9"> <img src="../pics/add_triangle.png" x-maintain-ratio="TRUE" width="275px" height="254px" border="0" class="img_whs10"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box specify the nodes which
- will form your triangle by selecting them in the 3D viewer with pressed
- Shift button and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. Your triangle will
- be created:</p>
-
-<p class="whs3"> </p>
-
-<h4><a name=Adding_quadrangles>Adding quadrangles</a></h4>
-
-<h4 class="whs11"><img src="../pics/addquadrangle.png" x-maintain-ratio="TRUE" width="332px" height="257px" border="0" class="img_whs9"> <img src="../pics/add_quadrangle.png" x-maintain-ratio="TRUE" width="280px" height="258px" border="0" class="img_whs12"></h4>
-
-<p class="whs3">In this dialog box specify the nodes which
- will form your quadrangle by selecting them in the 3D viewer with pressed
- Shift button and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. Your quadrangle will
- be created:</p>
-
-<p class="whs3"> </p>
-
-<h4><a name=Adding_polygons>Adding polygons</a><a name=Adding_quadrangles1>
- </a></h4>
-
-<h4 class="whs11"><img src="../pics/addpolygon.png" x-maintain-ratio="TRUE" width="332px" height="257px" border="0" class="img_whs9"> <img src="../pics/add_polygone.png" x-maintain-ratio="TRUE" width="251px" height="258px" border="0" class="img_whs13"></h4>
-
-<p class="whs3">In this dialog box specify the nodes which
- will form your polygon by selecting them in the 3D viewer with pressed
- Shift button and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. </p>
-
-<p class="whs3"> </p>
-
-<h4><a name=Adding_tetrahedrons>Adding tetrahedrons</a></h4>
-
-<p class="whs3"><img src="../pics/addtetrahedron.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs7"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box specify the nodes which
- will form your tetrahedron by selecting them in the 3D viewer with pressed
- Shift button and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. Your tetrahedron will
- be created:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../image70.jpg" width="350px" height="184px" border="0" class="img_whs14"></p>
-
-<h4><a name=Adding_hexahedrons>Adding hexahedrons</a></h4>
-
-<p class="whs3"><img src="../pics/addhexahedron.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs7"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box specify the nodes which
- will form your hexahedron by selecting them in the 3D viewer with pressed
- Shift button and click the <span style="font-weight: bold;"><B>Apply </B></span>or
- <span style="font-weight: bold;"><B>OK </B></span>button. Your hexahedron will
- be created:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../image71.jpg" width="350px" height="184px" border="0" class="img_whs14"></p>
-
-<p class="whs3"> </p>
-
-<h4><a name=Adding_polyhedrons>Adding polyhedrons</a></h4>
-
-<p class="whs3"><img src="../pics/a-createpolyhedralvolume.png" x-maintain-ratio="TRUE" width="332px" height="430px" border="0" class="img_whs15"> <img src="../pics/add_polyhedron.png" x-maintain-ratio="TRUE" width="369px" height="360px" border="0" class="img_whs16"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">There are two different ways to add polyhedral
- volumes. </p>
-
-<p class="whs3">If you select <span style="font-weight: bold;"><B>Node</B></span>
- as <span style="font-weight: bold;"><B>Elements Type</B></span> you will specify
- the nodes which will form the faces of your polyhedron by selecting the
- nodes in the 3D viewer with pressed Shift button and clicking the <span
- style="font-weight: bold;"><B>Add</B></span> button to add the face in the list
- of Faces by Nodes, which will form your polyhedron. Note, that it could
- be very useful to toggle Polyhedron Preview checkbox to see the results
- of your selection. </p>
-
-<p class="whs3">The second way is somewhat simpler, however,
- there are cases when it does not provide you with the necessary level
- of precision. If you select <span style="font-weight: bold;"><B>Face</B></span>
- as <span style="font-weight: bold;"><B>Elements Type</B></span>, you will be
- able to select the faces which
- will form your polyhedron in the 3D viewer with pressed Shift button.
- If you've managed to </p>
-
-<p class="whs3">obtain the necessary result, click the <span
- style="font-weight: bold;"><B>Apply </B></span>or <span style="font-weight: bold;"><B>OK
- </B></span><span style="margin-left: 40px;">button. Your hexahedron will be
- created.</span></p>
-
-<p class="whs3"> </p>
-
-<p> </p>
-
-<p class="whs3"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Area of elements</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-</script>
-<h1>Area</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> <span style="font-weight: bold;"><B>Area </B></span>mesh quality
- control is based on the algorithm of area calculation of meshing
- elements. It can be applied to meshes consisting of 2D meshing elements
- with 3 and 4 nodes (triangles and quadrangles). </p>
-
-<p> </p>
-
-<p class=TODO>To apply the Area quality control to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Display your mesh in the viewer.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">2. Choose <span style="font-weight: bold;"><B>Controls
- > Area </B></span>or click <img src="../image35.gif" width="22px" height="23px" border="0" class="img_whs3"> button. Your mesh will be displayed
- in the viewer with its elements colored according to the applied mesh
- quality control criterion:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../image5.jpg" width="451px" height="308px" border="0" class="img_whs4"></p>
-
-<p class="whs5"> </p>
-
-<p class="whs5"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of an <a href="../quality_controls.htm#bookmark6">Area
- quality control</a> operation. </p>
-
-<p> </p>
-
-<p class="whs2"> </p>
-
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
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-
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-<h1>1D Meshing Hypotheses</h1>
-
-<ul type="disc" class="whs1">
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="arithmetic_1d.htm#arithmetic_1D"><span
- style="font-weight: bold;"><B>Arithmetic 1D</B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="arithmetic_1d.htm#Average_length"><span
- style="font-weight: bold;"><B>Average Length</B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="arithmetic_1d.htm#deflection_1D"><span
- style="font-weight: bold;"><B>Deflection 1D </B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="arithmetic_1d.htm#Number_of_elements"><span
- style="font-weight: bold;"><B>Number of segments</B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="arithmetic_1d.htm#start_and_end_length"><span
- style="font-weight: bold;"><B>Start and end length</B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="arithmetic_1d.htm#automatic_length"><span
- style="font-weight: bold;"><B>Automatic Length</B></span></a></p></li>
-</ul>
-
-<h3><a name=arithmetic_1D>Arithmetic 1D hypothesis</a></h3>
-
-<p><span style="font-weight: bold;"><B>Arithmetic 1D</B></span> hypothesis allows
- to split edges into segments with a length that changes in arithmetic
- progression (Lk = Lk-1 + d) beginning from a given starting length and
- up to a given end length.</p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/a-arithmetic1d.png" x-maintain-ratio="TRUE" width="332px" height="238px" border="0" class="img_whs4"> <img src="../pics/b-ithmetic1d.png" x-maintain-ratio="TRUE" width="309px" height="316px" border="0" class="img_whs5"></p>
-
-<p> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark">Defining
- Arithmetic 1D hypothesis</a> operation. </p>
-
-<h3><a name=deflection_1D>Deflection 1D hypothesis</a></h3>
-
-<p><span style="font-weight: bold;"><B>Deflection ID </B></span>hypothesis can
- be applied for meshing curvilinear edges composing your geometrical object.
- It uses only one parameter: the value of deflection. </p>
-
-<p>A geometrical edge is divided into equal segments. The maximum distance
- between a point on the edge within a segment and the line connecting the
- ends of the segment should not exceed the specified value of deflection
- . Then mesh nodes are constructed at end segment locations and 1D mesh
- elements are constructed on segments.</p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/a-deflection1d.png" x-maintain-ratio="TRUE" width="332px" height="212px" border="0" class="img_whs7"> <img src="../pics/b-flection1d.png" x-maintain-ratio="TRUE" width="267px" height="339px" border="0" class="img_whs8"></p>
-
-<p> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark9">Defining
- Deflection 1D hypothesis</a> operation. </p>
-
-<p> </p>
-
-<p class="whs9"><img src="../image41.gif" x-maintain-ratio="TRUE" width="367px" height="224px" align="right" border="0" class="img_whs10"></p>
-
-<h3><a name=Average_length>Average Length hypothesis</a></h3>
-
-<p><span style="font-weight: bold;"><B>Average Length </B></span>hypothesis can
- be applied for meshing of edges composing your geometrical object. Definition
- of this hypothesis consists of setting the <span style="font-weight: bold;"><B>length</B></span>
- of segments, which will split these edges. The points on the edges generated
- by these segments will represent nodes of your mesh. Later these nodes
- will be used for meshing of the faces abutting to these edges.</p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/a-averagelength.png" x-maintain-ratio="TRUE" width="332px" height="212px" border="0" class="img_whs7"> <img src="../pics/b-erage_length.png" x-maintain-ratio="TRUE" width="252px" height="243px" border="0" class="img_whs11"></p>
-
-<p> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark3">Defining
- Average Length hypothesis</a> operation. </p>
-
-<p> </p>
-
-<p class="whs12"><img src="../image46.gif" x-maintain-ratio="TRUE" width="431px" height="233px" align="right" border="0" class="img_whs13"></p>
-
-<h3><a name=Number_of_elements>Number of segments hypothesis</a> </h3>
-
-<p><span style="font-weight: bold;"><B>Number of segments </B></span>hypothesis
- can be applied for meshing of edges composing your geometrical object.
- Definition of this hypothesis consists of setting the <span style="font-weight: bold;"><B>number</B></span>
- of segments, which will split these edges. In other words your edges will
- be split into a definite number of segments with approximately the same
- length. The points on the edges generated by these segments will represent
- nodes of your mesh. Later these nodes will be used for meshing of the
- faces abutting to these edges.</p>
-
-<p> </p>
-
-<p class="whs6">You can set the type of distribution for this
- hypothesis in the <span style="font-weight: bold;"><B>Hypothesis Construction</B></span>
- dialog bog : </p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>Equidistant
- Distribution</B></span> - all segments will have the same length, you define
- only the <span style="font-weight: bold;"><B>Number of Segments</B></span>.</p>
-
-<p class="whs6"> </p>
-
-<p class="whs3"><img src="../pics/a-nbsegments1.png" x-maintain-ratio="TRUE" width="332px" height="238px" border="0" class="img_whs4"> <img src="../pics/b-mberofsegments.png" x-maintain-ratio="TRUE" width="395px" height="387px" border="0" class="img_whs14"></p>
-
-<p> </p>
-
-<p class="whs9">Scale Distribution - <span style="font-weight: normal;">each
- next segment differs from the previous according to the formula:</span>
- A<span style="vertical-align: Sub;">i+1</span> = A<span style="vertical-align: Sub;">i
- </span>* k, <span style="font-weight: normal;">where</span> k <span style="font-weight: normal;">is
- a</span> Scale Factor. </p>
-
-<p class="whs12"><img src="../pics/a-nbsegments2.png" x-maintain-ratio="TRUE" width="332px" height="264px" border="0" class="img_whs15">\</p>
-
-<p class="whs9"> </p>
-
-<p class="whs9">Distribution with Table Density - <span style="font-weight: normal;">you
- input a number of pairs</span> t - F(t),<span style="font-weight: normal;">
- where </span>t<span style="font-weight: normal;"> ranges from 0 to 1,</span>
- <span style="font-weight: normal;">and
- the module computes the formula, which will rule the change of length
- of segments and shows the curve in the plot. You can select the </span>Conversion
- mode<span style="font-weight: normal;"> from </span>Exponent<span style="font-weight: normal;">
- and </span>Cut negative<span style="font-weight: normal;">. </span></p>
-
-<p class="whs9"> </p>
-
-<p class="whs12"><img src="../pics/distributionwithtabledensity.png" x-maintain-ratio="TRUE" width="368px" height="760px" border="0" class="img_whs16"></p>
-
-<p class="whs9"> </p>
-
-<p class="whs9">Distribution with Analytic Density - <span
- style="font-weight: normal;">you input the formula, which will rule the
- change of length of segments and the module shows the curve in the plot.</span></p>
-
-<h3 class="whs17"><img src="../pics/distributionwithanalyticdensity.png" x-maintain-ratio="TRUE" width="365px" height="605px" border="0" class="img_whs18"></h3>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark9">Defining
- Number of Segments hypothesis</a> operation. </p>
-
-<h3> </h3>
-
-<h3><a name=start_and_end_length>Start and End Length hypothesis.</a></h3>
-
-<p><span style="font-weight: bold;"><B>Start and End Length</B></span> hypothesis
- allows to divide a geometrical edge into segments so that the first and
- the last segments have a specified length. The length of each but the
- first segment differs from length of the previous one by a constant factor.
- Then mesh nodes are constructed at segment ends location and 1D mesh elements
- are constructed on them.</p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/a-startendlength.png" x-maintain-ratio="TRUE" width="332px" height="238px" border="0" class="img_whs4"> <img src="../pics/b-art_end_length.png" x-maintain-ratio="TRUE" width="287px" height="305px" border="0" class="img_whs19"></p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark3">Defining
- Start and End Length hypothesis</a>
- operation. </p>
-
-<p class="whs6"> </p>
-
-<h3><a name=automatic_length>Automatic Length</a></h3>
-
-<p>This hypothesis is automatically applied when you select <span style="font-weight: bold;"><B>Assign
- a set of hypotheses</B></span> option in Create Mesh menu. </p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/automaticlength.png" x-maintain-ratio="TRUE" width="205px" height="175px" border="0" class="img_whs20"> </p>
-
-<p> </p>
-
-<p>The dialog box prompts you to define the quality of the future mesh
- by only one parameter, which is <span style="font-weight: bold;"><B>Fineness</B></span>,
- ranging from 0 (coarse mesh, low number of elements) to 1 (extremely fine
- mesh, great number of elements). Compare one and the same object (sphere)
- meshed with minimum and maximum value of this parameter. </p>
-
-<p> </p>
-
-<p class="whs3"><img src="../image147.gif" width="195px" height="192px" border="0" class="img_whs21"> <img src="../image148.gif" width="206px" height="195px" border="0" class="img_whs22"></p>
-
-<p> </p>
-
-<p> </p>
-
-<p> </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
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-</script>
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-<h1>Aspect Ratio</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> The <span style="font-weight: bold;"><B>Aspect Ratio</B></span>
- quality criterion for mesh elements reveals the degree of conformity of
- a mesh element to the regular element of its type (with all edges having
- the same length). The
- criterion can be defined as </p>
-
-<p class="whs2"><img src="../image142.gif" width="120px" height="56px" border="0" class="img_whs3">where <span style="font-weight: bold; font-style: italic;"><I><B>К</B></I></span>
- is the considered element of the mesh, <span style="font-weight: bold; font-style: italic;"><I><B>h</B></I></span><span
- style="vertical-align: Sub;
- font-weight: bold;
- font-style: italic;"><I><B>max</B></I></span> is the diameter of the element
- К (i.e. the length of the longest edge), <span style="font-weight: bold; font-style: italic;"><I><B>р</B></I></span><span
- style="vertical-align: Sub;
- font-weight: bold;
- font-style: italic;"><I><B>к</B></I></span> is the radius of the sphere
- inscribed in the element K, and <span style="font-weight: bold; font-style: italic;"><I><B>a</B></I></span>
- is a normalisation value chosen so that <span style="font-weight: bold; font-style: italic;"><I><B>Q</B></I></span><span
- style="vertical-align: Sub;
- font-weight: bold;
- font-style: italic;"><I><B>K</B></I></span> = 1 when К is an equilateral
- simplex. </p>
-
-<p class="whs2"> </p>
-
-<p>The value of <span style="font-weight: bold; font-style: italic;"><I><B>Q</B></I></span><span
- style="vertical-align: Sub;
- font-weight: bold;
- font-style: italic;"><I><B>K</B></I></span> varies between 1 and +oo and the
- closer it is to 1, the better the element К is. </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p>The <span style="font-weight: bold;"><B>Aspect Ratio</B></span>
- of a <span style="font-weight: bold;"><B>triangle</B></span> 2D element consisting
- of 3 nodes is calculated by the formula:</p></li>
-</ul>
-
-<p> </p>
-
-<p class="whs2"><img src="../pics/image21.gif" x-maintain-ratio="TRUE" width="158px" height="110px" border="0" class="img_whs5"></p>
-
-<p class="whs2"><img src="../pics/image23.gif" x-maintain-ratio="TRUE" width="120px" height="48px" border="0" class="img_whs6"> ,</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">where <span style="font-weight: bold; font-style: italic;"><I><B>р</B></I></span><span
- style="vertical-align: Sub;
- font-weight: bold;
- font-style: italic;"><I><B>к</B></I></span> is the half perimeter of the
- element K and <span style="font-weight: bold; font-style: italic;"><I><B>S</B></I></span><span
- style="vertical-align: Sub;
- font-weight: bold;
- font-style: italic;"><I><B>K</B></I></span> is its surface.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../pics/image27.gif" x-maintain-ratio="TRUE" width="234px" height="96px" border="0" class="img_whs7"></p>
-
-<p class="whs8"> </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs8">The <span style="font-weight: bold;"><B>Aspect
- Ratio</B></span> of a <span style="font-weight: bold;"><B>quadrangle</B></span> 2D
- element consisting of 4 nodes is the worst (i.e. the greatest) value from
- all triangles which can be built taking three nodes of the quadrangle.
- There are four triangles to consider: </p></li>
-</ul>
-
-<p class="whs9"><img src="../pics/image138.gif" x-maintain-ratio="TRUE" width="622px" height="412px" border="0" class="img_whs10"></p>
-
-<p class="whs9">Note, that the Aspect Ratio criterion is
- applicable to 2D mesh elements only. For 3D elements we use the <a href="../aspect_ratio_3d.htm">Aspect
- Ratio 3D</a> criterion. </p>
-
-<p class="whs11"> </p>
-
-<p class=TODO>To apply the Aspect Ratio quality criterion to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Display your mesh in the viewer.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">2. Choose <span style="font-weight: bold;"><B>Controls
- > Aspect Ratio </B></span>or click <img src="../image37.gif" width="25px" height="24px" border="0" class="img_whs12"> button in the toolbar.
- Your mesh will be displayed in the viewer with its elements colored according
- to the applied mesh quality control criterion:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../image94.jpg" width="439px" height="313px" border="0" class="img_whs13"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs8"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of an <a href="../quality_controls.htm#bookmark8">Aspect
- Ratio quality control</a> operation. </p>
-
-<p> </p>
-
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+++ /dev/null
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-<title>Changing orientation of elements</title>
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-<h1>Changing orientation of elements</h1>
-
-<p>Orientation of an element is changed by reverting the order of nodes
- of the selected elements.</p>
-
-<p> </p>
-
-<p class=TODO>To change orientation of elements:</p>
-
-<p> </p>
-
-<p class="whs1">1. Display a mesh or a submesh in the 3D
- viewer.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2. In the <span style="font-weight: bold;"><B>Modification
- </B></span>menu select the <span style="font-weight: bold;"><B>Orientation </B></span>item
- or click <img src="../image79.gif" width="21px" height="21px" border="0" class="img_whs2"> button in the toolbar. The following dialog box
- will appear:</p>
-
-<p> </p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/orientaation1.png" x-maintain-ratio="TRUE" width="306px" height="425px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p> </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs5"><span
- style="font-weight: bold;"><B>The main list </B></span><span>shall contain the
- elements which will be reoriented.</span> You can click on an element
- in the 3D viewer and it will be highlighted. After that click the <span
- style="font-weight: bold;"><B>Add </B></span>button and the ID of this element
- will be added to the list. To remove a selected element or elements from
- the list click the <span style="font-weight: bold;"><B>Remove </B></span>button.
- The <span style="font-weight: bold;"><B>Sort </B></span>button allows to sort
- the list of elements IDs. The <span style="font-weight: bold;"><B>Set filter
- </B></span>button allows to apply a definite filter to selection of elements
- of your group.</p></li>
-
- <li class=kadov-p><p class="whs5"><span
- style="font-weight: bold;"><B>Apply to all </B></span><span>radio button allows
- to modify the orientation of all elements of the currently displayed mesh
- or submesh.</span></p></li>
-
- <li class=kadov-p><p class="whs5"><span
- style="font-weight: bold;"><B>Select from </B></span>set of fields allows to
- choose a submesh or an existing group whose elements will be automatically
- added to the list.</p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class="whs1">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button to confirm
- the operation.</p>
-
-<p class="whs1"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark12">Change
- Orientation</a> operation. </p>
-
-<p> </p>
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-<title>Constructing groups of specific elements</title>
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-<h1>Constructing groups of specific elements</h1>
-
-<p>In MESH you can easily construct groups of specific elements (nodes,
- edges, faces or volumes) which will be taken from a definite submesh.</p>
-
-<p> </p>
-
-<p class=TODO>To construct a group of specific elements:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">Right-click on a submesh in the Object Browser
- and choose the <span style="font-weight: bold;"><B>Construct Group </B></span>item
- or select your submesh in the Object Browser and in the <span style="font-weight: bold;"><B>Mesh
- </B></span>menu choose the <span style="font-weight: bold;"><B>Construct Group
- </B></span>item. MESH will construct several groups consisting of elements
- of the definite type: nodes, edges, faces or volumes.</p>
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+++ /dev/null
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-<title>Constructing meshes</title>
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-<h1>Constructing meshes</h1>
-
-<p class="whs1">Construction of a mesh consists of:</p>
-
-<p class="whs1"> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs1">Selecting a geometrical
- object for meshing</p></li>
-
- <li class=kadov-p><p class="whs1">Applying <a href="about_meshing_algorithms.htm">meshing
- algorithms</a> and <a href="about_hypotheses.htm">hypotheses</a> which
- will be used at computation of this mesh.</p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class=TODO>To construct a mesh:</p>
-
-<p class="whs3">1. In the <span style="font-weight: bold;"><B>Mesh
- </B></span>menu select<span style="font-weight: bold;"><B> Create Mesh </B></span>or
- click <img src="../image32.gif" width="22px" height="24px" border="0" class="img_whs4"> button in the toolbar. The following dialog box will
- appear:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs5"><img src="../pics/createmesh-inv.png" x-maintain-ratio="TRUE" width="370px" height="296px" border="0" class="img_whs6"></p>
-
-<p class="whs5"> </p>
-
-<p class="whs3">2. For example, you need to mesh a 3d object.
- </p>
-
-<p class="whs3">First, type the name for your mesh in the
- "Name" box, by default, it is "Mesh_1". Then select
- the object you wish to mesh in the Object Browser <img src="../image119.gif" width="173px" height="88px" border="0" class="img_whs7">and click
- the <img src="../image120.gif" width="34px" height="29px" border="0" class="img_whs8"> "Add" button. </p>
-
-<p class="whs3">Now you can define 1d Algorithm and 1d Hypotheses,
- which will be applied to the edges of your object. (Note that any object
- has edges, even if their existence is not apparent, for example, a sphere
- has 4 edges). Click the <img src="../image121.gif" width="29px" height="28px" border="0" class="img_whs9"> button to add a hypothesis. Click the <img src="../image122.gif" width="30px" height="29px" border="0" class="img_whs10"> button
- to define values for the current hypothesis. The use of additional hypotheses
- is optional (i.e. you may leave "None" in this box). </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">Proceed in the same way with 2d and 3d Algorithms
- and Hypotheses, note that the choice of hypotheses depends on the algorithm.
- There must be one Algorithm and one or several Hypotheses for each dimension
- of your object, otherwise you will not get any mesh at all. Of course,
- if you wish to mesh a face, which is a 2d object, you don't need to define
- 3d Algorithm and Hypotheses. </p>
-
-<p class="whs3">In the <span style="font-weight: bold;"><B>Object
- Browser</B></span> the structure of the new mesh will be displayed as follows:</p>
-
-<p class="whs3"><img src="../image88.jpg" width="232px" height="142px" align="right" border="0" class="img_whs11">It contains:</p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs3">a reference to the
- geometrical object on the basis of which the mesh has been constructed;</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Applied
- hypotheses </B></span>folder containing the references to the hypotheses applied
- to the construction of the mesh;</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Applied
- algorithms </B></span>folder containing the references to the algorithms applied
- to the construction of the mesh.</p></li>
-</ul>
-
-<p class="whs3"> </p>
-
-<p class="whs3">There is an alternative way to create a mesh
- on an object simply by clicking <span style="font-weight: bold;"><B>Assign
- a set of hypotheses </B></span>button and selecting between Automatic Tetrahedralization
- or Hexahedralization. The
- program will automatically generate a 3D mesh with the most appropriate
- settings. In the same way you can apply this functionality for meshing
- 2D objects, in which case 3D algorithms are not applied. </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">3. Now, when everything is ready, select
- your mesh in the <span style="font-weight: bold;"><B>Object Browser</B></span>.
- From the
- <span style="font-weight: bold;"><B>Mesh </B></span>menu select<span style="font-weight: bold;"><B>
- Compute </B></span>or click <img src="../image28.gif" width="25px" height="24px" border="0" class="img_whs12"> button of the toolbar. The Mesh
- Computation information box appears.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../pics/meshcomputationsucceed.png" x-maintain-ratio="TRUE" width="457px" height="486px" border="0" class="img_whs13"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">If the mesh computation failed, the information
- about the cause of the failure is provided. </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../pics/meshcomputationfail.png" x-maintain-ratio="TRUE" width="564px" height="402px" border="0" class="img_whs14"> </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">After you select the error, <span style="font-weight: bold;"><B>Show
- Subshape</B></span> button allows visualizing the mesh elements that cause
- it</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../pics/failed_computation.png" x-maintain-ratio="TRUE" width="260px" height="270px" border="0" class="img_whs15"> </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><span style="font-weight: bold;"><B>Publish
- Subshape</B></span> button allows importing it in a separate MED or UNV file.
- </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">Consider trying a sample script for construction
- of a mesh from our <a href="../constructing_meshes.htm">TUI Scripts</a>
- section.</p>
-
-<p class="whs3"> </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
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-
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-<title>Constructing submeshes</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Constructing submeshes</h1>
-
-<p class="whs1">Construction of a submesh consists of:</p>
-
-<p class="whs1"> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs1">Selecting a mesh which
- will encapsulate your submesh</p></li>
-
- <li class=kadov-p><p class="whs1">Selecting a geometrical
- object for meshing</p></li>
-
- <li class=kadov-p><p class="whs1">Applying one or several
- previously <a href="about_hypotheses.htm">hypotheses</a> and <a href="about_meshing_algorithms.htm">meshing
- algorithms</a> which will be used at computation of this submesh.</p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class=TODO>To construct a submesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs3">From the <span style="font-weight: bold;"><B>Mesh
- </B></span>menu select<span style="font-weight: bold;"><B> Local Hyp. </B></span>or
- click <img src="../image33.gif" width="27px" height="25px" border="0" class="img_whs4"> button in the toolbar. The following dialog box will
- appear:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs5"><img src="../pics/createmesh-inv2.png" x-maintain-ratio="TRUE" width="370px" height="326px" border="0" class="img_whs6"></p>
-
-<p class="whs7"> </p>
-
-<p class="whs7">It allows to define the <span style="font-weight: bold;"><B>Name</B></span>,
- the parent <span style="font-weight: bold;"><B>Mesh</B></span> and the <span
- style="font-weight: bold;"><B>Geometry</B></span> (e.g. a face if the parent
- mesh has been built on box) of the submesh. You can define algorithms
- and hypotheses in the same way as in <a href="constructing_meshes.htm">Create
- mesh</a> menu. </p>
-
-<p class="whs5"> </p>
-
-<p class="whs3">In the Object Browser the structure of the
- new submesh will be displayed as follows:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../image10.jpg" width="224px" height="212px" border="0" class="img_whs8"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">It contains:</p>
-
-<p class="whs3"> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs3">a reference to the
- geometrical object on the basis of which the submesh has been constructed;</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Applied
- hypotheses </B></span>folder containing the references to the hypotheses applied
- to the construction of the submesh;</p></li>
-
- <li class=kadov-p><p class="whs3"><span style="font-weight: bold;"><B>Applied
- algorithms </B></span>folder containing the references to the algorithms applied
- to the construction of the submesh.</p></li>
-</ul>
-
-<p class="whs3"> </p>
-
-<p class="whs5"> </p>
-
-<p class="whs1"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../constructing_meshes.htm#bookmark1">Construct
- Submesh</a> operation. </p>
-
-<p> </p>
-
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-<!--
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+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Creating groups</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Creating groups</h1>
-
-<p class="whs1"><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs2"> <span
- style="font-weight: normal;">In MESH you
- can create groups of elements of different types. To create a group of
- elements</span><span style="font-weight: normal; margin-left: 40px;">
- in the </span><span style="margin-left: 40px;">Mesh</span><span style="font-weight: normal; margin-left: 40px;">
- menu select </span><span style="margin-left: 40px;">Create Group</span><span
- style="font-weight: normal; margin-left: 40px;">.</span><span style="margin-left: 40px;">
- </span></p>
-
-<p class="whs3">To create any group
- you should define the following: </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs5">Mesh:
- <span style="font-weight: normal;">the name of the mesh whose elements
- will form your group. You can select your mesh in the Objet Browser or
- in the 3D viewer.</span></p></li>
-
- <li class=kadov-p><p class="whs3"><span
- style="font-weight: bold;"><B>Elements</B></span> <span style="font-weight: bold;"><B>Type</B></span>
- set of radio buttons allows to select the type of elements which will
- form your group:</p></li>
-
- <ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs6">Nodes</p></li>
-
- <li class=kadov-p><p class="whs6">Edges
- </p></li>
-
- <li class=kadov-p><p class="whs6">Faces</p></li>
-
- <li class=kadov-p><p class="whs6">Volumes</p></li>
- </ul>
-
- <li class=kadov-p><p class="whs3"><span
- style="font-weight: bold;"><B>Name </B></span>field allows to enter the name
- of your new group.</p></li>
-</ul>
-
-<p class="whs3">SALOME Platform distinguishes
- between the two Group types: <span style="font-weight: bold;"><B>Standalone
- Group</B></span> and <span style="font-weight: bold;"><B>Group on Geometry</B></span>.
- </p>
-
-<h3>Standalone Group </h3>
-
-<p class="whs7"><span style="font-weight: bold;"><B>Standalone
- Group</B></span> consists of mesh elements, which you can define in two possible
- ways.</p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs8">Choosing them manually
- with the mouse in the 3D Viewer. You can click on an element in the 3D
- viewer and it will be highlighted. After that click the <span style="font-weight: bold;"><B>Add
- </B></span>button and the ID of this element will be added to the list. </p></li>
-
- <li class=kadov-p><p class="whs7">Applying Filters. The
- <span style="font-weight: bold;"><B>Set filter </B></span>button allows to apply
- a definite filter to selection of the elements of your group. See more
- about filters on the <a href="../selection_filter_library.htm">Selection
- filter library</a> page. </p></li>
-</ul>
-
-<p class="whs7">To remove a selected element or elements
- from the list click the <span style="font-weight: bold;"><B>Remove </B></span>button.
- The <span style="font-weight: bold;"><B>Sort List </B></span>button allows to
- sort the list of IDs of mesh elements. </p>
-
-<p class="whs7"><span style="font-weight: bold;"><B>Select from
- </B></span>set of fields allows to choose a submesh or an existing group whose
- elements of the previously defined type will be added to the list of elements
- which will form your group. </p>
-
-<p class="whs7"><span style="font-weight: bold;"><B>Color Number</B></span>
- (integer only, ranging from 0 to 9999) - allows to assign to the group
- a certain index, for example, defining boundary conditions. This feature
- introduces a useful element of preprocessing in Mesh module. Note that
- <span style="font-weight: bold;"><B>Color number</B></span> attribute has nothing
- to do with the colors used for the display of the elements of the group.</p>
-
-<p class="whs7"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs9">
-<col class="whs10">
-<col class="whs11">
-
-<tr valign="top" class="whs12">
-<td width="33.382%" class="whs13">
-<p class="whs1"><img src="../pics/creategroup.png" x-maintain-ratio="TRUE" width="312px" height="621px" border="0" class="img_whs14"></td>
-<td width="66.618%" class="whs15">
-<p class="whs16"><img src="../image130.gif" width="145px" height="150px" align="left" border="0" class="img_whs17"> </p>
-<p class="whs16"> </p>
-<p class="whs16"> </p>
-<p class="whs16"> </p>
-<p class="whs16"> </p>
-<p class="whs16"> </p>
-<p class="whs16">In this picture the brown cells belong to
- a group defined manually.</p>
-<p class="whs16"> </p>
-<p class="whs16"> <img src="../image131.gif" width="149px" height="158px" border="0" class="img_whs18"> In this picture the brown cells belong to the group defined
- by the criterion <br>
-Taper > 0. </p>
-<p class="whs16"> </p>
-<p class="whs16"> </td></tr>
-</table>
-
-<p class="whs7"> </p>
-
-<p class="whs5"> See
- Also a sample TUI Script of a <a href="../grouping_elements.htm#bookmark">Create
- a Standalone Group</a> operation. </p>
-
-<h3>Group on Geometry </h3>
-
-<p class="whs3">To create a group on
- geometry check <span style="font-weight: bold;"><B>Group on geometry</B></span>
- in the <span style="font-weight: bold;"><B>Group type</B></span> field. <span
- style="font-weight: bold;"><B>Group on geometry </B></span>contains the elements
- of a certain type belonging to the selected<span style="font-weight: bold;">
- <B></B></span>geometrical object. To define a group select in the Objet Browser
- or in the 3D viewer a geometrical object from which the elements will
- be taken. After confirmation of the operation a new group of mesh elements
- will be created.</p>
-
-<p class="whs3"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs9">
-<col class="whs19">
-<col class="whs20">
-
-<tr valign="top" class="whs21">
-<td width="33.48%" class="whs22">
-<p><img src="../pics/a-creategroup.png" x-maintain-ratio="TRUE" width="312px" height="312px" border="0" class="img_whs23"></td>
-<td width="66.52%" class="whs24">
-<p><img src="../image132.gif" width="135px" height="150px" border="0" class="img_whs25"> In this picture the cells which belong to a certain face
- are selected in green. </td></tr>
-</table>
-
-<p class="whs3"> </p>
-
-<p class="whs6"> See
- Also a sample TUI Script of a <a href="../grouping_elements.htm#bookmark5">Create
- a Group on Geometry</a><a href="../grouping_elements.htm#bookmark"> </a>operation.
- </p>
-
-<p> </p>
-
-<p> </p>
-
-<p class="whs16"> </p>
-
-<p class="whs26"> </p>
-
-<p> </p>
-
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-<!--
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-</html>
+++ /dev/null
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-
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-<title>Cutting quadrangles</title>
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-<h1>Cutting quadrangles</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> This operation allows to cut one or several quadrangle
- elements by addition of a supplementary edge which will connect two opposite
- corners. </p>
-
-<p> </p>
-
-<p class=TODO>To cut quadrangles:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">1. Display a mesh or a submesh in the 3D
- viewer.</p>
-
-<p class="whs2">2. In the <span style="font-weight: bold;"><B>Modification
- </B></span>menu select the <span style="font-weight: bold;"><B>Cutting of quadrangles
- </B></span>item or click <img src="../image82.gif" width="25px" height="22px" border="0" class="img_whs3"> button in the toolbar. The following
- dialog box will appear:</p>
-
-<p> </p>
-
-<p class="whs2"><img src="../pics/a-cuttingofquadrangles.png" x-maintain-ratio="TRUE" width="306px" height="525px" border="0" class="img_whs4"></p>
-
-<p> </p>
-
-<ul type="disc" class="whs5">
-
- <li class=kadov-p><p class="whs6">The
- main list<span style="font-weight: bold;"> <B></B></span>contains the list of
- quadrangles. You can click on an quadrangle in the 3D viewer and it will
- be highlighted (lock Shift keyboard button to select several quadrangles).
- <span style="margin-left: 0px; font-weight: bold;"><B>Click Add </B></span><span
- style="margin-left: 0px;">button and the ID of this quadrangle will be
- added to the list. To remove a selected element or elements from the list
- click </span><span style="margin-left: 0px; font-weight: bold;"><B>Remove
- </B></span><span style="margin-left: 0px;">button. </span><span style="margin-left: 0px; font-weight: bold;"><B>Sort
- list </B></span><span style="margin-left: 0px;">button allows to sort the
- list of IDs. </span><span style="margin-left: 0px; font-weight: bold;"><B>Filter
- </B></span><span style="margin-left: 0px;">button allows to apply a definite
- filter to the selection of quadrangles.</span></p></li>
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Apply to all </B></span>radio button allows to
- modify the orientation of all quadrangles of the currently displayed mesh
- or submesh.</p></li>
-
- <li class=kadov-p><p class="whs7">Preview
- - <span style="font-weight: normal;">provides a preview of cutting in
- the viewer.</span> </p></li>
-
- <li class=kadov-p><p class="whs8">Criterion</p></li>
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Use diagonal 1-3 </B></span>and<span style="font-weight: bold;"><B>
- Use diagonal 2-4 </B></span> allows
- to specify the opposite corners which will be connected by the cutting
- edge.</p></li>
-
- <li class=kadov-p><p class="whs7">Use
- numeric factor - <span style="margin-left: 40px; font-weight: normal;"> allows
- to apply the operation only to those objects which meet the chosen criterion
- (from the list of Quality Controls, i.e. Skew, Warping, Minimum Angle,
- etc.)</span></p></li>
-
- <li class=kadov-p><p class="whs9"><span style="font-weight: bold;"><B>Select
- from -</B></span> allows to choose a submesh or an existing group whose quadrangle
- elements will be automatically added to the list.</p></li>
-</ul>
-
-<p class="whs2"> </p>
-
-<p class="whs2">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button to confirm
- the operation.</p>
-
-<p class="whs2"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs10">
-<col class="whs11">
-<col class="whs11">
-
-<tr valign="top" class="whs12">
-<td width="50%" class="whs13">
-<p><img src="../image52.jpg" width="353px" height="300px" border="0" class="img_whs14"></td>
-<td width="50%" class="whs15">
-<p><img src="../image51.jpg" width="353px" height="300px" border="0" class="img_whs14"></td></tr>
-</table>
-
-<p class="whs9"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark7">Cutting
- Quadrangles</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Diagonal iversion of elements</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Diagonal inversion of elements</h1>
-
-<p> In MESH
- you can inverse the diagonal (edge) of a pseudo-quadrangle formed by two
- neighboring triangles with one common edge.</p>
-
-<p> </p>
-
-<p class=TODO>To inverse the diagonal:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">1. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose the <span style="font-weight: bold;"><B>Diagonal inversion
- </B></span>item or click <img src="../image70.gif" width="24px" height="22px" border="0" class="img_whs2"> button in the toolbar. The following
- dialog box shall appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/diagonalinversion.png" x-maintain-ratio="TRUE" width="306px" height="163px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2. Enter the ID of the required edge in the
- <span style="font-weight: bold;"><B>Edge </B></span> field
- or select this edge in the 3D viewer. </p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button.</p>
-
-<p class=TODO
- style="margin-left: 40px;"> </p>
-
-<p> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs4">
-<col class="whs5">
-<col class="whs5">
-
-<tr valign="top" class="whs6">
-<td width="50%" class="whs7">
-<p><img src="../image38.jpg" width="300px" height="224px" border="0" class="img_whs8"></td>
-<td width="50%" class="whs9">
-<p><img src="../image36.jpg" width="300px" height="224px" border="0" class="img_whs8"></td></tr>
-</table>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark4">Diagonal
- Inversion of Elements</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
-//-->
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Displacing nodes</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Moving nodes</h1>
-
-<p>In MESH you can change the location of any node of your mesh. In this
- case all adjacent elements (edges) will be also transformed right after
- the displaced node.</p>
-
-<p> </p>
-
-<p class=TODO>To displace a node:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">1. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose the <span style="font-weight: bold;"><B>Move node </B></span>item
- or click <img src="../image67.gif" width="24px" height="22px" border="0" class="img_whs2"> button in the toolbar. The following dialog box
- shall appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/movenodes.png" x-maintain-ratio="TRUE" width="306px" height="269px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2. Enter the ID of the required node in the
- <span style="font-weight: bold;"><B>Node ID </B></span> field
- or select this node in the 3D viewer. The coordinates of your node will
- be automatically displayed in the <span style="font-weight: bold;"><B>Coordinates
- </B></span>set of fields.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">3. Set new coordinates for your node in the
- <span style="font-weight: bold;"><B>Coordinates </B></span>set of fields.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">4. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button.</p>
-
-<p class="whs1"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs4">
-<col class="whs5">
-<col class="whs6">
-
-<tr valign="top" class="whs7">
-<td width="39.706%" class="whs8">
-<p class="whs9"><img src="../pics/moving_nodes1.png" x-maintain-ratio="TRUE" width="266px" height="249px" border="0" class="img_whs10"></td>
-<td width="60.294%" class="whs11">
-<p><img src="../pics/moving_nodes2.png" x-maintain-ratio="TRUE" width="324px" height="250px" border="0" class="img_whs12"></td></tr>
-</table>
-
-<p class="whs13"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark3">Moving
- Nodes</a> operation. </p>
-
-<p> </p>
-
-<p class="whs13"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Displaying nodes numbers</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
-</script>
-<style type="text/css">
-<!--
-p.whs1 { margin-left:40px; }
-p.whs2 { margin-left:0px; }
-img_whs3 { border:none; width:429px; height:189px; }
-img_whs4 { border:none; width:324px; height:278px; }
--->
-</style><script type="text/javascript" language="JavaScript">
-<!--
-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
-{
- var strNSS = "<style type='text/css'>";
- strNSS += "p.whs2 {margin-left:1pt; }";
- strNSS +="</style>";
- document.write(strNSS);
-}
-//-->
-</script>
-<script type="text/javascript" language="JavaScript" title="WebHelpInlineScript">
-<!--
-function reDo() {
- if (innerWidth != origWidth || innerHeight != origHeight)
- location.reload();
-}
-if ((parseInt(navigator.appVersion) == 4) && (navigator.appName == "Netscape")) {
- origWidth = innerWidth;
- origHeight = innerHeight;
- onresize = reDo;
-}
-onerror = null;
-//-->
-</script>
-<style type="text/css">
-<!--
-div.WebHelpPopupMenu { position:absolute; left:0px; top:0px; z-index:4; visibility:hidden; }
-p.WebHelpNavBar { text-align:right; }
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-</style><script type="text/javascript" language="javascript1.2" src="../whmsg.js"></script>
-<script type="text/javascript" language="javascript" src="../whver.js"></script>
-<script type="text/javascript" language="javascript1.2" src="../whproxy.js"></script>
-<script type="text/javascript" language="javascript1.2" src="../whutils.js"></script>
-<script type="text/javascript" language="javascript1.2" src="../whtopic.js"></script>
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.gbWhTopic)
-{
- if (window.setRelStartPage)
- {
- addTocInfo("MESH module\nViewing meshes\nNumbering");
-addButton("show",BTN_IMG,"Show","","","","",0,0,"../whd_show0.gif","../whd_show2.gif","../whd_show1.gif");
-addButton("hide",BTN_IMG,"Hide","","","","",0,0,"../whd_hide0.gif","../whd_hide2.gif","../whd_hide1.gif");
-
- }
-
-
- if (window.setRelStartPage)
- {
- setRelStartPage("../index.htm");
-
- autoSync(1);
- sendSyncInfo();
- sendAveInfoOut();
- }
-
-}
-else
- if (window.gbIE4)
- document.location.reload();
-//-->
-</script>
-</head>
-<body><script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(4);
-//-->
-</script>
-<h1>Displaying nodes numbers</h1>
-
-<p>In MESH you can display the ID numbers of all nodes of your mesh in
- the viewer.</p>
-
-<p> </p>
-
-<p class=TODO>To display ID numbers of nodes:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">1. Display your mesh in the viewer</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2. Right-click on the mesh in the 3D viewer
- and from the associated pop-up menu choose <span style="font-weight: bold;"><B>Numbering
- > Display Nodes #</B></span>.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs2">It will look like as follows:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs1"><img src="../image96.jpg" width="429px" height="189px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<h1>Displaying elements numbers</h1>
-
-<p>In MESH you can display the ID numbers of all meshing elements composing
- your mesh in the viewer.</p>
-
-<p> </p>
-
-<p class=TODO>To display ID numbers of elements:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">1. Display your mesh in the viewer</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2. Right-click on the mesh in the 3D viewer
- and from the associated pop-up menu choose <span style="font-weight: bold;"><B>Numbering
- > Display Elements #</B></span>.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs2">It will look like as follows:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs1"><img src="../image95.jpg" width="324px" height="278px" border="0" class="img_whs4"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs2"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Editing groups</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
-</script>
-<style type="text/css">
-<!--
-p.whs1 { margin-left:40px; }
-img_whs2 { border:none; width:21px; height:22px; border-style:none; }
-img_whs3 { border:none; width:400px; height:622px; float:none; }
-p.whs4 { font-weight:normal; }
-p.whs5 { margin-left:0px; }
--->
-</style><script type="text/javascript" language="JavaScript">
-<!--
-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
-{
- var strNSS = "<style type='text/css'>";
- strNSS += "p.whs5 {margin-left:1pt; }";
- strNSS +="</style>";
- document.write(strNSS);
-}
-//-->
-</script>
-<script type="text/javascript" language="JavaScript" title="WebHelpInlineScript">
-<!--
-function reDo() {
- if (innerWidth != origWidth || innerHeight != origHeight)
- location.reload();
-}
-if ((parseInt(navigator.appVersion) == 4) && (navigator.appName == "Netscape")) {
- origWidth = innerWidth;
- origHeight = innerHeight;
- onresize = reDo;
-}
-onerror = null;
-//-->
-</script>
-<style type="text/css">
-<!--
-div.WebHelpPopupMenu { position:absolute; left:0px; top:0px; z-index:4; visibility:hidden; }
-p.WebHelpNavBar { text-align:right; }
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-</style><script type="text/javascript" language="javascript1.2" src="../whmsg.js"></script>
-<script type="text/javascript" language="javascript" src="../whver.js"></script>
-<script type="text/javascript" language="javascript1.2" src="../whproxy.js"></script>
-<script type="text/javascript" language="javascript1.2" src="../whutils.js"></script>
-<script type="text/javascript" language="javascript1.2" src="../whtopic.js"></script>
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.gbWhTopic)
-{
- if (window.setRelStartPage)
- {
- addTocInfo("MESH module\nGrouping elements\nEditing groups");
-addButton("show",BTN_IMG,"Show","","","","",0,0,"../whd_show0.gif","../whd_show2.gif","../whd_show1.gif");
-addButton("hide",BTN_IMG,"Hide","","","","",0,0,"../whd_hide0.gif","../whd_hide2.gif","../whd_hide1.gif");
-
- }
-
-
- if (window.setRelStartPage)
- {
- setRelStartPage("../index.htm");
-
- autoSync(1);
- sendSyncInfo();
- sendAveInfoOut();
- }
-
-}
-else
- if (window.gbIE4)
- document.location.reload();
-//-->
-</script>
-</head>
-<body><script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(4);
-//-->
-</script>
-<h1>Editing groups</h1>
-
-<p class=TODO
- style="margin-left: 0px;">To edit an existing group of elements:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">1. Select your group in the Object Browser
- and in the <span style="font-weight: bold;"><B>Mesh </B></span>menu click the
- <span style="font-weight: bold;"><B>Edit Group </B></span>item or <img src="../image74.gif" width="21px" height="22px" border="0" class="img_whs2"> icon in the toolbar. The following dialog box will appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/editgroup.png" x-maintain-ratio="TRUE" width="400px" height="622px" border="0" class="img_whs3"></p>
-
-<p class="whs4"> </p>
-
-<p class="whs1">In this dialog box you can modify the name<span
- style="font-weight: bold;"> <B></B></span>of your group and add or remove the
- elements forming it. For more information <a href="creating_groups.htm">see
- Creating Groups </a><span style="margin-left: 40px;">page.</span></p>
-
-<p class="whs1">2. Click the <span style="font-weight: bold;"><B>OK
- </B></span>or <span style="font-weight: bold;"><B> Apply
- </B></span>button to confirm modification of the group.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs5"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of an <a href="../grouping_elements.htm#bookmark1">Edit
- Group</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Importing and exporting meshes</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
-</script>
-<style type="text/css">
-<!--
-img_whs1 { border:none; width:30px; height:30px; float:none; border-style:none; }
-p.whs2 { margin-left:40px; }
-img_whs3 { border:none; border-style:none; width:437px; height:283px; float:none; }
-img_whs4 { border:none; border-style:none; width:436px; height:307px; float:none; }
-p.whs5 { margin-left:0px; }
--->
-</style><script type="text/javascript" language="JavaScript">
-<!--
-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
-{
- var strNSS = "<style type='text/css'>";
- strNSS += "p.whs5 {margin-left:1pt; }";
- strNSS +="</style>";
- document.write(strNSS);
-}
-//-->
-</script>
-<script type="text/javascript" language="JavaScript" title="WebHelpInlineScript">
-<!--
-function reDo() {
- if (innerWidth != origWidth || innerHeight != origHeight)
- location.reload();
-}
-if ((parseInt(navigator.appVersion) == 4) && (navigator.appName == "Netscape")) {
- origWidth = innerWidth;
- origHeight = innerHeight;
- onresize = reDo;
-}
-onerror = null;
-//-->
-</script>
-<style type="text/css">
-<!--
-div.WebHelpPopupMenu { position:absolute; left:0px; top:0px; z-index:4; visibility:hidden; }
-p.WebHelpNavBar { text-align:right; }
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-</style><script type="text/javascript" language="javascript1.2" src="../whmsg.js"></script>
-<script type="text/javascript" language="javascript" src="../whver.js"></script>
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-<script type="text/javascript" language="javascript1.2" src="../whtopic.js"></script>
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-addButton("show",BTN_IMG,"Show","","","","",0,0,"../whd_show0.gif","../whd_show2.gif","../whd_show1.gif");
-addButton("hide",BTN_IMG,"Hide","","","","",0,0,"../whd_hide0.gif","../whd_hide2.gif","../whd_hide1.gif");
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-
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- {
- setRelStartPage("../index.htm");
-
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- }
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-//-->
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-<body><script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(4);
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-</script>
-<h1>Importing and exporting meshes</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> In MESH there is a functionality allowing importation/exportation
- of meshes from <span style="font-weight: bold;"><B>MED</B></span> and <span style="font-weight: bold;"><B>UNV
- </B></span>(I-DEAS 10) format files. </p>
-
-<p> </p>
-
-<p class=TODO>To import a mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. From the <span style="font-weight: bold;"><B>File</B></span>
- menu choose the <span style="font-weight: bold;"><B>Import</B></span> item, from
- its sub-menu select the corresponding format (MED, UNV)
- of the file containing your mesh.</p>
-
-<p class="whs2">2. In the standard <span style="font-weight: bold;"><B>Search
- File </B></span>dialog box find the file for importation. </p>
-
-<p class="whs2">3. Click the <span style="font-weight: bold;"><B>OK
- </B></span>button.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../pics/meshimportmesh.png" x-maintain-ratio="TRUE" width="437px" height="283px" border="0" class="img_whs3"> </p>
-
-<p class="whs2"> </p>
-
-<p class=TODO>To export a mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Select the object you wish to export.</p>
-
-<p class="whs2">2. From the <span style="font-weight: bold;"><B>File</B></span>
- menu choose the <span style="font-weight: bold;"><B>Export</B></span> item, from
- its sub-menu select the format (MED, UNV) of the file which will contain
- your exported mesh..</p>
-
-<p class="whs2">3. In the standard <span style="font-weight: bold;"><B>Search
- File </B></span><span>select a location for the exported file and enter its
- name.</span> </p>
-
-<p class="whs2">4. Click the <span style="font-weight: bold;"><B>OK
- </B></span>button. </p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../pics/meshexportmesh.png" x-maintain-ratio="TRUE" width="436px" height="307px" border="0" class="img_whs4"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs5"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of an <a href="../constructing_meshes.htm#bookmark3">Export
- Mesh</a> operation. </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Length of edges</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
-</script>
-<style type="text/css">
-<!--
-img_whs1 { border:none; width:30px; height:30px; float:none; border-style:none; }
-p.whs2 { margin-left:40px; }
-img_whs3 { border:none; width:27px; height:24px; border-style:none; }
-img_whs4 { border:none; border-style:none; width:450px; height:381px; float:none; }
-p.whs5 { margin-left:0px; }
--->
-</style><script type="text/javascript" language="JavaScript">
-<!--
-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
-{
- var strNSS = "<style type='text/css'>";
- strNSS += "p.whs5 {margin-left:1pt; }";
- strNSS +="</style>";
- document.write(strNSS);
-}
-//-->
-</script>
-<script type="text/javascript" language="JavaScript" title="WebHelpInlineScript">
-<!--
-function reDo() {
- if (innerWidth != origWidth || innerHeight != origHeight)
- location.reload();
-}
-if ((parseInt(navigator.appVersion) == 4) && (navigator.appName == "Netscape")) {
- origWidth = innerWidth;
- origHeight = innerHeight;
- onresize = reDo;
-}
-onerror = null;
-//-->
-</script>
-<style type="text/css">
-<!--
-div.WebHelpPopupMenu { position:absolute; left:0px; top:0px; z-index:4; visibility:hidden; }
-p.WebHelpNavBar { text-align:right; }
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-</style><script type="text/javascript" language="javascript1.2" src="../whmsg.js"></script>
-<script type="text/javascript" language="javascript" src="../whver.js"></script>
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-<script type="text/javascript" language="javascript1.2" src="../whtopic.js"></script>
-<script type="text/javascript" language="javascript1.2">
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-if (window.gbWhTopic)
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- if (window.setRelStartPage)
- {
- addTocInfo("MESH module\nQuality controls\nLength 2D");
-addButton("show",BTN_IMG,"Show","","","","",0,0,"../whd_show0.gif","../whd_show2.gif","../whd_show1.gif");
-addButton("hide",BTN_IMG,"Hide","","","","",0,0,"../whd_hide0.gif","../whd_hide2.gif","../whd_hide1.gif");
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-//-->
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-</head>
-<body><script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(4);
-//-->
-</script>
-<h1>Length 2D</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1">This quality control criterion consists of calculation
- of length of the edges combining the meshing elements (triangles and quadrangles)
- of your mesh. </p>
-
-<p> </p>
-
-<p class=TODO>To apply the Length 2D quality criterion to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Display your mesh in the viewer.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">2. Choose <span style="font-weight: bold;"><B>Controls
- > Length 2D </B></span>or click <img src="../image34.gif" width="27px" height="24px" border="0" class="img_whs3"> button in the toolbar. Your
- mesh will be displayed in the viewer with its elements colored according
- to the applied mesh quality control criterion:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../pics/length2d.png" x-maintain-ratio="TRUE" width="450px" height="381px" border="0" class="img_whs4"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs5"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../quality_controls.htm#bookmark4"> Length
- 2D quality control</a> operation. </p>
-
-<p> </p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Length from edges</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
-</script>
-<style type="text/css">
-<!--
-ul.whs1 { list-style:disc; }
-p.whs2 { background-color:Transparent; color:#000000; font-weight:bold; }
-p.whs3 { margin-left:40px; }
-img_whs4 { border:none; width:332px; height:212px; float:none; border-style:none; }
-p.whs5 { margin-left:80px; }
-p.whs6 { margin-left:0px; }
-img_whs7 { border:none; width:455px; height:385px; float:none; border-style:none; }
--->
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-<h1>2D Meshing Hypotheses</h1>
-
-<ul type="disc" class="whs1">
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="max._element_area_hypothesis.htm#max_element_area"><span
- style="font-weight: bold;"><B>Max Element Area</B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="max._element_area_hypothesis.htm#length_from_edges"><span
- style="font-weight: bold;"><B>Length from Edges</B></span></a></p></li>
-
- <li style="/*begin!kadov{{*/ color: #000000; /*}}end!kadov*/ "
- class=kadov-p><p class="whs2"><a href="max._element_area_hypothesis.htm#quadrangle preference" style="font-weight: bold;">Quadrangle
- Preference</a></p></li>
-</ul>
-
-<h3><a name=max_element_area>Max Element Area </a></h3>
-
-<p><span style="font-weight: bold;"><B>Max Element Area </B></span>hypothesis
- is applied for meshing of 2D faces composing your geometrical object.
- Definition of this hypothesis consists of setting the <span style="font-weight: bold;"><B>maximum
- area </B></span>of meshing elements (depending on the chosen meshing algorithm
- it can be <span style="font-weight: bold;"><B>triangles</B></span> or <span style="font-weight: bold;"><B>quadrangles</B></span>),
- which will compose the mesh of these 2D faces. </p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/a-maxelarea.png" x-maintain-ratio="TRUE" width="332px" height="212px" border="0" class="img_whs4"></p>
-
-<p class="whs5"> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark4">Maximum
- Element Area hypothesis</a> operation. </p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/max_el_area.png" x-maintain-ratio="TRUE" width="455px" height="385px" border="0" class="img_whs7"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"> </p>
-
-<h3><a name=length_from_edges>Length from Edges</a></h3>
-
-<p><span style="font-weight: bold;"><B>Length from edges</B></span> hypothesis
- builds 2D mesh segments having a length calculated as an average edge
- length for a given wire. </p>
-
-<p> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark6">Length
- from Edges hypothesis</a> operation. </p>
-
-<p> </p>
-
-<h3><a name="quadrangle preference">Quadrangle Preference</a></h3>
-
-<p>This algorithm can be used only together with Quadrangle (Mapping) algorithm.
- It allows to build quadrangular meshes even if the number of nodes at
- the opposite edges of a meshed face is not equal, otherwise this mesh
- will contain some triangular elements.</p>
-
-<p> </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Non conform mesh allowed hypothesis</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Max Element Volume hypothesis</h1>
-
-<p><span style="font-weight: bold;"><B><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"></B></span> <span style="font-weight: bold;"><B>Max
- Element Area </B></span>hypothesis is applied for meshing of 3D objects composing
- your geometrical object. Definition of this hypothesis consists of setting
- the <span style="font-weight: bold;"><B>maximum volume </B></span>of 3D meshing
- elements (depending on the chosen meshing algorithm it can be <span style="font-weight: bold;"><B>hexahedrons
- </B></span>or <span style="font-weight: bold;"><B>tetrahedrons</B></span>), which
- will compose the mesh of these 3D objects. </p>
-
-<p class=TODO> </p>
-
-<p class="whs2"><img src="../pics/a-maxelvolume.png" x-maintain-ratio="TRUE" width="332px" height="212px" border="0" class="img_whs3"></p>
-
-<p class="whs4"> </p>
-
-<p class="whs5"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark5">Maximum
- Element Volume hypothesis</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Merging nodes</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Merging nodes</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> This functionality allows user to detect groups of coincident
- nodes with desirable tolerance, edit these groups and merge.</p>
-
-<p> </p>
-
-<p class=TODO>To merge nodes of your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. From the <span style="font-weight: bold;"><B>Modification
- </B></span>choose <span style="font-weight: bold;"><B>Transformation </B></span>and
- from its
- sub-menu select the <span style="font-weight: bold;"><B>Merge nodes </B></span>item.
- The following dialog box shall appear:</p>
-
-<p> </p>
-
-<p class="whs2"><img src="../pics/mergenodes.png" x-maintain-ratio="TRUE" width="420px" height="507px" border="0" class="img_whs3"></p>
-
-<p class="whs2"> </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs2"><span style="font-weight: bold;"><B>Name</B></span>
- is the name of the mesh whose nodes will be merged.</p></li>
-
- <li class=kadov-p><p class="whs2"><span style="font-weight: bold;"><B>Tolerance</B></span>
- is a maximum distance between nodes sufficient for merging.</p></li>
-
- <li class=kadov-p><p class="whs5"><span style="font-weight: bold;"><B>Detect</B></span>
- button generates the list of coincident nodes for the given <span style="font-weight: bold;"><B>Tolerance</B></span>.</p></li>
-
- <li class=kadov-p><p class="whs2"><span style="font-weight: bold;"><B>Coincident
- nodes</B></span> is a list of groupes of nodes for merging. All nodes of each
- group will form one after the operation. </p></li>
-
- <li class=kadov-p><p class="whs5"><span style="font-weight: bold;"><B>Remove</B></span>
- button deletes the selected group from the list.</p></li>
-
- <li class=kadov-p><p class="whs5"><span style="font-weight: bold;"><B>Add</B></span>
- button adds to the list a group of nodes selected in the viewer with pressed
- "Shift" key.</p></li>
-
- <li class=kadov-p><p class="whs5"><span style="font-weight: bold;"><B>Select
- all</B></span> checkbox selects all groups.</p></li>
-
- <li class=kadov-p><p class="whs6">Edit
- selected group<span style="font-weight: normal;"> list</span> <span style="font-weight: normal;">allows
- editing the selected group:</span></p></li>
-
- <li class=kadov-p><p class="whs5"><img src="../pics/add.gif" x-maintain-ratio="TRUE" width="37px" height="28px" border="0" class="img_whs7"> adds
- to the group the node selected in the viewer.</p></li>
-
- <li class=kadov-p><p class="whs5"><img src="../pics/remove.gif" x-maintain-ratio="TRUE" width="38px" height="30px" border="0" class="img_whs8"> removes
- from the group the selected node.</p></li>
-
- <li class=kadov-p><p class="whs5"><img src="../pics/sort.gif" x-maintain-ratio="TRUE" width="82px" height="27px" border="0" class="img_whs9"> moves
- the selected node to the first position in the group. This means that
- all other nodes will be merged into this one. </p></li>
-</ul>
-
-<p class="whs5"> </p>
-
-<p class="whs5">To confirm your choice click <span style="font-weight: bold;"><B>OK</B></span>
- or <span style="font-weight: bold;"><B>Apply</B></span> button.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../pics/merging_nodes1.png" x-maintain-ratio="TRUE" width="341px" height="375px" border="0" class="img_whs10"> <img src="../pics/merging_nodes2.png" x-maintain-ratio="TRUE" width="347px" height="376px" border="0" class="img_whs11"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark3">Merge
- Nodes</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Minimum angle</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
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-<h1>Minimum angle</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> <span style="font-weight: bold;"><B>Minimum angle</B></span>
- mesh quality criterion consists of calculation of the minimum value of
- angle between two adjacent sides of a 2D meshing element (triangle or
- quadrangle). </p>
-
-<p> </p>
-
-<p class=TODO>To apply the Minimum angle quality criterion to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Display your mesh in the viewer.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">2. Choose <span style="font-weight: bold;"><B>Controls
- > Minimum angle </B></span>or click <img src="../image38.gif" width="24px" height="24px" border="0" class="img_whs3"> button. Your mesh will
- be displayed in the viewer with its elements colored according to the
- applied mesh quality control criterion:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../image92.jpg" width="443px" height="254px" border="0" class="img_whs4"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs5"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../quality_controls.htm#bookmark9">Minimum
- Angle quality control</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
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-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
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-
-<head>
-<title>Non conform mesh allowed hypothesis</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
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-<style type="text/css">
-<!--
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-p.whs2 { margin-left:40px; }
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-</script>
-<h1>Additional Hypotheses</h1>
-
-<p><span style="font-weight: bold;"><B>Additional Hypotheses</B></span> can be
- applied as a supplement to the main hypotheses, introducing additional
- concepts to mesh creation.</p>
-
-<p> </p>
-
-<p>To define an <span style="font-weight: bold;"><B>Additional Hypothesis</B></span>
- simply select it in <span style="font-weight: bold;"><B>Create Mesh</B></span>
- menu. These hypotheses are actually changes in the rules of mesh creation
- and as such don't possess adjustable values. </p>
-
-<h3>Non Conform mesh allowed hypothesis</h3>
-
-<p><span style="font-weight: bold;"><B>Non Conform mesh allowed</B></span> hypothesis
- allows to generate non-conform meshes (that is, meshes having some edges
- ending on an edge or face of adjacent elements). </p>
-
-<h3>Quadratic Mesh</h3>
-
-<p>Quadratic Mesh hypothesis allows to build a quadratic mesh (whose edges
- are not straight but broken lines and can be defined by three points:
- first, middle and last) instead of an ordinary one. </p>
-
-<h3>Propagation of 1D Hypothesis on opposite edges</h3>
-
-<p><span style="font-weight: bold;"><B>Propagation of 1D Hypothesis on opposite
- edges </B></span>allows to propagate a hypothesis onto an opposite edge. If
- a local hypothesis and propagation are defined on an edge of a quadrangular
- face, the opposite edge will have the same hypothesis, unless another
- hypothesis has been locally defined on the opposite edge.</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../defining_hypotheses_tui.htm#bookmark7">Propagation
- hypothesis</a> operation. </p>
-
-<p> </p>
-
-<p> </p>
-
-<p class="whs2"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
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-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Reassigning hypotheses and algorithms</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
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-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
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-<style type="text/css">
-<!--
-img_whs1 { border:none; width:370px; height:296px; float:none; }
-img_whs2 { border:none; width:30px; height:29px; border-style:none; }
-p.whs3 { margin-left:40px; }
-img_whs4 { border:none; float:none; width:386px; height:336px; border-style:none; }
-img_whs5 { border:none; float:none; width:386px; height:338px; border-style:none; }
-p.whs6 { margin-left:0px; }
-p.whs7 { font-weight:bold; margin-left:40px; }
-img_whs8 { border:none; width:388px; height:341px; float:none; border-style:none; }
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-</style><script type="text/javascript" language="JavaScript">
-<!--
-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
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-//-->
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-//-->
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-</script>
-<h1>Editing Meshes</h1>
-
-<p>After you have created a mesh or submesh with definite applied hypotheses
- and algorithms you can edit your mesh by <span style="font-weight: bold;"><B>assigning</B></span>
- new hypotheses and algorithms or <span style="font-weight: bold;"><B>unassigning
- </B></span>the applied hypotheses and algorithms. The editing proceeds in
- the same way as <span style="font-weight: bold;"><B>Mesh Creation</B></span>.
- </p>
-
-<p> </p>
-
-<p class=TODO
- style="margin-left: 40px;"><img src="../pics/createmesh-inv3.png" x-maintain-ratio="TRUE" width="370px" height="296px" border="0" class="img_whs1"></p>
-
-<p>You can also change values for the current hypothesis by clicking the
- <img src="../image122.gif" width="30px" height="29px" border="0" class="img_whs2"> button. </p>
-
-<p> </p>
-
-<p>See how a mesh constructed on one and the same geometrical object changes
- if we apply different algorithms to it. </p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/edit_mesh1.png" x-maintain-ratio="TRUE" width="386px" height="336px" border="0" class="img_whs4"> <img src="../pics/edit_mesh_remove_hyp.png" x-maintain-ratio="TRUE" width="386px" height="338px" border="0" class="img_whs5"></p>
-
-<p class="whs6"> </p>
-
-<p class="whs7"><img src="../pics/edit_mesh_change_value_hyp.png" x-maintain-ratio="TRUE" width="388px" height="341px" border="0" class="img_whs8"></p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of an <a href="../constructing_meshes.htm#bookmark2">Edit
- Mesh</a> operation. </p>
-
-<p class="whs6"> </p>
-
-<p class="whs6"> </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Removing nodes and elements</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
-</script>
-<style type="text/css">
-<!--
-ul.whs1 { list-style:disc; }
-p.whs2 { margin-left:40px; font-weight:bold; }
-p.whs3 { margin-left:40px; }
-img_whs4 { border:none; width:27px; height:25px; border-style:none; }
-img_whs5 { border:none; width:332px; height:231px; float:none; border-style:none; }
-p.whs6 { margin-left:0px; }
-img_whs7 { border:none; width:36px; height:38px; float:none; border-style:none; }
-table.whs8 { x-cell-content-align:top; width:100%; border-spacing:0px; }
-col.whs9 { width:31.569%; }
-col.whs10 { width:68.431%; }
-tr.whs11 { x-cell-content-align:top; }
-td.whs12 { width:31.569%; padding-right:10px; padding-left:10px; border-right-style:none; border-left-style:none; border-top-style:none; border-bottom-style:none; }
-img_whs13 { border:none; width:245px; height:289px; float:none; border-style:none; }
-td.whs14 { width:68.431%; padding-right:10px; padding-left:10px; border-top-style:none; border-bottom-style:none; border-right-style:none; }
-img_whs15 { border:none; width:252px; height:288px; float:none; border-style:none; }
-table.whs16 { x-cell-content-align:top; width:55.882%; border-spacing:0px; }
-col.whs17 { width:47.72%; }
-col.whs18 { width:52.28%; }
-td.whs19 { width:47.72%; padding-right:10px; padding-left:10px; border-right-style:none; border-left-style:none; border-top-style:none; border-bottom-style:none; }
-img_whs20 { border:none; width:219px; height:210px; float:none; border-style:none; }
-td.whs21 { width:52.28%; padding-right:10px; padding-left:10px; border-top-style:none; border-bottom-style:none; border-right-style:none; }
-img_whs22 { border:none; float:none; width:240px; height:209px; border-style:none; }
--->
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-<!--
-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
-{
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-<body><script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(4);
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-</script>
-<h1>Removing nodes and elements</h1>
-
-<p>In MESH you can remove nodes and all types of cells of your mesh. </p>
-
-<p> </p>
-
-<ul type="disc" class="whs1">
-
- <li class=kadov-p><p class="whs2"><a
- href="#remove_a_node"
- style="font-weight: bold;"><span style="font-weight: bold;"><B>Nodes</a>
- </B></span></p></li>
-
- <li class=kadov-p><p class="whs2"><a
- href="#remove_an_element"
- style="font-weight: bold;">Elements</a></p></li>
-</ul>
-
-<p> </p>
-
-<p class=TODO><a name=remove_a_node>To remove a node:</a></p>
-
-<p class=TODO
- style="margin-left: 40px;"> </p>
-
-<p class="whs3">1. Select your mesh in the Object Browser
- or in the 3D viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">2. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose <span style="font-weight: bold;"><B>Remove </B></span>and
- from the associated submenu select the <span style="font-weight: bold;"><B>Remove
- nodes</B></span>, or just click <img src="../image88.gif" width="27px" height="25px" border="0" class="img_whs4"> icon in the toolbar. The
- following dialog box will appear:</p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/removenodes.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs5"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box you can specify one or
- several nodes (with pressed Shift button) by choosing them in the 3D viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">3. Click <span style="font-weight: bold;"><B>OK
- </B></span>or <span style="font-weight: bold;"><B>Apply </B></span> to
- confirm deletion of the specified nodes.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs6"><img src="../note1.gif" x-maintain-ratio="TRUE" width="36px" height="38px" border="0" class="img_whs7">Be careful while removing
- nodes because if you remove a definite node of your mesh all adjacent
- elements will be also deleted.</p>
-
-<p class="whs3"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs8">
-<col class="whs9">
-<col class="whs10">
-
-<tr valign="top" class="whs11">
-<td width="31.569%" class="whs12">
-<p><img src="../pics/remove_nodes1.png" x-maintain-ratio="TRUE" width="245px" height="289px" border="0" class="img_whs13"></td>
-<td width="68.431%" class="whs14">
-<p><img src="../pics/remove_nodes2.png" x-maintain-ratio="TRUE" width="252px" height="288px" border="0" class="img_whs15"></td></tr>
-</table>
-
-<p class="whs6"> </p>
-
-<p> </p>
-
-<p class=TODO><a name=remove_an_element>To remove an element:</a></p>
-
-<p class=TODO
- style="margin-left: 40px;"> </p>
-
-<p class="whs3">1. Select your mesh in the Object Browser
- or in the 3D viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">2. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose <span style="font-weight: bold;"><B>Remove </B></span>and
- from the associated submenu select the <span style="font-weight: bold;"><B>Remove
- elements</B></span>, or just click <img src="../image88.gif" width="27px" height="25px" border="0" class="img_whs4"> icon in the toolbar. The
- following dialog box will appear:</p>
-
-<p> </p>
-
-<p class="whs3"><img src="../pics/removeelements.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs5"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">In this dialog box you can specify one or
- several elements of your mesh (with pressed Shift button) by choosing
- them in the 3D viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">3. Click <span style="font-weight: bold;"><B>OK
- </B></span>or <span style="font-weight: bold;"><B>Apply </B></span> to
- confirm deletion of the specified elements.</p>
-
-<p class="whs3"> </p>
-
-<table x-use-null-cells cellspacing="0" width="55.882%" class="whs16">
-<col class="whs17">
-<col class="whs18">
-
-<tr valign="top" class="whs11">
-<td width="47.72%" class="whs19">
-<p><img src="../pics/remove_elements1.png" x-maintain-ratio="TRUE" width="219px" height="210px" border="0" class="img_whs20"></td>
-<td width="52.28%" class="whs21">
-<p><img src="../pics/remove_elements2.png" x-maintain-ratio="TRUE" width="240px" height="209px" border="0" class="img_whs22"></td></tr>
-</table>
-
-<p class="whs6"> </p>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark1">Removing
- Nodes and Elements</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Renumbering nodes and elements</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
-<!--
-if (navigator.appName !="Netscape")
-{ document.write("<link rel='stylesheet' href='../default.css'>");}
-//-->
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-<style type="text/css">
-<!--
-ul.whs1 { list-style:disc; }
-p.whs2 { margin-left:40px; font-weight:bold; }
-p.whs3 { margin-left:40px; }
-img_whs4 { border:none; width:29px; height:23px; border-style:none; }
-img_whs5 { border:none; width:332px; height:231px; float:none; border-style:none; }
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-</script>
-<h1>Renumbering nodes and elements</h1>
-
-<p>In MESH you can renumber the nodes and elements of your mesh.</p>
-
-<p> </p>
-
-<ul type="disc" class="whs1">
-
- <li class=kadov-p><p class="whs2"><a
- href="#renumber_nodes">Nodes</a> </p></li>
-
- <li class=kadov-p><p class="whs2"><a
- href="#renumber_elements"
- style="font-weight: bold;">Elements</a></p></li>
-</ul>
-
-<p> </p>
-
-<p class=TODO><a name=renumber_nodes>To renumber the nodes of your mesh:</a></p>
-
-<p class=TODO> </p>
-
-<p class="whs3">1. In the <span style="font-weight: bold;"><B>Modification
- </B></span>menu select <span style="font-weight: bold;"><B>Renumbering </B></span>submenu
- and choose the <span style="font-weight: bold;"><B>Nodes </B></span>item or click
- <img src="../image63.gif" width="29px" height="23px" border="0" class="img_whs4"> button in the toolbar. The following dialog box will
- appear: </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../pics/renumbernodes.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs5"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">2. Fill the <span style="font-weight: bold;"><B>Mesh
- </B></span>field by selecting your mesh in the Object Browser or in the 3D
- viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span><span>or </span><span style="font-weight: bold;"><B>OK </B></span><span>button
- to perform the operation.</span></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"> </p>
-
-<p class=TODO><a name=renumber_elements>To renumber the elements of your
- mesh:</a></p>
-
-<p class=TODO> </p>
-
-<p class="whs3">1. In the <span style="font-weight: bold;"><B>Modification
- </B></span>menu select <span style="font-weight: bold;"><B>Renumbering </B></span>submenu
- and choose the <span style="font-weight: bold;"><B>Elements </B></span>item or
- click <img src="../image64.gif" width="26px" height="25px" border="0" class="img_whs6"> button in the toolbar. The following dialog box will
- appear: </p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../pics/renumberelements.png" x-maintain-ratio="TRUE" width="332px" height="231px" border="0" class="img_whs5"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">2. Fill the <span style="font-weight: bold;"><B>Mesh
- </B></span>field by selecting your mesh in the Object Browser or in the 3D
- viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span><span>or </span><span style="font-weight: bold;"><B>OK </B></span><span>button
- to perform the operation.</span></p>
-
-<p class="whs3"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark2">Renumbering
- Nodes and Elements</a><a href="../modifying_meshes.htm#bookmark8"> </a>operation.
- </p>
-
-<p> </p>
-
-<p class="whs3"> </p>
-
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-<!--
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Rotation</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<!--
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-</script>
-<h1>Rotation</h1>
-
-<p>This geometrical operation allows to rotate in space your mesh or some
- of its elements.</p>
-
-<p> </p>
-
-<p class=TODO> To
- rotate your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">From the <span style="font-weight: bold;"><B>Modification
- </B></span>choose <span style="font-weight: bold;"><B>Transformation </B></span>and
- from its
- sub-menu select the <span style="font-weight: bold;"><B>Rotation </B></span>item.
- The following dialog box shall appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/rotation.png" x-maintain-ratio="TRUE" width="390px" height="411px" border="0" class="img_whs2"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">In this dialog box you can specify the elements
- which should be rotated and the rotation parameters:</p>
-
-<ul type="disc" class="whs3">
-
- <li class=kadov-p><p class="whs1"><span style="font-weight: bold;"><B>Axis:</B></span>
- point and vector</p></li>
-
- <li class=kadov-p><p class="whs1"><span style="font-weight: bold;"><B>Angle
- </B></span>of rotation </p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><span style="font-weight: bold;"><B>Create a
- copy </B></span>radio button allows to copy the rotated object.</p>
-
-<p class="whs1"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark1">Rotation</a>
- operation. </p>
-
-<p> </p>
-
-<p><img src="../pics/rotation1.png" x-maintain-ratio="TRUE" width="418px" height="332px" border="0" class="img_whs4"> <img src="../pics/rotation2.png" x-maintain-ratio="TRUE" width="443px" height="331px" border="0" class="img_whs5"></p>
-
-<p> </p>
-
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-<!--
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+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Running SMESH module</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Running MESH module</h1>
-
-<p class=TODO
- style="font-style: normal;
- font-weight: normal;
- font-family: 'Times New Roman', serif;">To start MESH <span
- class=glossterm>module</span> in SALOME click <img src="../image25.jpg" width="29px" height="28px" border="0" class="img_whs1"> icon in the
- bottom toolbar or select <span style="font-weight: bold;"><B>MESH</B></span>
- from the
- Choose box:<span style="margin-left: 40px;"> </span></p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">The desktop of the SALOME
- platform will be updated with additional toolbars and menus related to
- the <span style="font-weight: bold;"><B>MESH</B></span> component . </p>
-
-<p class="whs2"> </p>
-
-<p class="whs3"><img src="../pics/a-viewgeneral.png" x-maintain-ratio="TRUE" width="685px" height="398px" border="0" class="img_whs4"></p>
-
-<p class="whs3"> </p>
-
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-<!--
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- writeIntopicBar(0);
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Sewing meshes</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
-<meta name="generator" content="RoboHelp by eHelp Corporation www.ehelp.com">
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-<!--
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- origWidth = innerWidth;
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-<h1>Sewing meshes</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> In SMESH you can sew elements of different
- meshes. The current functionality allows you to sew:</p>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs3"><a href="#free bord">Free
- borders </a></p></li>
-
- <li class=kadov-p><p class="whs3"><a href="#conform">Conform
- free borders</a></p></li>
-
- <li class=kadov-p><p class="whs3"><a href="#border to side">Border
- to side</a></p></li>
-
- <li class=kadov-p><p class="whs3"><a href="#side elements">Side
- elements</a></p></li>
-</ul>
-
-<p class="whs3"> </p>
-
-<p class=TODO>To sew elements of different meshes:</p>
-
-<p class=TODO> </p>
-
-<p class="whs4">1. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose the <span style="font-weight: bold;"><B>Transformation
- </B></span>item and from
- its sub-menu select the <span style="font-weight: bold;"><B>Sewing </B></span>item.
- </p>
-
-<p class="whs4">2. Check in the dialog box one of the radio
- buttons corresponding to the type of sewing operation you would like to
- perform. </p>
-
-<p class="whs4">3. Fill the other fields available in the
- dialog box</p>
-
-<p class="whs4">4. Click the <span style="font-weight: bold;"><B>OK
- </B></span><span>or </span><span style="font-weight: bold;"><B>Apply </B></span>button
- to perform the operation of sewing. </p>
-
-<h3><a name="free bord"></a>Sew free borders<img src="../pics/sewing1.png" x-maintain-ratio="TRUE" width="332px" height="548px" align="right" border="0" class="img_whs5"></h3>
-
-<p>This functionality allows you to unite two free borders of a 2D mesh.</p>
-
-<p> </p>
-
-<p>For sewing free borders you should define three points on each border:
- first, second and the last node: </p>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p> the
- first node specifies beginning of the border ;</p></li>
-
- <li class=kadov-p><p> the
- second node specifies the part of the border which should be considered
- (as far as the free border usually forms a closed contour);</p></li>
-
- <li class=kadov-p><p> the
- last node specifies the end of the border.</p></li>
-</ul>
-
-<p> </p>
-
-<p>You can select these nodes in the 3D viewer or define by its id.</p>
-
-<p> </p>
-
-<p>The first and the second nodes should belong to the same link of a face.
- The second and the last nodes of a border can be the same. The first and
- the last nodes of two borders can be the same. The corresponding end nodes
- of two borders will be merged. Intermediate nodes of two borders will
- be either merged or inserted into faces of the opposite border.</p>
-
-<p> </p>
-
-<p>The sewing algorithm is as follows:</p>
-
-<p> </p>
-
-<p class="whs4">1. The parameter (U) of each node within
- a border is computed. So that the first node has U=0.0, the last node
- has U=1.0, for the rest nodes 0.0 < U < 1.0;</p>
-
-<p class="whs4">2. Compare node parameters of the two borders.
- If two nodes of the opposite borders have close parameters, they are merged,
- i.e. a node of the first border is replaced in all elements by a node
- of the second border. If a node has no node with a close parameter in
- the opposite border, it is inserted into an edge of element of the opposite
- border, an element is split. Two nodes are considered close enough to
- merge, if difference of their parameters is less than one fifth of minimum
- length of adjacent face edges on the borders.</p>
-
-<p> </p>
-
-<p class="whs4"><img src="../image22.jpg" width="612px" height="225px" border="0" class="img_whs6"></p>
-
-<p class="whs4"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark4">Sew
- Free Borders</a> operation. </p>
-
-<p> </p>
-
-<p class="whs4"> </p>
-
-<h3><a name=conform></a>Sew conform free borders<img src="../pics/sewing2.png" x-maintain-ratio="TRUE" width="332px" height="548px" align="right" border="0" class="img_whs5"></h3>
-
-<p>This functionality can be used to unite two free borders of a 2D mesh.
- </p>
-
-<p> </p>
-
-<p>The borders of meshes for sewing are defined as for "Sew free borders"
- except that the second free border is not limited and can be defined by
- the first and the second nodes only. The first nodes of two borders can
- be the same.</p>
-
-<p> </p>
-
-<p>The algorithm is following: counting nodes starting at the first ones,
- the n-th node of the first border is merged with the n-th node of the
- other border, until the end of either of borders. Nodes of the first border
- are replaced in all elements with corresponding nodes of the second border.</p>
-
-<p>For sewing conform free borders you should define three points on the
- first border and two points on the second one. User can select these nodes
- in 3D viewer or define node by its id.<img src="../image23.jpg" width="581px" height="218px" align="left" border="0" class="img_whs7"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"> </p>
-
-<h3> </h3>
-
-<h3> </h3>
-
-<h3> </h3>
-
-<h3> </h3>
-
-<h3> </h3>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark5">Sew
- Conform Free Borders</a> operation. </p>
-
-<h3> </h3>
-
-<h3> </h3>
-
-<h3><a name="border to side"></a>Sew border to side<img src="../pics/sewing3.png" x-maintain-ratio="TRUE" width="332px" height="548px" align="right" border="0" class="img_whs5"></h3>
-
-<p>"Sew border to side" is intended to sew a free border to a
- mesh surface.</p>
-
-<p>The free border is defined as for "Sewing of free borders".
- The place where to sew the border is defined by two nodes, between which
- the border faces are placed, so that the first border node is merged with
- the first node on the side and the last node of the border is merged with
- the second specified node on the side.</p>
-
-<p> </p>
-
-<p class="whs4"> </p>
-
-<p>The algorithm is following.</p>
-
-<p>1. Find a sequence of linked nodes on the side such that the found links
- to be most co-directed with the links of the free border.</p>
-
-<p>2. Sew two sequences of nodes using algorithm of "Sewing of free
- berders".</p>
-
-<p>For sewing border to side you should define three points on the border
- and two points on the side. User can select these nodes in 3D viewer or
- define node by its id.</p>
-
-<p><img src="../image30.jpg" width="600px" height="227px" border="0" class="img_whs8"></p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark6">Sew
- Border to Side</a> operation. </p>
-
-<p> </p>
-
-<h3> </h3>
-
-<h3><a name="side elements"></a>Sew side elements<img src="../pics/sewing4.png" x-maintain-ratio="TRUE" width="332px" height="548px" align="right" border="0" class="img_whs5"></h3>
-
-<p class="whs9">This operation is intended to unite two mesh
- surfaces.</p>
-
-<p class="whs9"> </p>
-
-<p>Surfaces may be defined by either 2d or 3d elements. The number of given
- elements of the sides must be the same. The sets of given elements must
- be topologically equal, i.e. each node of one element set must have a
- corresponding node in the other element set and corresponding nodes must
- be equally linked. If there are 3d elements in a set, only their free
- faces must obey to that rule.</p>
-
-<p>Two corresponding nodes on each side must be specified. They must belong
- to one element and must be located on an element set boundary.</p>
-
-<p> </p>
-
-<p>Sewing algorithm finds and merges the corresponding nodes starting from
- the specified ones.</p>
-
-<p><img src="../image31.jpg" width="620px" height="228px" border="0" class="img_whs10"></p>
-
-<p class="whs4"><img src="../image32.jpg" width="304px" height="222px" border="0" class="img_whs11"></p>
-
-<p>For sewing side elements you should define elements for sewing and two
- nodes for merging on the each side. User can select these elements and
- nodes in 3D viewer or define them by its id.</p>
-
-<p> </p>
-
-<p><span style="font-weight: bold;"><B>See Also</B></span> a sample TUI Script
- of a <a href="../transforming_meshes.htm#bookmark7">Sew Side Elements</a>
- operation. </p>
-
-<p> </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Skew</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
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-</script>
-<h1>Skew</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> <span style="font-weight: bold;"><B>Skew</B></span> mesh quality
- criterion reflects the angle between the lines that join opposite sides
- of the element. SKEW is
- a maximum value of all skew angles. <span style="margin-left: 0px; text-indent: 48px;">This
- mesh quality criterion can be applied to elements composed of 4 and 3
- nodes (quadrangles and triangles)</span></p>
-
-<p> </p>
-
-<p class="whs2"><img src="../image27.jpg" width="453px" height="411px" border="0" class="img_whs3"></p>
-
-<p class="whs2"> </p>
-
-<p class=TODO>To apply the Skew quality criterion to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Display your mesh in the viewer.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">2. Choose <span style="font-weight: bold;"><B>Controls
- > Skew </B></span>or click <img src="../image40.gif" width="24px" height="23px" border="0" class="img_whs4"> button of the toolbar. Your mesh
- will be displayed in the viewer with its elements colored according to
- the applied mesh quality control criterion:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../image93.jpg" width="448px" height="323px" border="0" class="img_whs5"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../quality_controls.htm#bookmark12">Skew
- quality control</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Smoothing</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<style type="text/css">
-<!--
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-p.whs7 { font-weight:bold; }
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-img_whs9 { border:none; width:527px; height:281px; border-style:none; }
-img_whs10 { border:none; float:none; width:353px; height:235px; border-style:none; }
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-<h1>Smoothing</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> Smoothing is used to adjust the locations of element
- corners (nodes) to reduce distortions in these elements.</p>
-
-<p> </p>
-
-<p class=TODO>To apply smoothing to the elements of your mesh:</p>
-
-<p> </p>
-
-<p class="whs2">1. Display a mesh or a submesh in the 3D
- viewer.</p>
-
-<p class="whs2">2. In the <span style="font-weight: bold;"><B>Modification
- </B></span>menu select the <span style="font-weight: bold;"><B>Smoothing </B></span>item
- or click <img src="../image84.gif" width="24px" height="25px" border="0" class="img_whs3"> button in the toolbar. The <span style="margin-left: 40px;">dialog
- box contains the following fields which should be specified:</span></p>
-
-<p> </p>
-
-<p class="whs2"><img src="../pics/smoothing.png" x-maintain-ratio="TRUE" width="332px" height="396px" border="0" class="img_whs4"> </p>
-
-<ul type="disc" class="whs5">
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Id Elements </B></span>field allows to specify
- the elements which should be smoothed by selecting them in the 3D viewer
- (lock <span style="font-weight: bold;"><B>Shift </B></span>button to select several
- elements).</p></li>
-
- <ul type="disc" class="whs5">
-
- <li class=kadov-p><p class="whs7">Select whole mesh,
- submesh or group - <span style="font-weight: normal;">smoothing is applied
- to the whole mesh or its part.</span></p></li>
-
- <li class=kadov-p><p><span style="font-weight: bold;"><B>Fixed nodes
- ids</B></span>: some nodes keep their location during smoothing. If a mesh
- is built on a geometry shape, the nodes built on geometrical edges are
- always fixed. If smoothing is applied to a part of a mesh then the boundary
- nodes of an elements set are also fixed. Any other nodes may be additionally
- fixed.</p></li>
-
- <li class=kadov-p><p><span style="font-weight: bold;"><B>Smoothing
- Method</B></span>:</p></li>
-
- <ul type="disc" class="whs5">
-
- <li class=kadov-p><p><span style="font-weight: bold;"><B>Laplacian</B></span>
- smoothing pulls a node toward the center of surrounding nodes directly
- connected to that node along an element edge. Centroidal smoothing pulls
- a node toward the element-area-weighted centroid of the surrounding elements.
- Typically, the Laplacian method will produce the mesh with the least element
- distortion. It is also the faster method. </p></li>
-
- <li class=kadov-p><p><span style="font-weight: bold;"><B>Centroidal</B></span>
- smoothing usually produces a mesh that has more uniform element sizes.
- Both methods produce good results with "free" meshes.</p></li>
- </ul>
- </ul>
-</ul>
-
-<p> </p>
-
-<p class="whs8"><img src="../image83.gif" width="527px" height="281px" border="0" class="img_whs9"></p>
-
-<ul type="disc" class="whs5">
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Iteration limit: </B></span>both of the smoothing
- methods use an iterative procedure to converge toward a smoothed mesh.
- All nodes are smoothed according to one of the techniques shown above.
- Then the smoothing is reevaluated with the updated nodal locations. This
- process continues until the maximum number of iterations has been exceeded,
- or all elements has aspect ratio less or equal than the specified one.</p></li>
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Max. aspect ratio</B></span>.</p></li>
-</ul>
-
-<p class="whs2"> </p>
-
-<p class="whs2">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button to confirm
- the operation.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../pics/smoothing1.png" x-maintain-ratio="TRUE" width="353px" height="235px" border="0" class="img_whs10"> <img src="../pics/smoothing2.png" x-maintain-ratio="TRUE" width="351px" height="235px" border="0" class="img_whs11"></p>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark8">Smoothing</a>
- operation. </p>
-
-<p> </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
-//-->
-</script>
-</body>
-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Symmetry</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<style type="text/css">
-<!--
-p.whs1 { margin-left:40px; }
-img_whs2 { border:none; width:384px; height:375px; float:none; border-style:none; }
-img_whs3 { border:none; width:384px; height:385px; float:none; border-style:none; }
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-</script>
-<h1>Symmetry</h1>
-
-<p>This geometrical operation allows to perform a symmetrical copy of your
- mesh or some of its elements.</p>
-
-<p> </p>
-
-<p class=TODO> To
- apply symmetry to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">From the <span style="font-weight: bold;"><B>Modification
- </B></span>choose <span style="font-weight: bold;"><B>Transformation </B></span>and
- from its
- sub-menu select the <span style="font-weight: bold;"><B>Symmetry </B></span>item.
- The following dialog box shall appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/symmetry1.png" x-maintain-ratio="TRUE" width="384px" height="375px" border="0" class="img_whs2"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/symmetry2.png" x-maintain-ratio="TRUE" width="384px" height="385px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/symmetry3.png" x-maintain-ratio="TRUE" width="384px" height="385px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">This operation has three options, you can
- symmetrically copy your mesh or some of its elements specifying: </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs1">one point</p></li>
-
- <li class=kadov-p><p class="whs1">one axis (point and
- vector)</p></li>
-
- <li class=kadov-p><p class="whs1">one plane (point and
- normal)</p></li>
-</ul>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><span style="font-weight: bold;"><B>Create a
- copy </B></span>radio button allows to keep the initial elements or mesh.</p>
-
-<p class="whs1"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark2">Symmetry</a>
- operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Taper</title>
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-<h1>Taper</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"><span style="font-weight: bold;"><B>Taper</B></span> mesh quality
- criterion represents the ratio of the areas of two triangles separated
- by a diagonal. So it can be calculated only for elements consisting of
- 4 nodes.</p>
-
-<p> </p>
-
-<p><img src="../image25.gif" width="791px" height="170px" border="0" class="img_whs2"></p>
-
-<p> </p>
-
-<p class=TODO> </p>
-
-<p class=TODO>To apply the Taper quality criterion to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs3">1. Display your mesh in the viewer.</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3">2. Choose <span style="font-weight: bold;"><B>Controls
- > Taper </B></span>or click <img src="../image36.gif" width="24px" height="23px" border="0" class="img_whs4"> button in the toolbar. Your mesh
- will be displayed in the viewer with its elements colored according to
- the applied mesh quality control criterion:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs3"><img src="../image90.jpg" width="416px" height="316px" border="0" class="img_whs5"></p>
-
-<p class="whs3"> </p>
-
-<p class="whs6"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../quality_controls.htm#bookmark7">Taper
- quality control</a> operation. </p>
-
-<p> </p>
-
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+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
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-
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-<title>Translation</title>
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-<h1>Translation</h1>
-
-<p>This geometrical operation allows to translate in space your mesh or
- some of its elements.</p>
-
-<p> </p>
-
-<p class=TODO> To
- translate your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">From the <span style="font-weight: bold;"><B>Modification
- </B></span>choose <span style="font-weight: bold;"><B>Transformation </B></span>and
- from its
- sub-menu select the <span style="font-weight: bold;"><B>Translation </B></span>item.
- The following dialog box shall appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/translation1.png" x-maintain-ratio="TRUE" width="393px" height="353px" border="0" class="img_whs2"> <img src="../pics/translation2.png" x-maintain-ratio="TRUE" width="393px" height="353px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">This operation has two options, you can translate
- in space your mesh or some of its elements specifying: </p>
-
-<ul type="disc" class="whs4">
-
- <li class=kadov-p><p class="whs1">two points (starting
- and ending)</p></li>
-
- <li class=kadov-p><p class="whs1">one vector</p></li>
-</ul>
-
-<p class="whs1">Toggle the corresponding checkbox to <span
- style="font-weight: bold;"><B>Select whole mesh, submesh or group.</B></span></p>
-
-<p class="whs1"><span style="font-weight: bold;"><B>Create a
- copy </B></span>button allows to copy the translated object.</p>
-
-<p class="whs1"> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../transforming_meshes.htm#bookmark">Translation</a>
- operation. </p>
-
-<p> </p>
-
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+++ /dev/null
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-
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-<title>Uniting a set of triangles</title>
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-<h1>Uniting a set of triangles</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> In contrast to <a href="uniting_two_triangles.htm">the
- previous operation</a> this one allows to unite at once many triangles
- if they have adjacent edges. </p>
-
-<p> </p>
-
-<p class=TODO>To union several triangles:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2"><img src="../pics/a-unionoftriangles.png" x-maintain-ratio="TRUE" width="306px" height="450px" border="0" class="img_whs3"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">1. Display a mesh or a submesh in the 3D
- viewer.</p>
-
-<p class="whs2">2. In the <span style="font-weight: bold;"><B>Modification
- </B></span>menu select the <span style="font-weight: bold;"><B>Union of triangles
- </B></span>item or click <img src="../image80.gif" width="23px" height="24px" border="0" class="img_whs4"> button in the toolbar. The following
- dialog box will appear:</p>
-
-<p> </p>
-
-<ul type="disc" class="whs5">
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>The main list </B></span>shall contain the triangles
- which will be united. You can click on an triangle in the 3D viewer and
- it will be highlighted. After that click the <span style="font-weight: bold;"><B>Add
- </B></span>button and the ID of this triangle will be added to the list. To
- remove a selected element or elements from the list click the <span style="font-weight: bold;"><B>Remove
- </B></span>button. The <span style="font-weight: bold;"><B>Sort </B></span>button
- allows to sort the list of IDs. The <span style="font-weight: bold;"><B>Set
- filter </B></span>button allows to apply a definite filter to selection of
- triangles.</p></li>
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Apply to all </B></span>radio button allows to
- modify the orientation of all triangles of the currently displayed mesh
- or submesh.</p></li>
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Criterion</B></span> menu allows to apply the operation
- only to those object which meet the chosen criterion (from the list of
- Quality Controls, i.e. Skew, Warping, Minimum Angle, etc.)</p></li>
-
- <li class=kadov-p><p class="whs6"><span
- style="font-weight: bold;"><B>Select from </B></span>set of fields allows to
- choose a submesh or an existing group whose triangle elements will be
- automatically added to the list.</p></li>
-</ul>
-
-<p class="whs2"> </p>
-
-<p class="whs2">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button to confirm
- the operation.</p>
-
-<p class="whs7"> </p>
-
-<p class="whs7"><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> If some selected triangle
- elements have no adjacent edges with one of the others, the operation
- on these elements shall take no effect.</p>
-
-<p> </p>
-
-<p><img src="../pics/uniting_a_set_of_triangles1.png" x-maintain-ratio="TRUE" width="286px" height="242px" border="0" class="img_whs8"> <img src="../pics/uniting_a_set_of_triangles2.png" x-maintain-ratio="TRUE" width="286px" height="242px" border="0" class="img_whs9"></p>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark5">Uniting
- a Set of Triangles</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
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+++ /dev/null
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-
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-
-<head>
-<title>Uniting two triangles</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Uniting two triangles</h1>
-
-<p> In MESH
- you can union two neighboring triangles (cells) by deletion of the common
- edge.</p>
-
-<p> </p>
-
-<p class=TODO>To unite two triangles:</p>
-
-<p class=TODO> </p>
-
-<p class="whs1">1. From the <span style="font-weight: bold;"><B>Modification
- </B></span>menu choose the <span style="font-weight: bold;"><B>Union of two triangles
- </B></span>item or click <img src="../image71.gif" width="23px" height="23px" border="0" class="img_whs2"> button in the toolbar. The following
- dialog box shall appear:</p>
-
-<p class="whs1"> </p>
-
-<p class="whs1"><img src="../pics/unionoftwotriangles.png" x-maintain-ratio="TRUE" width="306px" height="163px" border="0" class="img_whs3"></p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">2. Enter the ID of the required edge in the
- <span style="font-weight: bold;"><B>Edge </B></span> field
- or select this edge in the 3D viewer. </p>
-
-<p class="whs1"> </p>
-
-<p class="whs1">3. Click the <span style="font-weight: bold;"><B>Apply
- </B></span>or <span style="font-weight: bold;"><B>OK </B></span>button.</p>
-
-<p class=TODO
- style="margin-left: 40px;"> </p>
-
-<p> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs4">
-<col class="whs5">
-<col class="whs6">
-
-<tr valign="top" class="whs7">
-<td width="37.647%" class="whs8">
-<p><img src="../pics/uniting_two_triangles1.png" x-maintain-ratio="TRUE" width="297px" height="204px" border="0" class="img_whs9"></td>
-<td width="62.353%" class="whs10">
-<p><img src="../pics/uniting_two_triangles2.png" x-maintain-ratio="TRUE" width="318px" height="206px" border="0" class="img_whs11"></td></tr>
-</table>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../modifying_meshes.htm#bookmark5">Uniting
- Two Triangles</a> operation. </p>
-
-<p> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
-if (window.writeIntopicBar)
- writeIntopicBar(0);
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-</html>
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-<h1>Using operations on groups</h1>
-
-<p><span style="font-weight: bold;"><B><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> </B></span>In MESH you can
- perform some Boolean operations on groups, which belong to one and the
- same mesh.</p>
-
-<p> </p>
-
-<ul type="disc" class="whs2">
-
- <li class=kadov-p><p class="whs3"><a href="#Union">Union</a>
- </p></li>
-
- <li class=kadov-p><p class="whs3"><a href="#Intersection">Intersection</a></p></li>
-
- <li class=kadov-p><p class="whs3"><a href="#Cut">Cut</a></p></li>
-</ul>
-
-<p> </p>
-
-<h3><a name=Union></a>Union of two groups</h3>
-
-<p>This operation allows to create a new group in such a way that all mesh
- elements that are present in the initial groups will be added to the new
- one.</p>
-
-<p> </p>
-
-<p class=TODO>To union two groups:</p>
-
-<p class=TODO> </p>
-
-<p class="whs4">1. In the <span style="font-weight: bold;"><B>Mesh
- </B></span>menu select the <span style="font-weight: bold;"><B>Union Groups </B></span>item.
- The following dialog box will appear:</p>
-
-<p class="whs4"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs5">
-<col class="whs6">
-<col class="whs7">
-
-<tr valign="top" class="whs8">
-<td width="32.6%" class="whs9">
-<p><img src="../pics/uniongroups.png" x-maintain-ratio="TRUE" width="306px" height="253px" border="0" class="img_whs10"></td>
-<td width="67.4%" class="whs11">
-<p><img src="../image133.gif" width="134px" height="151px" border="0" class="img_whs12"> <img src="../image134.gif" width="136px" height="151px" border="0" class="img_whs13"> <img src="../image135.gif" width="133px" height="159px" border="0" class="img_whs14"></p>
-<p> Group1
- Group2
- Group12</p>
-<p> </p>
-<p>For example, we have two groups Group1 and Group2. </p>
-<p>The result of their <span style="font-weight: bold;"><B>Union</B></span> will
- be Group12 </td></tr>
-</table>
-
-<p class="whs4"> </p>
-
-<p> <span style="margin-left: 40px;">In
- this dialog box you should specify the name</span><span style="margin-left: 40px; font-weight: bold;">
- <B></B></span><span style="margin-left: 40px;">of the resulting group and two
- groups which will be united.</span></p>
-
-<p class="whs4"> </p>
-
-<p class="whs4">2. Click the <span style="font-weight: bold;"><B>Ok
- </B></span>or <span style="font-weight: bold;"><B> Apply
- </B></span>button to confirm creation of the group. </p>
-
-<p> </p>
-
-<p class="whs15"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../grouping_elements.htm#bookmark2">Union
- of two Groups</a> operation. </p>
-
-<p class="whs15"> </p>
-
-<p class="whs15"> </p>
-
-<p> </p>
-
-<h3><a name=Intersection></a>Intersection of two groups</h3>
-
-<p>This operation allows to create a new group in such a way that all mesh
- elements that are present in both initial groups are added to the new
- one.</p>
-
-<p> </p>
-
-<p class=TODO>To intersect two groups:</p>
-
-<p class=TODO> </p>
-
-<p class="whs4">1. In the <span style="font-weight: bold;"><B>Mesh
- </B></span>menu select the <span style="font-weight: bold;"><B>Intersect Groups
- </B></span>item. The following dialog box will appear:</p>
-
-<p class="whs4"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs5">
-<col class="whs16">
-<col class="whs17">
-
-<tr valign="top" class="whs8">
-<td width="32.796%" class="whs18">
-<p><img src="../pics/intersectgroups.png" x-maintain-ratio="TRUE" width="306px" height="253px" border="0" class="img_whs10"></td>
-<td width="67.204%" class="whs19">
-<p><img src="../image133.gif" width="134px" height="151px" border="0" class="img_whs12"> <img src="../image134.gif" width="136px" height="151px" border="0" class="img_whs13"><img src="../image136.gif" width="141px" height="157px" border="0" class="img_whs20"></p>
-<p> Group1
- Group2
- Group12a</p>
-<p> </p>
-<p>For example, we have two groups Group1 and Group2. </p>
-<p>The result of their <span style="font-weight: bold;"><B>Intersection</B></span>
- will be Group12a </td></tr>
-</table>
-
-<p> </p>
-
-<p class="whs15">In this dialog box you should specify the
- name<span style="font-weight: bold;"> <B></B></span>of the resulting group and
- two groups which will be intersected.</p>
-
-<p class="whs4"> </p>
-
-<p class="whs4">2. Click the <span style="font-weight: bold;"><B>Ok
- </B></span>or <span style="font-weight: bold;"><B> Apply
- </B></span>button to confirm creation of the group. </p>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of an <a href="../grouping_elements.htm#bookmark3"> Intersection
- of two Groups</a> operation. </p>
-
-<p> </p>
-
-<h3><a name=Cut></a>Cut of two groups</h3>
-
-<p>This operation allows to create a new group in such a way that all mesh
- elements that are present in the main group but are absent in the tool
- group are added to the new one.</p>
-
-<p> </p>
-
-<p class=TODO>To cut two groups:</p>
-
-<p class=TODO> </p>
-
-<p class="whs4">1. In the <span style="font-weight: bold;"><B>Mesh
- </B></span>menu select the <span style="font-weight: bold;"><B>Cut Groups </B></span>item.
- The following dialog box will appear:</p>
-
-<p class="whs4"> </p>
-
-<table x-use-null-cells cellspacing="0" width="100%" class="whs5">
-<col class="whs21">
-<col class="whs22">
-
-<tr valign="top" class="whs8">
-<td width="33.089%" class="whs23">
-<p><img src="../pics/cutgroups.png" x-maintain-ratio="TRUE" width="306px" height="253px" border="0" class="img_whs10"></td>
-<td width="66.911%" class="whs24">
-<p><img src="../image133.gif" width="134px" height="151px" border="0" class="img_whs12"> <img src="../image134.gif" width="136px" height="151px" border="0" class="img_whs13"> <img src="../image137.gif" width="140px" height="146px" border="0" class="img_whs25"></p>
-<p> Group1
- Group2
- Group12b</p>
-<p> </p>
-<p>For example, we have two groups Group1 and Group2. </p>
-<p>The result of their <span style="font-weight: bold;"><B>Cut</B></span> will
- be Group12b </td></tr>
-</table>
-
-<p> </p>
-
-<p class="whs4">In this dialog box you should specify the
- name<span style="font-weight: bold;"> <B></B></span>of the resulting group and
- two groups which will be cut.</p>
-
-<p class="whs4"> </p>
-
-<p class="whs4">2. Click the <span style="font-weight: bold;"><B>Ok
- </B></span>or <span style="font-weight: bold;"><B> Apply
- </B></span>button to confirm creation of the group. </p>
-
-<p> </p>
-
-<p> <span style="font-weight: bold;"><B>See
- Also</B></span> a sample TUI Script of a <a href="../grouping_elements.htm#bookmark3"> Cut
- of two Groups</a> operation. </p>
-
-<p> </p>
-
-<p> </p>
-
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-<!--
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-//-->
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Viewing mesh info</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<link rel="stylesheet" href="../default_ns.css"><script type="text/javascript" language="JavaScript" title="WebHelpSplitCss">
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-<!--
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-p.whs2 { font-weight:bold; margin-left:40px; }
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-img_whs4 { border:none; width:20px; height:26px; border-style:none; }
-p.whs5 { margin-left:40px; }
-img_whs6 { border:none; width:271px; height:269px; float:none; border-style:none; }
-img_whs7 { border:none; width:22px; height:27px; border-style:none; }
-img_whs8 { border:none; border-style:none; width:451px; height:506px; float:none; }
-img_whs9 { border:none; width:866px; height:287px; float:none; border-style:none; }
-p.whs8 { margin-left:0px; }
-p.whs9 { margin-left:48px; }
-img_whs10 { border:none; width:310px; height:391px; float:none; border-style:none; }
-img_whs11 { border:none; width:310px; float:none; height:391px; border-style:none; }
-p.whs12 { margin-left:80px; }
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-</script>
-<h1>Mesh infos</h1>
-
-<p>There are two types of information boxes: <span style="font-weight: bold;"><B>Standard
- Mesh Infos</B></span>, <span style="font-weight: bold;"><B>Advanced Mesh Infos</B></span> and <span style="font-weight: bold;"><B>Mesh Element Info.</B></span></p>
-
-<p> </p>
-
-<ul type="disc" class="whs1">
-
- <li class=kadov-p><p class="whs2"><a
- href="#standard_infos">Standard</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a
- href="#advanced_infos">Advanced</a></p></li>
-
- <li class=kadov-p><p class="whs2"><a
- href="#element_infos">Mesh Element</a></p></li>
-</ul>
-
-<p class="whs2"> </p>
-
-<h3><a name=standard_infos>Standard Mesh Infos</a></h3>
-
-<p class="whs3">The <span style="font-weight: bold;"><B>Standard
- Mesh Infos</B></span> box gives only the information on the number of elements
- of maximum dimension and the number of nodes in the mesh. However, from
- this Info you can learn about groups selected on this mesh. </p>
-
-<p class="whs3">To view the <span style="font-weight: bold;"><B>Standard
- Mesh Infos, </B></span>select your mesh or submesh in the <span style="font-weight: bold;"><B>Object
- Browser</B></span> and<span style="font-weight: bold;"> <B></B></span>select <span
- style="font-weight: bold;"><B>Standard Mesh Infos </B></span>from<span style="font-weight: bold;">
- <B></B></span>the <span style="font-weight: bold;"><B>Mesh </B></span>menu or click
- <img src="../image49.gif" width="20px" height="26px" border="0" class="img_whs4"> button in the toolbar. The following information will
- be displayed:</p>
-
-<p class="whs3"> </p>
-
-<p class="whs5"><img src="../pics/a-standmeshinfo.png" x-maintain-ratio="TRUE" width="271px" height="269px" border="0" class="img_whs6"></p>
-
-<p> </p>
-
-<h3><a name=advanced_infos>Advanced Mesh Infos</a></h3>
-
-
-<p>The<span style="font-weight: bold;"><B> Advanced</B></span> <span style="font-weight: bold;"><B>Mesh
- Infos </B></span>gives more information about the mesh, including the total
- number of faces and volumes and their geometrical types.</p>
-
-<p>To view the <span style="font-weight: bold;"><B>Advanced Mesh Infos, </B></span>select
- your mesh or submesh in the <span style="font-weight: bold;"><B>Object Browser</B></span>
- and<span style="font-weight: bold;"> <B></B></span>select <span style="font-weight: bold;"><B>Advanced
- Mesh Infos </B></span>from<span style="font-weight: bold;"> <B></B></span>the <span
- style="font-weight: bold;"><B>Mesh </B></span>menu or click <img src="../image50.gif" width="22px" height="27px" border="0" class="img_whs7"> button
- in the toolbar. The following information will be displayed:</p>
-
-<p> </p>
-
-<p class="whs5"><img src="../pics/advanced_mesh_infos.png" x-maintain-ratio="TRUE" width="451px" height="506px" border="0" class="img_whs8"></p>
-
-<p class="whs5"> </p>
-
-<p class="whs5"> </p>
-
-<p class="whs5">In case you get Mesh Infos via a <a href="../viewing_meshes.htm">TUI
- script</a>, the information is displayed in Python Console.</p>
-
-<p class="whs5"> </p>
-
-<p class="whs5"><img src="../pics/b-mesh_infos.png" x-maintain-ratio="TRUE" width="866px" height="287px" border="0" class="img_whs9"></p>
-
-<p> </p>
-
-<h3><a name=element_infos>Mesh Element Infos</a></h3>
-
-<p>The <span style="font-weight: bold;"><B>Mesh Element Infos</B></span> box gives
- basic information about the type and the coordinates of the selected mesh
- element.</p>
-
-<p> </p>
-
-<p class="whs9"><img src="../pics/eleminfo1.png" x-maintain-ratio="TRUE" width="310px" height="391px" border="0" class="img_whs10"> <img src="../pics/eleminfo2.png" x-maintain-ratio="TRUE" width="310px" height="391px" border="0" class="img_whs11"></p>
-
-<p class="whs12"> </p>
-
-<script type="text/javascript" language="javascript1.2">
-<!--
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- writeIntopicBar(0);
-//-->
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-</html>
+++ /dev/null
-<!doctype HTML public "-//W3C//DTD HTML 4.0 Frameset//EN">
-
-<html>
-
-<head>
-<title>Warp</title>
-<meta http-equiv="content-type" content="text/html; charset=windows-1252">
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-<h1>Warping</h1>
-
-<p><img src="../i_blue.jpg" x-maintain-ratio="TRUE" width="30px" height="30px" border="0" class="img_whs1"> <span style="font-weight: bold;"><B>Warping</B></span> indicates
- that a face is not planar and is applied only to 2D elements with 4 nodes.
- This quality control criterion is based on a projection plane created
- by:</p>
-
-<p class="whs2">1. bisecting the four element edges, </p>
-
-<p class="whs2">2. creating a point on the plane at the vector
- average of the corners, where the x-axis extends from the point to the
- bisector on edge 2. </p>
-
-<p class="whs3">The plane normal is in the direction of the
- cross product of the x-axis and the vector from the origin to the bisector
- of edge 3. Every corner of the quad will then be a distance \93h\94 from the
- plane. The length of each half edge is measured and the shortest length
- is assigned \93l\94. The warp angle is the arcsine of the ratio of the projection
- height \93h\94 to the half edge length \93l\94. </p>
-
-<p> </p>
-
-<p class="whs2"><img src="../image24.gif" width="496px" height="336px" border="0" class="img_whs4"></p>
-
-<p class="whs2"> </p>
-
-<p class=TODO> </p>
-
-<p class=TODO>To apply the Warping quality criterion to your mesh:</p>
-
-<p class=TODO> </p>
-
-<p class="whs2">1. Display your mesh in the viewer.</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2">2. Choose <span style="font-weight: bold;"><B>Controls
- > Warp </B></span>or click <img src="../image39.gif" width="23px" height="23px" border="0" class="img_whs5"> button of the toolbar. Your mesh
- will be displayed in the viewer with its elements colored according to
- the applied mesh quality control criterion:</p>
-
-<p class="whs2"> </p>
-
-<p class="whs2"><img src="../image97.jpg" width="405px" height="308px" border="0" class="img_whs6"></p>
-
-<p class="whs2"> </p>
-
-<p class="whs3"><span style="font-weight: bold;"><B>See Also</B></span>
- a sample TUI Script of a <a href="../quality_controls.htm#bookmark10">Warping
- quality control</a> operation. </p>
-
-<p> </p>
-
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-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a></div>
-<h1>smeshDC.Mesh Class Reference</h1><!-- doxytag: class="smeshDC::Mesh" -->Class to define a mesh.
-<a href="#_details">More...</a>
-<p>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#c1ff5c26f41ca1e921d8dabc0fb1c476">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Constructor. <a href="#c1ff5c26f41ca1e921d8dabc0fb1c476"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8eb84ebf2ce7779ea55aefd753bdf0f1">SetMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Method that inits the <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> object from SMESH_Mesh interface. <a href="#8eb84ebf2ce7779ea55aefd753bdf0f1"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a80741f505adc6cb76e7a65441f3e9e9">GetMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Method that returns the mesh. <a href="#a80741f505adc6cb76e7a65441f3e9e9"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#678665e562fb5f8fa26e59c9eab08f9b">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get mesh name. <a href="#678665e562fb5f8fa26e59c9eab08f9b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#11ec61404242cf8caaade91bd47ee3e4">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to mesh. <a href="#11ec61404242cf8caaade91bd47ee3e4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#bf4a13668fe78b6b1957750d64cb4ac2">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the subMesh object associated to a subShape. <a href="#bf4a13668fe78b6b1957750d64cb4ac2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4b67e2fe74ee0f4699067446264c73f6">GetShape</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Method that returns the shape associated to the mesh. <a href="#4b67e2fe74ee0f4699067446264c73f6"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8397a449a458139c1dc7aa3a8399d58f">SetShape</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Method that associates given shape to the mesh(entails the mesh recreation). <a href="#8397a449a458139c1dc7aa3a8399d58f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#813ffea0a5d9f74930da1fae5ece3084">IsReadyToCompute</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return true if hypotheses are defined well. <a href="#813ffea0a5d9f74930da1fae5ece3084"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1551899004b15ef51010021fe0ac6fbe">GetAlgoState</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return errors of hypotheses definintion error list is empty if everything is OK. <a href="#1551899004b15ef51010021fe0ac6fbe"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#d602421e8b0bc7939e8af87b36081052">GetGeometryByMeshElement</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return geometrical object the given element is built on. <a href="#d602421e8b0bc7939e8af87b36081052"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#7cf170b510c4284f823897b51ec3540d">MeshDimension</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns mesh dimension depending on shape one. <a href="#7cf170b510c4284f823897b51ec3540d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#28f838bb27b19d3c6ec186df18c6c8b1">Segment</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a segment discretization 1D algorithm. <a href="#28f838bb27b19d3c6ec186df18c6c8b1"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#920aa6d60b0d34ba969829d51dc88b32">Triangle</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a triangle 2D algorithm for faces. <a href="#920aa6d60b0d34ba969829d51dc88b32"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#5f2845be55c166a38210710ea7773e95">Quadrangle</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a quadrangle 2D algorithm for faces. <a href="#5f2845be55c166a38210710ea7773e95"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#b2f614599f43d4e9fa905417a0497c0d">Tetrahedron</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a tetrahedron 3D algorithm for solids. <a href="#b2f614599f43d4e9fa905417a0497c0d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#f588cdeec1d6563d3695c8f92ed06aa9">Hexahedron</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a hexahedron 3D algorithm for solids. <a href="#f588cdeec1d6563d3695c8f92ed06aa9"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#9de57f89d45e0dd2e898313fdff5985b">Netgen</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Deprecated, only for compatibility! <a href="#9de57f89d45e0dd2e898313fdff5985b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4a2abf09f54f31e1ef92aa8bd0e0b565">Projection1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a projection 1D algorithm for edges. <a href="#4a2abf09f54f31e1ef92aa8bd0e0b565"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#046a671861717506e4ae530fa4840224">Projection2D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a projection 2D algorithm for faces. <a href="#046a671861717506e4ae530fa4840224"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#13ab59da622ec76691c699fbc49d8e1c">Projection3D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a projection 3D algorithm for solids. <a href="#13ab59da622ec76691c699fbc49d8e1c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#275acd8686c2569af2f04b8c3315b48c">Prism</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a 3D extrusion (Prism 3D) or RadialPrism 3D algorithm for solids. <a href="#275acd8686c2569af2f04b8c3315b48c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#f0544a1f249f9d791e94c96920e8945f">Compute</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Compute the mesh and return the status of the computation. <a href="#f0544a1f249f9d791e94c96920e8945f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#b7785437258a0213f3ffd4b4503c985f">AutomaticTetrahedralization</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Compute tetrahedral mesh using AutomaticLength + MEFISTO + NETGEN The parameter <em>fineness</em> [0,-1] defines mesh fineness. <a href="#b7785437258a0213f3ffd4b4503c985f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#da4dd042e7ca959a7b0dbd6b486ed89c">AutomaticHexahedralization</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Compute hexahedral mesh using AutomaticLength + Quadrangle + Hexahedron The parameter <em>fineness</em> [0,-1] defines mesh fineness. <a href="#da4dd042e7ca959a7b0dbd6b486ed89c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ead2cc1d3a22fedf1ec79f10912651ba">AddHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Assign hypothesis. <a href="#ead2cc1d3a22fedf1ec79f10912651ba"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#f54948c4d2cf4f02d3c256d9b641442e">GetHypothesisList</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the list of hypothesis added on a geom. <a href="#f54948c4d2cf4f02d3c256d9b641442e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#cba551abec7186c4960baa4b455f502b">RemoveGlobalHypotheses</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Removes all global hypotheses. <a href="#cba551abec7186c4960baa4b455f502b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#d61dfe7a9c0b8d7448a8c647ab43e515">Group</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create a mesh group based on geometric object <em>grp</em> and give a <em>name</em>, <br>
- if this parameter is not defined the name is the same as the geometric group name <br>
- Note: Works like <a class="el" href="classsmeshDC_1_1Mesh.html#4670f7c11dac95280c6d83ea895b4405">GroupOnGeom()</a>. <a href="#d61dfe7a9c0b8d7448a8c647ab43e515"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#398167a69f2d0e0cbd3eae985790ec5b">ExportToMED</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Deprecated, only for compatibility! Please, use <a class="el" href="classsmeshDC_1_1Mesh.html#68a16d0cd621d6333c4559525397bbe7">ExportMED()</a> method instead. <a href="#398167a69f2d0e0cbd3eae985790ec5b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#68a16d0cd621d6333c4559525397bbe7">ExportMED</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Export the mesh in a file with the MED format. <a href="#68a16d0cd621d6333c4559525397bbe7"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1f94daa2d9e8ff9b8c0f908aea5b3dd8">ExportDAT</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Export the mesh in a file with the DAT format. <a href="#1f94daa2d9e8ff9b8c0f908aea5b3dd8"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#c47b1dd9de46d9cf7b12c0d74a012c73">ExportUNV</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Export the mesh in a file with the UNV format. <a href="#c47b1dd9de46d9cf7b12c0d74a012c73"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1311207ea4fe623bb10d459e2d5c32a0">ExportSTL</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Export the mesh in a file with the STL format. <a href="#1311207ea4fe623bb10d459e2d5c32a0"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8874fec2213bddb829bc070659f9acbc">CreateEmptyGroup</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates an empty mesh group. <a href="#8874fec2213bddb829bc070659f9acbc"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4670f7c11dac95280c6d83ea895b4405">GroupOnGeom</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a mesh group based on geometric object <em>grp</em> and give a <em>name</em>, <br>
- if this parameter is not defined the name is the same as the geometric group name. <a href="#4670f7c11dac95280c6d83ea895b4405"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a7ed4ce8c7808568978a30c5232da487">MakeGroupByIds</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create a mesh group by the given ids of elements. <a href="#a7ed4ce8c7808568978a30c5232da487"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a0297756f379f53f0c689895fbfcb311">MakeGroup</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create a mesh group by the given conditions. <a href="#a0297756f379f53f0c689895fbfcb311"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#75a309a3c6c29bf1ac7e2a34cfc98a8c">MakeGroupByCriterion</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create a mesh group by the given criterion. <a href="#75a309a3c6c29bf1ac7e2a34cfc98a8c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#34254deb71e7f191cfe8f0f247e26df3">MakeGroupByCriteria</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create a mesh group by the given criteria(list of criterions). <a href="#34254deb71e7f191cfe8f0f247e26df3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#d793ade055774eeb9b99fac121dc5292">MakeGroupByFilter</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create a mesh group by the given filter. <a href="#d793ade055774eeb9b99fac121dc5292"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#339c3cdcb9b2253d14d4d205d0e35ec4">GetIdsFromFilter</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Pass mesh elements through the given filter and return ids. <a href="#339c3cdcb9b2253d14d4d205d0e35ec4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8784982fbefc8973ac0668c90b0771dd">GetFreeBorders</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Verify whether 2D mesh element has free edges(edges connected to one face only)<br>
- Returns list of special structures(borders). <a href="#8784982fbefc8973ac0668c90b0771dd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#3e16e192a6b18ae9b3a2caaeff097618">RemoveGroup</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Remove a group. <a href="#3e16e192a6b18ae9b3a2caaeff097618"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#22d530cca860633d021dfa96cf9ef6fd">RemoveGroupWithContents</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Remove group with its contents. <a href="#22d530cca860633d021dfa96cf9ef6fd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#23c2a81c48c10eb47931400dfd176867">GetGroups</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the list of groups existing in the mesh. <a href="#23c2a81c48c10eb47931400dfd176867"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#475bbb0fa983c0c0ac9d69614849e6da">GetGroupNames</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the list of names of groups existing in the mesh. <a href="#475bbb0fa983c0c0ac9d69614849e6da"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#2fa03227010c3cbd0bf096467727cd1e">UnionGroups</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Union of two groups New group is created. <a href="#2fa03227010c3cbd0bf096467727cd1e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#75f9bb08e2900f80254d81b5f41a042b">IntersectGroups</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Intersection of two groups New group is created. <a href="#75f9bb08e2900f80254d81b5f41a042b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#07ea3708cdcb1ea113246bb79ddc2af2">CutGroups</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Cut of two groups New group is created. <a href="#07ea3708cdcb1ea113246bb79ddc2af2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#5927ab5e23104e5abef7e610734e0d5b">GetLog</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the log of nodes and elements added or removed since previous clear of the log. <a href="#5927ab5e23104e5abef7e610734e0d5b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#65c714c92cf53bdbc58d114944884865">ClearLog</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Clear the log of nodes and elements added or removed since previous clear. <a href="#65c714c92cf53bdbc58d114944884865"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#525008123ff68c3f4aa7dcd5fb1c184a">GetId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the internal Id. <a href="#525008123ff68c3f4aa7dcd5fb1c184a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a93ece387535f28cd3b644a80d84412f">GetStudyId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the study Id. <a href="#a93ece387535f28cd3b644a80d84412f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#997c82163320ed98e1f170d33b81bdc8">HasDuplicatedGroupNamesMED</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Check group names for duplications. <a href="#997c82163320ed98e1f170d33b81bdc8"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#66ae25fc3c278592ba3a23a9973de5ca">GetMeshEditor</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Obtain instance of SMESH_MeshEditor. <a href="#66ae25fc3c278592ba3a23a9973de5ca"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#0cb466605e4826639a1c2606b03e51de">GetMEDMesh</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get MED <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a>. <a href="#0cb466605e4826639a1c2606b03e51de"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#2584e68d5f83e2472dc31f672032b830">NbNodes</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of nodes in mesh. <a href="#2584e68d5f83e2472dc31f672032b830"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#32aca468f35dee817c574f685c19340c">NbElements</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of elements in mesh. <a href="#32aca468f35dee817c574f685c19340c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#2a5a6924c6917c3edd61381f7767f2ce">NbEdges</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of edges in mesh. <a href="#2a5a6924c6917c3edd61381f7767f2ce"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a8cc56138278b062b3fc61b343b9a9b0">NbEdgesOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of edges with given order in mesh. <a href="#a8cc56138278b062b3fc61b343b9a9b0"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#3e98a54848efa261461d04bcc37c032c">NbFaces</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of faces in mesh. <a href="#3e98a54848efa261461d04bcc37c032c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#cb2398ea3a1ad0f83daba071af271ae3">NbFacesOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of faces with given order in mesh. <a href="#cb2398ea3a1ad0f83daba071af271ae3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#24a43384422c391646fbb9c77084f44f">NbTriangles</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of triangles in mesh. <a href="#24a43384422c391646fbb9c77084f44f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#72022a3452810f55ff254e304bc12d4b">NbTrianglesOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of triangles with given order in mesh. <a href="#72022a3452810f55ff254e304bc12d4b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ae13cdc351ee0c608ed91835bdd5317a">NbQuadrangles</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of quadrangles in mesh. <a href="#ae13cdc351ee0c608ed91835bdd5317a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#74597459a83d05097fa3a159b4f4fa05">NbQuadranglesOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of quadrangles with given order in mesh. <a href="#74597459a83d05097fa3a159b4f4fa05"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#900f9dd693371843c6ab877d5a42382a">NbPolygons</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of polygons in mesh. <a href="#900f9dd693371843c6ab877d5a42382a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#3fa7ae366a834f698a097976028e7d28">NbVolumes</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of volumes in mesh. <a href="#3fa7ae366a834f698a097976028e7d28"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#c82174b2e7063aebc6700930be4b66b2">NbVolumesOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of volumes with given order in mesh. <a href="#c82174b2e7063aebc6700930be4b66b2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#36e3b930b278620e8e467aef77bda9b4">NbTetras</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of tetrahedrons in mesh. <a href="#36e3b930b278620e8e467aef77bda9b4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1f2e5161166e9eacafb404e14331ea42">NbTetrasOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of tetrahedrons with given order in mesh. <a href="#1f2e5161166e9eacafb404e14331ea42"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#06c95e05917e4a7f5caebb439b3d0f7b">NbHexas</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of hexahedrons in mesh. <a href="#06c95e05917e4a7f5caebb439b3d0f7b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#7ce22fe449679f671eb98154c133ac91">NbHexasOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of hexahedrons with given order in mesh. <a href="#7ce22fe449679f671eb98154c133ac91"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#39f3b03a825603e0c3c8c2fd8fa35685">NbPyramids</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of pyramids in mesh. <a href="#39f3b03a825603e0c3c8c2fd8fa35685"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#80ee709b9f8bf2d706833f2010a6873b">NbPyramidsOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of pyramids with given order in mesh. <a href="#80ee709b9f8bf2d706833f2010a6873b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#00a2ee826040c763152c28bc2f45d54d">NbPrisms</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of prisms in mesh. <a href="#00a2ee826040c763152c28bc2f45d54d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#bd0854dc0bd1520d566d3e9f59d7ec22">NbPrismsOfOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of prisms with given order in mesh. <a href="#bd0854dc0bd1520d566d3e9f59d7ec22"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#5025ca15b456b79f18c5f487f525aa1d">NbPolyhedrons</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of polyhedrons in mesh. <a href="#5025ca15b456b79f18c5f487f525aa1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#6e50c4f6b5e8fd20526ae6a2cf4b4b3d">NbSubMesh</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of submeshes in mesh. <a href="#6e50c4f6b5e8fd20526ae6a2cf4b4b3d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e634c3574cfe53f945ec937a15a1a5a4">GetElementsId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns list of mesh elements ids. <a href="#e634c3574cfe53f945ec937a15a1a5a4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e26ef77b1133bcba8d694220a43bb0c7">GetElementsByType</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns list of ids of mesh elements with given type. <a href="#e26ef77b1133bcba8d694220a43bb0c7"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#548dd7ee73c4f714a976233520f1afe7">GetNodesId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns list of mesh nodes ids. <a href="#548dd7ee73c4f714a976233520f1afe7"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#c2cecd9dda12f1bb0ace5d0fbf83cd56">GetElementType</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns type of mesh element. <a href="#c2cecd9dda12f1bb0ace5d0fbf83cd56"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#b68f23b2eade0a29627e85f3ad6073b2">GetSubMeshElementsId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns list of submesh elements ids. <a href="#b68f23b2eade0a29627e85f3ad6073b2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#2efd22f2dee3f2f0a118a4ceb6793716">GetSubMeshNodesId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns list of submesh nodes ids. <a href="#2efd22f2dee3f2f0a118a4ceb6793716"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4b29aa5027d111923d72130b2ce8e37c">GetSubMeshElementType</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns list of ids of submesh elements with given type. <a href="#4b29aa5027d111923d72130b2ce8e37c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ede2e5f1f4aad2f6a3e2618efb879d02">Dump</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get mesh description. <a href="#ede2e5f1f4aad2f6a3e2618efb879d02"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ac4b569cd8022047a473edbe4f216802">GetNodeXYZ</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get XYZ coordinates of node as list of double <br>
- If there is not node for given ID - returns empty list. <a href="#ac4b569cd8022047a473edbe4f216802"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ea303e542d760d9748e6f4adb657f434">GetNodeInverseElements</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">For given node returns list of IDs of inverse elements <br>
- If there is not node for given ID - returns empty list. <a href="#ea303e542d760d9748e6f4adb657f434"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#95bd2c550e6485befcada57b13029242">GetShapeID</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">If given element is node returns IDs of shape from position <br>
- If there is not node for given ID - returns -1. <a href="#95bd2c550e6485befcada57b13029242"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#37691b345bd2fe31129f5d306c7285ff">GetShapeIDForElem</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">For given element returns ID of result shape after FindShape() from SMESH_MeshEditor <br>
- If there is not element for given ID - returns -1. <a href="#37691b345bd2fe31129f5d306c7285ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ea4c97bd804514962ff613a9545a99c3">GetElemNbNodes</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of nodes for given element <br>
- If there is not element for given ID - returns -1. <a href="#ea4c97bd804514962ff613a9545a99c3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#795fb7cd896a9336c2fb287edba1df46">GetElemNode</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns ID of node by given index for given element <br>
- If there is not element for given ID - returns -1 <br>
- If there is not node for given index - returns -2. <a href="#795fb7cd896a9336c2fb287edba1df46"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#7f8130a3b16c8459d0c8ad23389b3dac">IsMediumNode</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns true if given node is medium node in given quadratic element. <a href="#7f8130a3b16c8459d0c8ad23389b3dac"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e405cf3b31ed146203c601d268824e34">IsMediumNodeOfAnyElem</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns true if given node is medium node in one of quadratic elements. <a href="#e405cf3b31ed146203c601d268824e34"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4775548250a94a28fdc4349df6b5e664">ElemNbEdges</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of edges for given element. <a href="#4775548250a94a28fdc4349df6b5e664"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4c42af133c335bb357f847e2dcc95a3e">ElemNbFaces</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns number of faces for given element. <a href="#4c42af133c335bb357f847e2dcc95a3e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#2d3c8a45cb35fed969935471438dd229">IsPoly</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns true if given element is polygon. <a href="#2d3c8a45cb35fed969935471438dd229"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#de565d48cd768a56da73df5eb12c8c4b">IsQuadratic</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns true if given element is quadratic. <a href="#de565d48cd768a56da73df5eb12c8c4b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#c9c7f540a885ad5718f28c1b1cc8cc74">BaryCenter</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns XYZ coordinates of bary center for given element as list of double <br>
- If there is not element for given ID - returns empty list. <a href="#c9c7f540a885ad5718f28c1b1cc8cc74"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#d71d7b886bb422f3eea601d22b4b419d">RemoveElements</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Removes elements from mesh by ids. <a href="#d71d7b886bb422f3eea601d22b4b419d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#867a060a8a8ee32c75dcced1da15b022">RemoveNodes</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Removes nodes from mesh by ids. <a href="#867a060a8a8ee32c75dcced1da15b022"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a4acf9d064dbf154f1f07cf18601c0ea">AddNode</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Add node to mesh by coordinates. <a href="#a4acf9d064dbf154f1f07cf18601c0ea"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#26131c97ad04a78613bdae200bb17660">AddEdge</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create edge both similar and quadratic (this is determed by number of given nodes). <a href="#26131c97ad04a78613bdae200bb17660"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#7120695c0343590b47ef6e8f02766fa4">AddFace</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create face both similar and quadratic (this is determed by number of given nodes). <a href="#7120695c0343590b47ef6e8f02766fa4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#3d6fc9c8186016f2e37e4f2185d11446">AddPolygonalFace</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Add polygonal face to mesh by list of nodes ids. <a href="#3d6fc9c8186016f2e37e4f2185d11446"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#3ae39f43bb819ce72356e1ed1fd88589">AddVolume</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create volume both similar and quadratic (this is determed by number of given nodes). <a href="#3ae39f43bb819ce72356e1ed1fd88589"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4a537d81fc2a84c90dea4159c788f37c">AddPolyhedralVolume</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create volume of many faces, giving nodes for each face. <a href="#4a537d81fc2a84c90dea4159c788f37c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#7c54c114d76ed3f108863a9639a17ca8">AddPolyhedralVolumeByFaces</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create volume of many faces, giving IDs of existing faces. <a href="#7c54c114d76ed3f108863a9639a17ca8"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#3a1236e58d50d925689b76e1e923f455">MoveNode</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Move node with given id. <a href="#3a1236e58d50d925689b76e1e923f455"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#305fdba055982c393cfbbdb6dbb50646">FindNodeClosestTo</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Find a node closest to a point. <a href="#305fdba055982c393cfbbdb6dbb50646"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#fd794d99dc4539f0b3c04f9a9372d476">MeshToPassThroughAPoint</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Find a node closest to a point and move it to a point location. <a href="#fd794d99dc4539f0b3c04f9a9372d476"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#d5a94fade689f8efc3ed2c9e8ab7c7b1">InverseDiag</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Replace two neighbour triangles sharing Node1-Node2 link with ones built on the same 4 nodes but having other common link. <a href="#d5a94fade689f8efc3ed2c9e8ab7c7b1"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#b76da5a684955529e10b291b421967f2">DeleteDiag</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Replace two neighbour triangles sharing Node1-Node2 link with a quadrangle built on the same 4 nodes. <a href="#b76da5a684955529e10b291b421967f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#cf69091c91c36ce5335e4da2631ef7b6">Reorient</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Reorient elements by ids. <a href="#cf69091c91c36ce5335e4da2631ef7b6"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#735a23aa0c42779067e6cc81be38dee3">ReorientObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Reorient all elements of the object. <a href="#735a23aa0c42779067e6cc81be38dee3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#d0af9e5504148afa14cbfe672f05eb99">TriToQuad</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Fuse neighbour triangles into quadrangles. <a href="#d0af9e5504148afa14cbfe672f05eb99"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#b460127d4a11dc7093673699aa596251">TriToQuadObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Fuse neighbour triangles of the object into quadrangles. <a href="#b460127d4a11dc7093673699aa596251"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#0ed805191162c718c85f628da184399a">QuadToTri</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split quadrangles into triangles. <a href="#0ed805191162c718c85f628da184399a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1338b63884c90a486869d1ca6bc1e5f3">QuadToTriObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split quadrangles into triangles. <a href="#1338b63884c90a486869d1ca6bc1e5f3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#79bebb3280d8727e0aa63abf72895e00">SplitQuad</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split quadrangles into triangles. <a href="#79bebb3280d8727e0aa63abf72895e00"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#9f72cd3ce05553fa81cb9ab55276c6e3">SplitQuadObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split quadrangles into triangles. <a href="#9f72cd3ce05553fa81cb9ab55276c6e3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#0ccd083fa2ca43dca1df29a07dbc61d9">BestSplit</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Find better splitting of the given quadrangle. <a href="#0ccd083fa2ca43dca1df29a07dbc61d9"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#c458281ac5240ea90076231f2ac91b7f">SplitQuadsNearTriangularFacets</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split quafrangle faces near triangular facets of volumes. <a href="#c458281ac5240ea90076231f2ac91b7f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#15037374765f1e7439997f1a2416590b">SplitHexaToTetras</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split hexahedrons into tetrahedrons. <a href="#15037374765f1e7439997f1a2416590b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#bcb5ef95810e1c2a8edb3041a73bf339">SplitHexaToPrisms</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Split hexahedrons into prisms. <a href="#bcb5ef95810e1c2a8edb3041a73bf339"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#47625763762791aa12b279915db0f5bb">Smooth</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Smooth elements. <a href="#47625763762791aa12b279915db0f5bb"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#02b0945fb6cba824e7a02398d58ff2d2">SmoothObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Smooth elements belong to given object. <a href="#02b0945fb6cba824e7a02398d58ff2d2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#576f1975cee8eccb70bddcbf5c79a1b8">SmoothParametric</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Parametric smooth the given elements. <a href="#576f1975cee8eccb70bddcbf5c79a1b8"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e6188d5cbc547c960b65cbf03a64c360">SmoothParametricObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Parametric smooth elements belong to given object. <a href="#e6188d5cbc547c960b65cbf03a64c360"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#950b615f72cf87e1b1f30b9bcba1def7">ConvertToQuadratic</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Converts all mesh to quadratic one, deletes old elements, replacing them with quadratic ones with the same id. <a href="#950b615f72cf87e1b1f30b9bcba1def7"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#63fdf86ae5a1c450d372789732dc85ed">ConvertFromQuadratic</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Converts all mesh from quadratic to ordinary ones, deletes old quadratic elements, <br>
- replacing them with ordinary mesh elements with the same id. <a href="#63fdf86ae5a1c450d372789732dc85ed"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8b7a1f81371994a5fcbb58b56ec26382">RenumberNodes</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Renumber mesh nodes. <a href="#8b7a1f81371994a5fcbb58b56ec26382"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#05d3b3ae8bda7842bc69a72b9426a69d">RenumberElements</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Renumber mesh elements. <a href="#05d3b3ae8bda7842bc69a72b9426a69d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#51fafc65b1c00aa71fb3368302879e90">RotationSweep</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by rotation of the elements around the axis. <a href="#51fafc65b1c00aa71fb3368302879e90"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e1801356bd22826c806ff0991e44e9ab">RotationSweepObject</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by rotation of the elements of object around the axis. <a href="#e1801356bd22826c806ff0991e44e9ab"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a9104edbd7b7c6cbc3b1ba9538ed9f59">ExtrusionSweep</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the elements with given ids. <a href="#a9104edbd7b7c6cbc3b1ba9538ed9f59"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#f67f780ee272071948ac9ef85373dc3a">AdvancedExtrusion</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the elements with given ids. <a href="#f67f780ee272071948ac9ef85373dc3a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#42c025c8067cc5cc0090d6ec1412ad4d">ExtrusionSweepObject</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the elements belong to object. <a href="#42c025c8067cc5cc0090d6ec1412ad4d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e95c632534893826ba9946d97caef095">ExtrusionSweepObject1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the elements belong to object. <a href="#e95c632534893826ba9946d97caef095"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#43fb0ee239a93e665d6d7cb743b08325">ExtrusionSweepObject2D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the elements belong to object. <a href="#43fb0ee239a93e665d6d7cb743b08325"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#faef42567ec17757143a6b0b1b0ffd14">ExtrusionAlongPath</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the given elements A path of extrusion must be a meshed edge. <a href="#faef42567ec17757143a6b0b1b0ffd14"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#802c0f3464746978efbf0194bb7472fc">ExtrusionAlongPathObject</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Generate new elements by extrusion of the elements belong to object A path of extrusion must be a meshed edge. <a href="#802c0f3464746978efbf0194bb7472fc"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#4f24d9ac04c1f7adb4ce72630103b39e">Mirror</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Symmetrical copy of mesh elements. <a href="#4f24d9ac04c1f7adb4ce72630103b39e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#921c02f7d4778d395bcab56d067207e4">MirrorObject</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Symmetrical copy of object. <a href="#921c02f7d4778d395bcab56d067207e4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1e2faa9a7a0d7f38608bc5b4c4e9102a">Translate</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Translates the elements. <a href="#1e2faa9a7a0d7f38608bc5b4c4e9102a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#22ec87ab4df5e8998e574e8c05a9723a">TranslateObject</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Translates the object. <a href="#22ec87ab4df5e8998e574e8c05a9723a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#228afef21b2340aa09e0b193f59001b0">Rotate</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Rotates the elements. <a href="#228afef21b2340aa09e0b193f59001b0"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#aaf823b609d2b45aee3f2751b32c8d2d">RotateObject</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Rotates the object. <a href="#aaf823b609d2b45aee3f2751b32c8d2d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#264d2001aebb0e526af2bf9495750f6c">FindCoincidentNodes</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Find group of nodes close to each other within Tolerance. <a href="#264d2001aebb0e526af2bf9495750f6c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#b05f9ed75d38e2038924b88cdfd546ae">FindCoincidentNodesOnPart</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Find group of nodes close to each other within Tolerance. <a href="#b05f9ed75d38e2038924b88cdfd546ae"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#503c866e8a58227e6d70877843b96e4a">MergeNodes</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Merge nodes. <a href="#503c866e8a58227e6d70877843b96e4a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#643c80318fafd3d98c530c88ebdc4257">FindEqualElements</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Find elements built on the same nodes. <a href="#643c80318fafd3d98c530c88ebdc4257"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#023c5ccae0e02e73485019fe82ab8b35">MergeElements</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Merge elements in each given group. <a href="#023c5ccae0e02e73485019fe82ab8b35"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#f76363128b31cbe3fc32afc9cd771565">MergeEqualElements</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Remove all but one of elements built on the same nodes. <a href="#f76363128b31cbe3fc32afc9cd771565"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#079f6131307a4be37245823e6fd724da">SewFreeBorders</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Sew free borders. <a href="#079f6131307a4be37245823e6fd724da"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#0c54ec7794e65956ecfab94476230a6e">SewConformFreeBorders</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Sew conform free borders. <a href="#0c54ec7794e65956ecfab94476230a6e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e887767b6fb87c6be80763f4f78e2252">SewBorderToSide</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Sew border to side. <a href="#e887767b6fb87c6be80763f4f78e2252"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#1feede9a829e6f347641ba073840f13d">SewSideElements</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Sew two sides of a mesh. <a href="#1feede9a829e6f347641ba073840f13d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#e613925597654962cd6bc1354cd847ab">ChangeElemNodes</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set new nodes for given element. <a href="#e613925597654962cd6bc1354cd847ab"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8589dd93f380f74a91d1a270a3329392">GetLastCreatedNodes</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If during last operation of MeshEditor some nodes were created this method returns list of it's IDs, <br>
- if new nodes not created - returns empty list. <a href="#8589dd93f380f74a91d1a270a3329392"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#86d590631a7eb99c5e0e6c38c596ed7c">GetLastCreatedElems</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If during last operation of MeshEditor some elements were created this method returns list of it's IDs, <br>
- if new elements not creared - returns empty list. <a href="#86d590631a7eb99c5e0e6c38c596ed7c"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#0be9a9dabe33b7f3fdd5a1e31a19de30">smeshpyD</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#8d2ba56c7de00d23867fb26908a09dbd">geompyD</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#85b1f2feb28730e9a226fbe98b9198a8">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#046173eaa203630e4a12147a8dc031da">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#a7484397c0eafe910f9e5b1fb77a20f3">editor</a></td></tr>
-
-<tr><td colspan="2"><br><h2>Static Public Attributes</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#9f46fbb458e5173bd4ef0f816ed778a2">geom</a> = 0</td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#ab3d2e782c81eb8c172ffea4934d9afc">mesh</a> = 0</td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html#2208820f1e04d15486802226576b45d8">editor</a> = 0</td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-The class contains mesh shape, SMESH_Mesh, SMESH_MeshEditor More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="c1ff5c26f41ca1e921d8dabc0fb1c476"></a><!-- doxytag: member="smeshDC::Mesh::__init__" ref="c1ff5c26f41ca1e921d8dabc0fb1c476" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smeshpyD</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geompyD</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>obj</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Creates mesh on the shape <em>geom(or the empty mesh if geom equal to 0)</em>, sets GUI name of this mesh to <em>name</em>. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>obj</em> </td><td>Shape to be meshed or SMESH_Mesh object </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>name</em> </td><td>Study name of the mesh </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="8eb84ebf2ce7779ea55aefd753bdf0f1"></a><!-- doxytag: member="smeshDC::Mesh::SetMesh" ref="8eb84ebf2ce7779ea55aefd753bdf0f1" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SetMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theMesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theMesh</em> </td><td>is SMESH_Mesh object </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a80741f505adc6cb76e7a65441f3e9e9"></a><!-- doxytag: member="smeshDC::Mesh::GetMesh" ref="a80741f505adc6cb76e7a65441f3e9e9" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Mesh object </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="678665e562fb5f8fa26e59c9eab08f9b"></a><!-- doxytag: member="smeshDC::Mesh::GetName" ref="678665e562fb5f8fa26e59c9eab08f9b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="11ec61404242cf8caaade91bd47ee3e4"></a><!-- doxytag: member="smeshDC::Mesh::SetName" ref="11ec61404242cf8caaade91bd47ee3e4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="bf4a13668fe78b6b1957750d64cb4ac2"></a><!-- doxytag: member="smeshDC::Mesh::GetSubMesh" ref="bf4a13668fe78b6b1957750d64cb4ac2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theSubObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-The subMesh object gives access to nodes and elements IDs. <br>
- SubMesh will be used instead of SubShape in a next idl version to adress a specific subMesh...
-</div>
-</div><p>
-<a class="anchor" name="4b67e2fe74ee0f4699067446264c73f6"></a><!-- doxytag: member="smeshDC::Mesh::GetShape" ref="4b67e2fe74ee0f4699067446264c73f6" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetShape </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>GEOM_Object </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="8397a449a458139c1dc7aa3a8399d58f"></a><!-- doxytag: member="smeshDC::Mesh::SetShape" ref="8397a449a458139c1dc7aa3a8399d58f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SetShape </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>shape to be meshed(GEOM_Object) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="813ffea0a5d9f74930da1fae5ece3084"></a><!-- doxytag: member="smeshDC::Mesh::IsReadyToCompute" ref="813ffea0a5d9f74930da1fae5ece3084" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.IsReadyToCompute </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theSubObject</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theMesh</em> </td><td>is an instance of <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> class </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theSubObject</em> </td><td>subshape of a mesh shape </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="1551899004b15ef51010021fe0ac6fbe"></a><!-- doxytag: member="smeshDC::Mesh::GetAlgoState" ref="1551899004b15ef51010021fe0ac6fbe" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetAlgoState </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theSubObject</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theMesh</em> </td><td>is an instance of <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> class </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theSubObject</em> </td><td>subshape of a mesh shape </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>a list of errors </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d602421e8b0bc7939e8af87b36081052"></a><!-- doxytag: member="smeshDC::Mesh::GetGeometryByMeshElement" ref="d602421e8b0bc7939e8af87b36081052" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetGeometryByMeshElement </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theElementID</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theGeomName</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-The returned geometrical object, if not nil, is either found in the study or is published by this method with the given name <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theMesh</em> </td><td>is an instance of <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> class </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theElementID</em> </td><td>an id of the mesh element </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theGeomName</em> </td><td>user defined name of geometrical object </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>GEOM.GEOM_Object instance </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="7cf170b510c4284f823897b51ec3540d"></a><!-- doxytag: member="smeshDC::Mesh::MeshDimension" ref="7cf170b510c4284f823897b51ec3540d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MeshDimension </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="28f838bb27b19d3c6ec186df18c6c8b1"></a><!-- doxytag: member="smeshDC::Mesh::Segment" ref="28f838bb27b19d3c6ec186df18c6c8b1" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Segment </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>algo</em> = <code><a class="el" href="namespacesmeshDC.html#fcd10952f4e87878b85f48b0b225372f">REGULAR</a></code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>algo</em> parameter is not sets, this algorithm is REGULAR. If the optional <em>geom</em> parameter is not sets, this algorithm is global. <br>
- Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>algo</em> </td><td>values are <a class="el" href="namespacesmeshDC.html#fcd10952f4e87878b85f48b0b225372f">smesh.REGULAR</a> or <a class="el" href="namespacesmeshDC.html#955814fbbff4cdc590cd03dbbb859927">smesh.PYTHON</a> for discretization via python function </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="920aa6d60b0d34ba969829d51dc88b32"></a><!-- doxytag: member="smeshDC::Mesh::Triangle" ref="920aa6d60b0d34ba969829d51dc88b32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Triangle </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>algo</em> = <code><a class="el" href="namespacesmeshDC.html#12ae6b0bb6a0f0e08228bb238dab824d">MEFISTO</a></code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. <br>
- Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>algo</em> </td><td>values are: <a class="el" href="namespacesmeshDC.html#12ae6b0bb6a0f0e08228bb238dab824d">smesh.MEFISTO</a> or <a class="el" href="namespacesmeshDC.html#12e2315ca0c10d490928dcc3b2351864">smesh.NETGEN</a> </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="5f2845be55c166a38210710ea7773e95"></a><!-- doxytag: member="smeshDC::Mesh::Quadrangle" ref="5f2845be55c166a38210710ea7773e95" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Quadrangle </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. <br>
- Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b2f614599f43d4e9fa905417a0497c0d"></a><!-- doxytag: member="smeshDC::Mesh::Tetrahedron" ref="b2f614599f43d4e9fa905417a0497c0d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Tetrahedron </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>algo</em> = <code><a class="el" href="namespacesmeshDC.html#12e2315ca0c10d490928dcc3b2351864">NETGEN</a></code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-The parameter <em>algo</em> permits to choice the algorithm: NETGEN or GHS3D If the optional <em>geom</em> parameter is not sets, this algorithm is global. <br>
- Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>algo</em> </td><td>values are: <a class="el" href="namespacesmeshDC.html#12e2315ca0c10d490928dcc3b2351864">smesh.NETGEN</a>, <a class="el" href="namespacesmeshDC.html#67ce8984d9b8d988f78b632def748817">smesh.GHS3D</a>, <a class="el" href="namespacesmeshDC.html#118f33758b4f4725cc68db7aebd34083">smesh.FULL_NETGEN</a> </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="f588cdeec1d6563d3695c8f92ed06aa9"></a><!-- doxytag: member="smeshDC::Mesh::Hexahedron" ref="f588cdeec1d6563d3695c8f92ed06aa9" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Hexahedron </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. <br>
- Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="9de57f89d45e0dd2e898313fdff5985b"></a><!-- doxytag: member="smeshDC::Mesh::Netgen" ref="9de57f89d45e0dd2e898313fdff5985b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Netgen </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>is3D</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="4a2abf09f54f31e1ef92aa8bd0e0b565"></a><!-- doxytag: member="smeshDC::Mesh::Projection1D" ref="4a2abf09f54f31e1ef92aa8bd0e0b565" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Projection1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="046a671861717506e4ae530fa4840224"></a><!-- doxytag: member="smeshDC::Mesh::Projection2D" ref="046a671861717506e4ae530fa4840224" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Projection2D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="13ab59da622ec76691c699fbc49d8e1c"></a><!-- doxytag: member="smeshDC::Mesh::Projection3D" ref="13ab59da622ec76691c699fbc49d8e1c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Projection3D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="275acd8686c2569af2f04b8c3315b48c"></a><!-- doxytag: member="smeshDC::Mesh::Prism" ref="275acd8686c2569af2f04b8c3315b48c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Prism </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the optional <em>geom</em> parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on <em>geom</em> subshape. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>If defined, subshape to be meshed </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="f0544a1f249f9d791e94c96920e8945f"></a><!-- doxytag: member="smeshDC::Mesh::Compute" ref="f0544a1f249f9d791e94c96920e8945f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Compute </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="b7785437258a0213f3ffd4b4503c985f"></a><!-- doxytag: member="smeshDC::Mesh::AutomaticTetrahedralization" ref="b7785437258a0213f3ffd4b4503c985f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AutomaticTetrahedralization </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>fineness</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="da4dd042e7ca959a7b0dbd6b486ed89c"></a><!-- doxytag: member="smeshDC::Mesh::AutomaticHexahedralization" ref="da4dd042e7ca959a7b0dbd6b486ed89c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AutomaticHexahedralization </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>fineness</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="ead2cc1d3a22fedf1ec79f10912651ba"></a><!-- doxytag: member="smeshDC::Mesh::AddHypothesis" ref="ead2cc1d3a22fedf1ec79f10912651ba" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>hyp</em> </td><td>is a hypothesis to assign </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>is subhape of mesh geometry </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="f54948c4d2cf4f02d3c256d9b641442e"></a><!-- doxytag: member="smeshDC::Mesh::GetHypothesisList" ref="f54948c4d2cf4f02d3c256d9b641442e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetHypothesisList </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>geom</em> </td><td>is subhape of mesh geometry </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="cba551abec7186c4960baa4b455f502b"></a><!-- doxytag: member="smeshDC::Mesh::RemoveGlobalHypotheses" ref="cba551abec7186c4960baa4b455f502b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RemoveGlobalHypotheses </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d61dfe7a9c0b8d7448a8c647ab43e515"></a><!-- doxytag: member="smeshDC::Mesh::Group" ref="d61dfe7a9c0b8d7448a8c647ab43e515" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Group </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>grp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em> = <code>""</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>grp</em> </td><td>is a geometric group, a vertex, an edge, a face or a solid </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>name</em> </td><td>is the name of the mesh group </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_GroupOnGeom </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="398167a69f2d0e0cbd3eae985790ec5b"></a><!-- doxytag: member="smeshDC::Mesh::ExportToMED" ref="398167a69f2d0e0cbd3eae985790ec5b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExportToMED </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>f</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>version</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>opt</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Export the mesh in a file with the MED format and choice the <em>version</em> of MED format <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>f</em> </td><td>is the file name </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>version</em> </td><td>values are SMESH.MED_V2_1, SMESH.MED_V2_2 </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="68a16d0cd621d6333c4559525397bbe7"></a><!-- doxytag: member="smeshDC::Mesh::ExportMED" ref="68a16d0cd621d6333c4559525397bbe7" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExportMED </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>f</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>auto_groups</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>version</em> = <code>MED_V2_2</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>f</em> </td><td>is the file name </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>auto_groups</em> </td><td>boolean parameter for creating/not creating the groups Group_On_All_Nodes, Group_On_All_Faces, ... ; the typical use is auto_groups=false. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>version</em> </td><td>MED format version(MED_V2_1 or MED_V2_2) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="1f94daa2d9e8ff9b8c0f908aea5b3dd8"></a><!-- doxytag: member="smeshDC::Mesh::ExportDAT" ref="1f94daa2d9e8ff9b8c0f908aea5b3dd8" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExportDAT </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>f</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>f</em> </td><td>is the file name </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="c47b1dd9de46d9cf7b12c0d74a012c73"></a><!-- doxytag: member="smeshDC::Mesh::ExportUNV" ref="c47b1dd9de46d9cf7b12c0d74a012c73" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExportUNV </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>f</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>f</em> </td><td>is the file name </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="1311207ea4fe623bb10d459e2d5c32a0"></a><!-- doxytag: member="smeshDC::Mesh::ExportSTL" ref="1311207ea4fe623bb10d459e2d5c32a0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExportSTL </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>f</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>ascii</em> = <code>1</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>f</em> </td><td>is the file name </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>ascii</em> </td><td>defined the kind of file contents </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="8874fec2213bddb829bc070659f9acbc"></a><!-- doxytag: member="smeshDC::Mesh::CreateEmptyGroup" ref="8874fec2213bddb829bc070659f9acbc" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.CreateEmptyGroup </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementType</em> </td><td>is the type of elements in the group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>name</em> </td><td>is the name of the mesh group </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Group </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4670f7c11dac95280c6d83ea895b4405"></a><!-- doxytag: member="smeshDC::Mesh::GroupOnGeom" ref="4670f7c11dac95280c6d83ea895b4405" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GroupOnGeom </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>grp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em> = <code>""</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>typ</em> = <code>None</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>grp</em> </td><td>is a geometric group, a vertex, an edge, a face or a solid </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>name</em> </td><td>is the name of the mesh group </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_GroupOnGeom </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a7ed4ce8c7808568978a30c5232da487"></a><!-- doxytag: member="smeshDC::Mesh::MakeGroupByIds" ref="a7ed4ce8c7808568978a30c5232da487" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MakeGroupByIds </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>groupName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elemIDs</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>groupName</em> </td><td>is the name of the mesh group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>elementType</em> </td><td>is the type of elements in the group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>elemIDs</em> </td><td>is the list of ids </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Group </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a0297756f379f53f0c689895fbfcb311"></a><!-- doxytag: member="smeshDC::Mesh::MakeGroup" ref="a0297756f379f53f0c689895fbfcb311" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MakeGroup </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>groupName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CritType</em> = <code>FT_Undefined</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Compare</em> = <code>FT_EqualTo</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Treshold</em> = <code>""</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>UnaryOp</em> = <code>FT_Undefined</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>groupName</em> </td><td>is the name of the mesh group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>elementType</em> </td><td>is the type of elements in the group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>CritType</em> </td><td>is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. ) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Compare</em> </td><td>belong to {FT_LessThan, FT_MoreThan, FT_EqualTo} </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Treshold</em> </td><td>is threshold value (range of id ids as string, shape, numeric) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>UnaryOp</em> </td><td>is FT_LogicalNOT or FT_Undefined </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Group </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="75a309a3c6c29bf1ac7e2a34cfc98a8c"></a><!-- doxytag: member="smeshDC::Mesh::MakeGroupByCriterion" ref="75a309a3c6c29bf1ac7e2a34cfc98a8c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MakeGroupByCriterion </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>groupName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Criterion</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>groupName</em> </td><td>is the name of the mesh group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Criterion</em> </td><td>is the instance of Criterion class </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Group </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="34254deb71e7f191cfe8f0f247e26df3"></a><!-- doxytag: member="smeshDC::Mesh::MakeGroupByCriteria" ref="34254deb71e7f191cfe8f0f247e26df3" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MakeGroupByCriteria </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>groupName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriteria</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>groupName</em> </td><td>is the name of the mesh group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Criteria</em> </td><td>is the list of criterions </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Group </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d793ade055774eeb9b99fac121dc5292"></a><!-- doxytag: member="smeshDC::Mesh::MakeGroupByFilter" ref="d793ade055774eeb9b99fac121dc5292" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MakeGroupByFilter </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>groupName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFilter</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>groupName</em> </td><td>is the name of the mesh group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Criterion</em> </td><td>is the instance of Filter class </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Group </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="339c3cdcb9b2253d14d4d205d0e35ec4"></a><!-- doxytag: member="smeshDC::Mesh::GetIdsFromFilter" ref="339c3cdcb9b2253d14d4d205d0e35ec4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetIdsFromFilter </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFilter</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theFilter</em> </td><td>is SMESH_Filter </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>list of ids </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="8784982fbefc8973ac0668c90b0771dd"></a><!-- doxytag: member="smeshDC::Mesh::GetFreeBorders" ref="8784982fbefc8973ac0668c90b0771dd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetFreeBorders </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>list of SMESH.FreeEdges.Border structure: edge id and two its nodes ids. </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="3e16e192a6b18ae9b3a2caaeff097618"></a><!-- doxytag: member="smeshDC::Mesh::RemoveGroup" ref="3e16e192a6b18ae9b3a2caaeff097618" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RemoveGroup </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>group</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="22d530cca860633d021dfa96cf9ef6fd"></a><!-- doxytag: member="smeshDC::Mesh::RemoveGroupWithContents" ref="22d530cca860633d021dfa96cf9ef6fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RemoveGroupWithContents </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>group</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="23c2a81c48c10eb47931400dfd176867"></a><!-- doxytag: member="smeshDC::Mesh::GetGroups" ref="23c2a81c48c10eb47931400dfd176867" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetGroups </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="475bbb0fa983c0c0ac9d69614849e6da"></a><!-- doxytag: member="smeshDC::Mesh::GetGroupNames" ref="475bbb0fa983c0c0ac9d69614849e6da" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetGroupNames </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2fa03227010c3cbd0bf096467727cd1e"></a><!-- doxytag: member="smeshDC::Mesh::UnionGroups" ref="2fa03227010c3cbd0bf096467727cd1e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.UnionGroups </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>group1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>group2</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-All mesh elements that are present in initial groups are added to the new one
-</div>
-</div><p>
-<a class="anchor" name="75f9bb08e2900f80254d81b5f41a042b"></a><!-- doxytag: member="smeshDC::Mesh::IntersectGroups" ref="75f9bb08e2900f80254d81b5f41a042b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.IntersectGroups </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>group1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>group2</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-All mesh elements that are present in both initial groups are added to the new one.
-</div>
-</div><p>
-<a class="anchor" name="07ea3708cdcb1ea113246bb79ddc2af2"></a><!-- doxytag: member="smeshDC::Mesh::CutGroups" ref="07ea3708cdcb1ea113246bb79ddc2af2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.CutGroups </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mainGroup</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>toolGroup</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-All mesh elements that are present in main group but do not present in tool group are added to the new one
-</div>
-</div><p>
-<a class="anchor" name="5927ab5e23104e5abef7e610734e0d5b"></a><!-- doxytag: member="smeshDC::Mesh::GetLog" ref="5927ab5e23104e5abef7e610734e0d5b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetLog </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>clearAfterGet</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>clearAfterGet</em> </td><td>log is emptied after Get (safe if concurrents access) </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>list of log_block structures: commandType number coords indexes </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="65c714c92cf53bdbc58d114944884865"></a><!-- doxytag: member="smeshDC::Mesh::ClearLog" ref="65c714c92cf53bdbc58d114944884865" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ClearLog </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Must be used immediately after GetLog if clearAfterGet is false.
-</div>
-</div><p>
-<a class="anchor" name="525008123ff68c3f4aa7dcd5fb1c184a"></a><!-- doxytag: member="smeshDC::Mesh::GetId" ref="525008123ff68c3f4aa7dcd5fb1c184a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="a93ece387535f28cd3b644a80d84412f"></a><!-- doxytag: member="smeshDC::Mesh::GetStudyId" ref="a93ece387535f28cd3b644a80d84412f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetStudyId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="997c82163320ed98e1f170d33b81bdc8"></a><!-- doxytag: member="smeshDC::Mesh::HasDuplicatedGroupNamesMED" ref="997c82163320ed98e1f170d33b81bdc8" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.HasDuplicatedGroupNamesMED </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Consider maximum group name length stored in MED file.
-</div>
-</div><p>
-<a class="anchor" name="66ae25fc3c278592ba3a23a9973de5ca"></a><!-- doxytag: member="smeshDC::Mesh::GetMeshEditor" ref="66ae25fc3c278592ba3a23a9973de5ca" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetMeshEditor </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="0cb466605e4826639a1c2606b03e51de"></a><!-- doxytag: member="smeshDC::Mesh::GetMEDMesh" ref="0cb466605e4826639a1c2606b03e51de" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetMEDMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2584e68d5f83e2472dc31f672032b830"></a><!-- doxytag: member="smeshDC::Mesh::NbNodes" ref="2584e68d5f83e2472dc31f672032b830" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.NbNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="32aca468f35dee817c574f685c19340c"></a><!-- doxytag: member="smeshDC::Mesh::NbElements" ref="32aca468f35dee817c574f685c19340c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.NbElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2a5a6924c6917c3edd61381f7767f2ce"></a><!-- doxytag: member="smeshDC::Mesh::NbEdges" ref="2a5a6924c6917c3edd61381f7767f2ce" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.NbEdges </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
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- <td width="100%"></td>
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-<div class="memitem">
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbEdgesOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
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-<div class="memdoc">
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="3e98a54848efa261461d04bcc37c032c"></a><!-- doxytag: member="smeshDC::Mesh::NbFaces" ref="3e98a54848efa261461d04bcc37c032c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.NbFaces </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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-<div class="memdoc">
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-<p>
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-</div>
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-<a class="anchor" name="cb2398ea3a1ad0f83daba071af271ae3"></a><!-- doxytag: member="smeshDC::Mesh::NbFacesOfOrder" ref="cb2398ea3a1ad0f83daba071af271ae3" args="" -->
-<div class="memitem">
-<div class="memproto">
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbFacesOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
- </tr>
- <tr>
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-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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-
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-</div><p>
-<a class="anchor" name="24a43384422c391646fbb9c77084f44f"></a><!-- doxytag: member="smeshDC::Mesh::NbTriangles" ref="24a43384422c391646fbb9c77084f44f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.NbTriangles </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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-<p>
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-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.NbTrianglesOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
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-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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-
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-<a class="anchor" name="ae13cdc351ee0c608ed91835bdd5317a"></a><!-- doxytag: member="smeshDC::Mesh::NbQuadrangles" ref="ae13cdc351ee0c608ed91835bdd5317a" args="" -->
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-<div class="memproto">
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbQuadrangles </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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-<div class="memitem">
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbQuadranglesOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
- </tr>
- <tr>
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-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbPolygons </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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- <td class="memname">def smeshDC.Mesh.NbVolumes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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- <td class="memname">def smeshDC.Mesh.NbVolumesOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
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-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbTetras </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
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- <td class="memname">def smeshDC.Mesh.NbTetrasOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
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- <tr>
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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- <td class="memname">def smeshDC.Mesh.NbHexas </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
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- <td class="memname">def smeshDC.Mesh.NbHexasOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
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- <tr>
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-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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-
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- <td class="memname">def smeshDC.Mesh.NbPyramids </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
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- <td class="memname">def smeshDC.Mesh.NbPyramidsOfOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
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-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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- <td class="memname">def smeshDC.Mesh.NbPrisms </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
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- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementOrder</em></td><td> </td>
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementOrder</em> </td><td>is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC </td></tr>
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- <tr>
- <td class="memname">def smeshDC.Mesh.NbPolyhedrons </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
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- <td class="memname">def smeshDC.Mesh.NbSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
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- <td class="memname">def smeshDC.Mesh.GetElementsId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
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- <td class="memname">def smeshDC.Mesh.GetElementsByType </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
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- <td class="paramname"> <em>elementType</em></td><td> </td>
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementType</em> </td><td>is required type of elements </td></tr>
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- <td class="memname">def smeshDC.Mesh.GetNodesId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetElementType </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>iselem</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="b68f23b2eade0a29627e85f3ad6073b2"></a><!-- doxytag: member="smeshDC::Mesh::GetSubMeshElementsId" ref="b68f23b2eade0a29627e85f3ad6073b2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetSubMeshElementsId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>shapeID</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>shapeID</em> </td><td>is geom object(subshape) IOR </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="2efd22f2dee3f2f0a118a4ceb6793716"></a><!-- doxytag: member="smeshDC::Mesh::GetSubMeshNodesId" ref="2efd22f2dee3f2f0a118a4ceb6793716" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetSubMeshNodesId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>shapeID</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>all</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>shapeID</em> </td><td>is geom object(subshape) IOR </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4b29aa5027d111923d72130b2ce8e37c"></a><!-- doxytag: member="smeshDC::Mesh::GetSubMeshElementType" ref="4b29aa5027d111923d72130b2ce8e37c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetSubMeshElementType </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>shapeID</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>shapeID</em> </td><td>is geom object(subshape) IOR </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="ede2e5f1f4aad2f6a3e2618efb879d02"></a><!-- doxytag: member="smeshDC::Mesh::Dump" ref="ede2e5f1f4aad2f6a3e2618efb879d02" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Dump </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="ac4b569cd8022047a473edbe4f216802"></a><!-- doxytag: member="smeshDC::Mesh::GetNodeXYZ" ref="ac4b569cd8022047a473edbe4f216802" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetNodeXYZ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="ea303e542d760d9748e6f4adb657f434"></a><!-- doxytag: member="smeshDC::Mesh::GetNodeInverseElements" ref="ea303e542d760d9748e6f4adb657f434" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetNodeInverseElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="95bd2c550e6485befcada57b13029242"></a><!-- doxytag: member="smeshDC::Mesh::GetShapeID" ref="95bd2c550e6485befcada57b13029242" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetShapeID </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="37691b345bd2fe31129f5d306c7285ff"></a><!-- doxytag: member="smeshDC::Mesh::GetShapeIDForElem" ref="37691b345bd2fe31129f5d306c7285ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetShapeIDForElem </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="ea4c97bd804514962ff613a9545a99c3"></a><!-- doxytag: member="smeshDC::Mesh::GetElemNbNodes" ref="ea4c97bd804514962ff613a9545a99c3" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetElemNbNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="795fb7cd896a9336c2fb287edba1df46"></a><!-- doxytag: member="smeshDC::Mesh::GetElemNode" ref="795fb7cd896a9336c2fb287edba1df46" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetElemNode </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>index</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="7f8130a3b16c8459d0c8ad23389b3dac"></a><!-- doxytag: member="smeshDC::Mesh::IsMediumNode" ref="7f8130a3b16c8459d0c8ad23389b3dac" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.IsMediumNode </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementID</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>nodeID</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="e405cf3b31ed146203c601d268824e34"></a><!-- doxytag: member="smeshDC::Mesh::IsMediumNodeOfAnyElem" ref="e405cf3b31ed146203c601d268824e34" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.IsMediumNodeOfAnyElem </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>nodeID</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementType</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="4775548250a94a28fdc4349df6b5e664"></a><!-- doxytag: member="smeshDC::Mesh::ElemNbEdges" ref="4775548250a94a28fdc4349df6b5e664" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ElemNbEdges </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="4c42af133c335bb357f847e2dcc95a3e"></a><!-- doxytag: member="smeshDC::Mesh::ElemNbFaces" ref="4c42af133c335bb357f847e2dcc95a3e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ElemNbFaces </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2d3c8a45cb35fed969935471438dd229"></a><!-- doxytag: member="smeshDC::Mesh::IsPoly" ref="2d3c8a45cb35fed969935471438dd229" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.IsPoly </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="de565d48cd768a56da73df5eb12c8c4b"></a><!-- doxytag: member="smeshDC::Mesh::IsQuadratic" ref="de565d48cd768a56da73df5eb12c8c4b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.IsQuadratic </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="c9c7f540a885ad5718f28c1b1cc8cc74"></a><!-- doxytag: member="smeshDC::Mesh::BaryCenter" ref="c9c7f540a885ad5718f28c1b1cc8cc74" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.BaryCenter </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>id</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d71d7b886bb422f3eea601d22b4b419d"></a><!-- doxytag: member="smeshDC::Mesh::RemoveElements" ref="d71d7b886bb422f3eea601d22b4b419d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RemoveElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>is list of ids of elements to remove </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="867a060a8a8ee32c75dcced1da15b022"></a><!-- doxytag: member="smeshDC::Mesh::RemoveNodes" ref="867a060a8a8ee32c75dcced1da15b022" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RemoveNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfNodes</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfNodes</em> </td><td>is list of ids of nodes to remove </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a4acf9d064dbf154f1f07cf18601c0ea"></a><!-- doxytag: member="smeshDC::Mesh::AddNode" ref="a4acf9d064dbf154f1f07cf18601c0ea" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddNode </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>x</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>y</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>z</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="26131c97ad04a78613bdae200bb17660"></a><!-- doxytag: member="smeshDC::Mesh::AddEdge" ref="26131c97ad04a78613bdae200bb17660" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddEdge </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfNodes</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IdsOfNodes</em> </td><td>List of node IDs for creation of element. Needed order of nodes in this list corresponds to description of MED. <br>
- This description is located by the following link: <a href="http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.">http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.</a> </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="7120695c0343590b47ef6e8f02766fa4"></a><!-- doxytag: member="smeshDC::Mesh::AddFace" ref="7120695c0343590b47ef6e8f02766fa4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddFace </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfNodes</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IdsOfNodes</em> </td><td>List of node IDs for creation of element. Needed order of nodes in this list corresponds to description of MED. <br>
- This description is located by the following link: <a href="http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.">http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.</a> </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="3d6fc9c8186016f2e37e4f2185d11446"></a><!-- doxytag: member="smeshDC::Mesh::AddPolygonalFace" ref="3d6fc9c8186016f2e37e4f2185d11446" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddPolygonalFace </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IdsOfNodes</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="3ae39f43bb819ce72356e1ed1fd88589"></a><!-- doxytag: member="smeshDC::Mesh::AddVolume" ref="3ae39f43bb819ce72356e1ed1fd88589" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddVolume </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfNodes</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IdsOfNodes</em> </td><td>List of node IDs for creation of element. Needed order of nodes in this list corresponds to description of MED. <br>
- This description is located by the following link: <a href="http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.">http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.</a> </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4a537d81fc2a84c90dea4159c788f37c"></a><!-- doxytag: member="smeshDC::Mesh::AddPolyhedralVolume" ref="4a537d81fc2a84c90dea4159c788f37c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddPolyhedralVolume </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IdsOfNodes</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Quantities</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IdsOfNodes</em> </td><td>List of node IDs for volume creation face by face. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Quantities</em> </td><td>List of integer values, Quantities[i] gives quantity of nodes in face number i. </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="7c54c114d76ed3f108863a9639a17ca8"></a><!-- doxytag: member="smeshDC::Mesh::AddPolyhedralVolumeByFaces" ref="7c54c114d76ed3f108863a9639a17ca8" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AddPolyhedralVolumeByFaces </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IdsOfFaces</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IdsOfFaces</em> </td><td>List of face IDs for volume creation.</td></tr>
- </table>
-</dl>
-Note: The created volume will refer only to nodes of the given faces, not to the faces itself.
-</div>
-</div><p>
-<a class="anchor" name="3a1236e58d50d925689b76e1e923f455"></a><!-- doxytag: member="smeshDC::Mesh::MoveNode" ref="3a1236e58d50d925689b76e1e923f455" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MoveNode </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>x</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>y</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>z</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>NodeID</em> </td><td>id of the node </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>x</em> </td><td>new X coordinate </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>y</em> </td><td>new Y coordinate </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>z</em> </td><td>new Z coordinate </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="305fdba055982c393cfbbdb6dbb50646"></a><!-- doxytag: member="smeshDC::Mesh::FindNodeClosestTo" ref="305fdba055982c393cfbbdb6dbb50646" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.FindNodeClosestTo </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>x</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>y</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>z</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>x</em> </td><td>X coordinate of a point </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>y</em> </td><td>Y coordinate of a point </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>z</em> </td><td>Z coordinate of a point </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>id of a node </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="fd794d99dc4539f0b3c04f9a9372d476"></a><!-- doxytag: member="smeshDC::Mesh::MeshToPassThroughAPoint" ref="fd794d99dc4539f0b3c04f9a9372d476" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MeshToPassThroughAPoint </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>x</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>y</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>z</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>x</em> </td><td>X coordinate of a point </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>y</em> </td><td>Y coordinate of a point </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>z</em> </td><td>Z coordinate of a point </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>id of a moved node </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d5a94fade689f8efc3ed2c9e8ab7c7b1"></a><!-- doxytag: member="smeshDC::Mesh::InverseDiag" ref="d5a94fade689f8efc3ed2c9e8ab7c7b1" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.InverseDiag </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID2</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>NodeID1</em> </td><td>first node id </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NodeID2</em> </td><td>second node id </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>false if proper faces not found </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b76da5a684955529e10b291b421967f2"></a><!-- doxytag: member="smeshDC::Mesh::DeleteDiag" ref="b76da5a684955529e10b291b421967f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.DeleteDiag </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID2</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>NodeID1</em> </td><td>first node id </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NodeID2</em> </td><td>second node id </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>false if proper faces not found </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="cf69091c91c36ce5335e4da2631ef7b6"></a><!-- doxytag: member="smeshDC::Mesh::Reorient" ref="cf69091c91c36ce5335e4da2631ef7b6" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Reorient </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em> = <code>None</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>if undefined reorient all mesh elements </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="735a23aa0c42779067e6cc81be38dee3"></a><!-- doxytag: member="smeshDC::Mesh::ReorientObject" ref="735a23aa0c42779067e6cc81be38dee3" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ReorientObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>is mesh, submesh or group </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d0af9e5504148afa14cbfe672f05eb99"></a><!-- doxytag: member="smeshDC::Mesh::TriToQuad" ref="d0af9e5504148afa14cbfe672f05eb99" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.TriToQuad </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriterion</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxAngle</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>The triangles to be fused, </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theCriterion</em> </td><td>is FT_...; used to choose a neighbour to fuse with. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxAngle</em> </td><td>is a max angle between element normals at which fusion is still performed; theMaxAngle is mesured in radians. </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>TRUE in case of success, FALSE otherwise. </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b460127d4a11dc7093673699aa596251"></a><!-- doxytag: member="smeshDC::Mesh::TriToQuadObject" ref="b460127d4a11dc7093673699aa596251" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.TriToQuadObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriterion</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxAngle</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>is mesh, submesh or group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theCriterion</em> </td><td>is FT_...; used to choose a neighbour to fuse with. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxAngle</em> </td><td>is a max angle between element normals at which fusion is still performed; theMaxAngle is mesured in radians. </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>TRUE in case of success, FALSE otherwise. </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="0ed805191162c718c85f628da184399a"></a><!-- doxytag: member="smeshDC::Mesh::QuadToTri" ref="0ed805191162c718c85f628da184399a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.QuadToTri </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriterion</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>the faces to be splitted. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theCriterion</em> </td><td>is FT_...; used to choose a diagonal for splitting. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em></em> </td><td>TRUE in case of success, FALSE otherwise. </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="1338b63884c90a486869d1ca6bc1e5f3"></a><!-- doxytag: member="smeshDC::Mesh::QuadToTriObject" ref="1338b63884c90a486869d1ca6bc1e5f3" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.QuadToTriObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriterion</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to taking list of elements from, is mesh, submesh or group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theCriterion</em> </td><td>is FT_...; used to choose a diagonal for splitting. </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="79bebb3280d8727e0aa63abf72895e00"></a><!-- doxytag: member="smeshDC::Mesh::SplitQuad" ref="79bebb3280d8727e0aa63abf72895e00" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SplitQuad </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Diag13</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theElems</em> </td><td>The faces to be splitted </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>the13Diag</em> </td><td>is used to choose a diagonal for splitting. </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>TRUE in case of success, FALSE otherwise. </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="9f72cd3ce05553fa81cb9ab55276c6e3"></a><!-- doxytag: member="smeshDC::Mesh::SplitQuadObject" ref="9f72cd3ce05553fa81cb9ab55276c6e3" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SplitQuadObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Diag13</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>is object to taking list of elements from, is mesh, submesh or group </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="0ccd083fa2ca43dca1df29a07dbc61d9"></a><!-- doxytag: member="smeshDC::Mesh::BestSplit" ref="0ccd083fa2ca43dca1df29a07dbc61d9" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.BestSplit </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDOfQuad</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriterion</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDOfQuad</em> </td><td>ID of the quadrangle to be splitted. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theCriterion</em> </td><td>is FT_...; a criterion to choose a diagonal for splitting. </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>1 if 1-3 diagonal is better, 2 if 2-4 diagonal is better, 0 if error occurs. </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="c458281ac5240ea90076231f2ac91b7f"></a><!-- doxytag: member="smeshDC::Mesh::SplitQuadsNearTriangularFacets" ref="c458281ac5240ea90076231f2ac91b7f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SplitQuadsNearTriangularFacets </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="15037374765f1e7439997f1a2416590b"></a><!-- doxytag: member="smeshDC::Mesh::SplitHexaToTetras" ref="15037374765f1e7439997f1a2416590b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SplitHexaToTetras </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theNode000</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theNode001</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Use pattern mapping functionality for splitting. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to take list of hexahedrons from; is mesh, submesh or group. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theNode000,theNode001</em> </td><td>is in range [0,7]; give an orientation of the pattern relatively each hexahedron: the (0,0,0) key-point of pattern will be mapped into <theNode000>-th node of each volume, the (0,0,1) key-point will be mapped into <theNode001>-th node of each volume. The (0,0,0) key-point of used pattern corresponds to not split corner. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em></em> </td><td>TRUE in case of success, FALSE otherwise. </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="bcb5ef95810e1c2a8edb3041a73bf339"></a><!-- doxytag: member="smeshDC::Mesh::SplitHexaToPrisms" ref="bcb5ef95810e1c2a8edb3041a73bf339" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SplitHexaToPrisms </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theNode000</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theNode001</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Use pattern mapping functionality for splitting. <dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to take list of hexahedrons from; is mesh, submesh or group. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theNode000,theNode001</em> </td><td>is in range [0,7]; give an orientation of the pattern relatively each hexahedron: the (0,0,0) key-point of pattern will be mapped into <theNode000>-th node of each volume, the (0,0,1) key-point will be mapped into <theNode001>-th node of each volume. The edge (0,0,0)-(0,0,1) of used pattern connects two not split corners. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em></em> </td><td>TRUE in case of success, FALSE otherwise. </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="47625763762791aa12b279915db0f5bb"></a><!-- doxytag: member="smeshDC::Mesh::Smooth" ref="47625763762791aa12b279915db0f5bb" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Smooth </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfFixedNodes</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxNbOfIterations</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxAspectRatio</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Method</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list if ids of elements to smooth </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>IDsOfFixedNodes</em> </td><td>list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxNbOfIterations</em> </td><td>maximum number of iterations </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxAspectRatio</em> </td><td>varies in range [1.0, inf] </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Method</em> </td><td>is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="02b0945fb6cba824e7a02398d58ff2d2"></a><!-- doxytag: member="smeshDC::Mesh::SmoothObject" ref="02b0945fb6cba824e7a02398d58ff2d2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SmoothObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfFixedNodes</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxNbOfIterations</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxxAspectRatio</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Method</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to smooth </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>IDsOfFixedNodes</em> </td><td>list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxNbOfIterations</em> </td><td>maximum number of iterations </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxAspectRatio</em> </td><td>varies in range [1.0, inf] </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Method</em> </td><td>is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="576f1975cee8eccb70bddcbf5c79a1b8"></a><!-- doxytag: member="smeshDC::Mesh::SmoothParametric" ref="576f1975cee8eccb70bddcbf5c79a1b8" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SmoothParametric </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfFixedNodes</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxNbOfIterations</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxAspectRatio</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Method</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list if ids of elements to smooth </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>IDsOfFixedNodes</em> </td><td>list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxNbOfIterations</em> </td><td>maximum number of iterations </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxAspectRatio</em> </td><td>varies in range [1.0, inf] </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Method</em> </td><td>is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="e6188d5cbc547c960b65cbf03a64c360"></a><!-- doxytag: member="smeshDC::Mesh::SmoothParametricObject" ref="e6188d5cbc547c960b65cbf03a64c360" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SmoothParametricObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfFixedNodes</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxNbOfIterations</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MaxAspectRatio</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Method</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to smooth </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>IDsOfFixedNodes</em> </td><td>list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxNbOfIterations</em> </td><td>maximum number of iterations </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>MaxAspectRatio</em> </td><td>varies in range [1.0, inf] </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Method</em> </td><td>is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="950b615f72cf87e1b1f30b9bcba1def7"></a><!-- doxytag: member="smeshDC::Mesh::ConvertToQuadratic" ref="950b615f72cf87e1b1f30b9bcba1def7" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ConvertToQuadratic </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theForce3d</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="63fdf86ae5a1c450d372789732dc85ed"></a><!-- doxytag: member="smeshDC::Mesh::ConvertFromQuadratic" ref="63fdf86ae5a1c450d372789732dc85ed" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ConvertFromQuadratic </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="8b7a1f81371994a5fcbb58b56ec26382"></a><!-- doxytag: member="smeshDC::Mesh::RenumberNodes" ref="8b7a1f81371994a5fcbb58b56ec26382" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RenumberNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="05d3b3ae8bda7842bc69a72b9426a69d"></a><!-- doxytag: member="smeshDC::Mesh::RenumberElements" ref="05d3b3ae8bda7842bc69a72b9426a69d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RenumberElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="51fafc65b1c00aa71fb3368302879e90"></a><!-- doxytag: member="smeshDC::Mesh::RotationSweep" ref="51fafc65b1c00aa71fb3368302879e90" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RotationSweep </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Axix</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>AngleInRadians</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Tolerance</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list of ids of elements to sweep </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Axix</em> </td><td>axis of rotation, AxisStruct or line(geom object) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>AngleInRadians</em> </td><td>angle of Rotation </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>number of steps </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Tolerance</em> </td><td>tolerance </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="e1801356bd22826c806ff0991e44e9ab"></a><!-- doxytag: member="smeshDC::Mesh::RotationSweepObject" ref="e1801356bd22826c806ff0991e44e9ab" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RotationSweepObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Axix</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>AngleInRadians</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Tolerance</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object wich elements should be sweeped </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Axix</em> </td><td>axis of rotation, AxisStruct or line(geom object) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>AngleInRadians</em> </td><td>angle of Rotation </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>number of steps </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Tolerance</em> </td><td>tolerance </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a9104edbd7b7c6cbc3b1ba9538ed9f59"></a><!-- doxytag: member="smeshDC::Mesh::ExtrusionSweep" ref="a9104edbd7b7c6cbc3b1ba9538ed9f59" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExtrusionSweep </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>StepVector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list of elements ids for extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>StepVector</em> </td><td>vector, defining the direction and value of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>the number of steps </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="f67f780ee272071948ac9ef85373dc3a"></a><!-- doxytag: member="smeshDC::Mesh::AdvancedExtrusion" ref="f67f780ee272071948ac9ef85373dc3a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.AdvancedExtrusion </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>StepVector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>ExtrFlags</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SewTolerance</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>is ids of elements </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>StepVector</em> </td><td>vector, defining the direction and value of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>the number of steps </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>ExtrFlags</em> </td><td>set flags for performing extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>SewTolerance</em> </td><td>uses for comparing locations of nodes if flag EXTRUSION_FLAG_SEW is set </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="42c025c8067cc5cc0090d6ec1412ad4d"></a><!-- doxytag: member="smeshDC::Mesh::ExtrusionSweepObject" ref="42c025c8067cc5cc0090d6ec1412ad4d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExtrusionSweepObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>StepVector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object wich elements should be processed </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>StepVector</em> </td><td>vector, defining the direction and value of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>the number of steps </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="e95c632534893826ba9946d97caef095"></a><!-- doxytag: member="smeshDC::Mesh::ExtrusionSweepObject1D" ref="e95c632534893826ba9946d97caef095" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExtrusionSweepObject1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>StepVector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object wich elements should be processed </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>StepVector</em> </td><td>vector, defining the direction and value of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>the number of steps </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="43fb0ee239a93e665d6d7cb743b08325"></a><!-- doxytag: member="smeshDC::Mesh::ExtrusionSweepObject2D" ref="43fb0ee239a93e665d6d7cb743b08325" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExtrusionSweepObject2D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>StepVector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NbOfSteps</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object wich elements should be processed </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>StepVector</em> </td><td>vector, defining the direction and value of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NbOfSteps</em> </td><td>the number of steps </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="faef42567ec17757143a6b0b1b0ffd14"></a><!-- doxytag: member="smeshDC::Mesh::ExtrusionAlongPath" ref="faef42567ec17757143a6b0b1b0ffd14" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExtrusionAlongPath </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>PathMesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>PathShape</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeStart</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>HasAngles</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Angles</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>HasRefPoint</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>RefPoint</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LinearVariation</em> = <code>False</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>is ids of elements </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>PathMesh</em> </td><td>mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>PathShape</em> </td><td>is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NodeStart</em> </td><td>the first or the last node on the edge. It is used to define the direction of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>HasAngles</em> </td><td>allows the shape to be rotated around the path to get the resulting mesh in a helical fashion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Angles</em> </td><td>list of angles </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>HasRefPoint</em> </td><td>allows to use base point </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>RefPoint</em> </td><td>point around which the shape is rotated(the mass center of the shape by default). User can specify any point as the Base Point and the shape will be rotated with respect to this point. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>LinearVariation</em> </td><td>makes compute rotation angles as linear variation of given Angles along path steps </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="802c0f3464746978efbf0194bb7472fc"></a><!-- doxytag: member="smeshDC::Mesh::ExtrusionAlongPathObject" ref="802c0f3464746978efbf0194bb7472fc" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ExtrusionAlongPathObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>PathMesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>PathShape</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeStart</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>HasAngles</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Angles</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>HasRefPoint</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>RefPoint</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LinearVariation</em> = <code>False</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>is ids of elements </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>PathMesh</em> </td><td>mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>PathShape</em> </td><td>is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>NodeStart</em> </td><td>the first or the last node on the edge. It is used to define the direction of extrusion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>HasAngles</em> </td><td>allows the shape to be rotated around the path to get the resulting mesh in a helical fashion </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Angles</em> </td><td>list of angles </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>HasRefPoint</em> </td><td>allows to use base point </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>RefPoint</em> </td><td>point around which the shape is rotated(the mass center of the shape by default). User can specify any point as the Base Point and the shape will be rotated with respect to this point. </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>LinearVariation</em> </td><td>makes compute rotation angles as linear variation of given Angles along path steps </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4f24d9ac04c1f7adb4ce72630103b39e"></a><!-- doxytag: member="smeshDC::Mesh::Mirror" ref="4f24d9ac04c1f7adb4ce72630103b39e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Mirror </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Mirror</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theMirrorType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Copy</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list of elements ids </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Mirror</em> </td><td>is AxisStruct or geom object(point, line, plane) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theMirrorType</em> </td><td>is POINT, AXIS or PLANE If the Mirror is geom object this parameter is unnecessary </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Copy</em> </td><td>allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="921c02f7d4778d395bcab56d067207e4"></a><!-- doxytag: member="smeshDC::Mesh::MirrorObject" ref="921c02f7d4778d395bcab56d067207e4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MirrorObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Mirror</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theMirrorType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Copy</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>mesh, submesh or group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Mirror</em> </td><td>is AxisStruct or geom object(point, line, plane) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>theMirrorType</em> </td><td>is POINT, AXIS or PLANE If the Mirror is geom object this parameter is unnecessary </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Copy</em> </td><td>allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="1e2faa9a7a0d7f38608bc5b4c4e9102a"></a><!-- doxytag: member="smeshDC::Mesh::Translate" ref="1e2faa9a7a0d7f38608bc5b4c4e9102a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Translate </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Vector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Copy</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list of elements ids </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Vector</em> </td><td>direction of translation(DirStruct or vector) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Copy</em> </td><td>allows to copy the translated elements </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="22ec87ab4df5e8998e574e8c05a9723a"></a><!-- doxytag: member="smeshDC::Mesh::TranslateObject" ref="22ec87ab4df5e8998e574e8c05a9723a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.TranslateObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Vector</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Copy</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to translate(mesh, submesh, or group) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Vector</em> </td><td>direction of translation(DirStruct or geom vector) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Copy</em> </td><td>allows to copy the translated elements </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="228afef21b2340aa09e0b193f59001b0"></a><!-- doxytag: member="smeshDC::Mesh::Rotate" ref="228afef21b2340aa09e0b193f59001b0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.Rotate </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfElements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Axis</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>AngleInRadians</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Copy</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>IDsOfElements</em> </td><td>list of elements ids </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Axis</em> </td><td>axis of rotation(AxisStruct or geom line) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>AngleInRadians</em> </td><td>angle of rotation(in radians) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Copy</em> </td><td>allows to copy the rotated elements </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="aaf823b609d2b45aee3f2751b32c8d2d"></a><!-- doxytag: member="smeshDC::Mesh::RotateObject" ref="aaf823b609d2b45aee3f2751b32c8d2d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.RotateObject </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Axis</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>AngleInRadians</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Copy</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObject</em> </td><td>object to rotate(mesh, submesh, or group) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Axis</em> </td><td>axis of rotation(AxisStruct or geom line) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>AngleInRadians</em> </td><td>angle of rotation(in radians) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Copy</em> </td><td>allows to copy the rotated elements </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="264d2001aebb0e526af2bf9495750f6c"></a><!-- doxytag: member="smeshDC::Mesh::FindCoincidentNodes" ref="264d2001aebb0e526af2bf9495750f6c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.FindCoincidentNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Tolerance</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>Tolerance</em> </td><td>tolerance value </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>list</em> </td><td>of group of nodes </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b05f9ed75d38e2038924b88cdfd546ae"></a><!-- doxytag: member="smeshDC::Mesh::FindCoincidentNodesOnPart" ref="b05f9ed75d38e2038924b88cdfd546ae" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.FindCoincidentNodesOnPart </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SubMeshOrGroup</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Tolerance</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>Tolerance</em> </td><td>tolerance value </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>SubMeshOrGroup</em> </td><td>SubMesh or Group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>list</em> </td><td>of group of nodes </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="503c866e8a58227e6d70877843b96e4a"></a><!-- doxytag: member="smeshDC::Mesh::MergeNodes" ref="503c866e8a58227e6d70877843b96e4a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MergeNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>GroupsOfNodes</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>list</em> </td><td>of group of nodes </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="643c80318fafd3d98c530c88ebdc4257"></a><!-- doxytag: member="smeshDC::Mesh::FindEqualElements" ref="643c80318fafd3d98c530c88ebdc4257" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.FindEqualElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>MeshOrSubMeshOrGroup</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>MeshOrSubMeshOrGroup</em> </td><td><a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> or SubMesh, or Group of elements for searching </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>a list of groups of equal elements </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="023c5ccae0e02e73485019fe82ab8b35"></a><!-- doxytag: member="smeshDC::Mesh::MergeElements" ref="023c5ccae0e02e73485019fe82ab8b35" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MergeElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>GroupsOfElementsID</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>GroupsOfElementsID</em> </td><td>groups of elements for merging </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="f76363128b31cbe3fc32afc9cd771565"></a><!-- doxytag: member="smeshDC::Mesh::MergeEqualElements" ref="f76363128b31cbe3fc32afc9cd771565" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.MergeEqualElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="079f6131307a4be37245823e6fd724da"></a><!-- doxytag: member="smeshDC::Mesh::SewFreeBorders" ref="079f6131307a4be37245823e6fd724da" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SewFreeBorders </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>FirstNodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SecondNodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LastNodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>FirstNodeID2</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SecondNodeID2</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LastNodeID2</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CreatePolygons</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CreatePolyedrs</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="0c54ec7794e65956ecfab94476230a6e"></a><!-- doxytag: member="smeshDC::Mesh::SewConformFreeBorders" ref="0c54ec7794e65956ecfab94476230a6e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SewConformFreeBorders </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>FirstNodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SecondNodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LastNodeID1</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>FirstNodeID2</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SecondNodeID2</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="e887767b6fb87c6be80763f4f78e2252"></a><!-- doxytag: member="smeshDC::Mesh::SewBorderToSide" ref="e887767b6fb87c6be80763f4f78e2252" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SewBorderToSide </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>FirstNodeIDOnFreeBorder</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>SecondNodeIDOnFreeBorder</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LastNodeIDOnFreeBorder</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>FirstNodeIDOnSide</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>LastNodeIDOnSide</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CreatePolygons</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CreatePolyedrs</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="1feede9a829e6f347641ba073840f13d"></a><!-- doxytag: member="smeshDC::Mesh::SewSideElements" ref="1feede9a829e6f347641ba073840f13d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.SewSideElements </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfSide1Elements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>IDsOfSide2Elements</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID1OfSide1ToMerge</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID1OfSide2ToMerge</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID2OfSide1ToMerge</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>NodeID2OfSide2ToMerge</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Nodes belonging to Side1 are merged with nodes of elements of Side2. Number of elements in theSide1 and in theSide2 must be equal and they should have similar node connectivity. The nodes to merge should belong to sides borders and the first node should be linked to the second.
-</div>
-</div><p>
-<a class="anchor" name="e613925597654962cd6bc1354cd847ab"></a><!-- doxytag: member="smeshDC::Mesh::ChangeElemNodes" ref="e613925597654962cd6bc1354cd847ab" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.ChangeElemNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>ide</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>newIDs</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>ide</em> </td><td>the element id </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>newIDs</em> </td><td>nodes ids </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>If number of nodes is not corresponded to type of element - returns false </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="8589dd93f380f74a91d1a270a3329392"></a><!-- doxytag: member="smeshDC::Mesh::GetLastCreatedNodes" ref="8589dd93f380f74a91d1a270a3329392" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetLastCreatedNodes </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="86d590631a7eb99c5e0e6c38c596ed7c"></a><!-- doxytag: member="smeshDC::Mesh::GetLastCreatedElems" ref="86d590631a7eb99c5e0e6c38c596ed7c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh.GetLastCreatedElems </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="9f46fbb458e5173bd4ef0f816ed778a2"></a><!-- doxytag: member="smeshDC::Mesh::geom" ref="9f46fbb458e5173bd4ef0f816ed778a2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh.html#9f46fbb458e5173bd4ef0f816ed778a2">smeshDC.Mesh.geom</a> = 0<code> [static]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="ab3d2e782c81eb8c172ffea4934d9afc"></a><!-- doxytag: member="smeshDC::Mesh::mesh" ref="ab3d2e782c81eb8c172ffea4934d9afc" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh.html#ab3d2e782c81eb8c172ffea4934d9afc">smeshDC.Mesh.mesh</a> = 0<code> [static]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
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-</div><p>
-<a class="anchor" name="2208820f1e04d15486802226576b45d8"></a><!-- doxytag: member="smeshDC::Mesh::editor" ref="2208820f1e04d15486802226576b45d8" args="" -->
-<div class="memitem">
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- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh.html#2208820f1e04d15486802226576b45d8">smeshDC.Mesh.editor</a> = 0<code> [static]</code> </td>
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-
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-<a class="anchor" name="0be9a9dabe33b7f3fdd5a1e31a19de30"></a><!-- doxytag: member="smeshDC::Mesh::smeshpyD" ref="0be9a9dabe33b7f3fdd5a1e31a19de30" args="" -->
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- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh.html#0be9a9dabe33b7f3fdd5a1e31a19de30">smeshDC.Mesh.smeshpyD</a> </td>
- </tr>
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-<div class="memdoc">
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-<a class="anchor" name="8d2ba56c7de00d23867fb26908a09dbd"></a><!-- doxytag: member="smeshDC::Mesh::geompyD" ref="8d2ba56c7de00d23867fb26908a09dbd" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh.html#8d2ba56c7de00d23867fb26908a09dbd">smeshDC.Mesh.geompyD</a> </td>
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-
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh.html#9f46fbb458e5173bd4ef0f816ed778a2">smeshDC.Mesh.geom</a> </td>
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-<a class="anchor" name="046173eaa203630e4a12147a8dc031da"></a><!-- doxytag: member="smeshDC::Mesh::mesh" ref="046173eaa203630e4a12147a8dc031da" args="" -->
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-<a class="anchor" name="a7484397c0eafe910f9e5b1fb77a20f3"></a><!-- doxytag: member="smeshDC::Mesh::editor" ref="a7484397c0eafe910f9e5b1fb77a20f3" args="" -->
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-Generated on Thu Jun 21 13:26:52 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html">Mesh_Algorithm</a></div>
-<h1>smeshDC.Mesh_Algorithm Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Algorithm" -->Mother class to define algorithm, recommended to don't use directly.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Algorithm:<p><center><img src="classsmeshDC_1_1Mesh__Algorithm__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Algorithm__inherit__map" alt="Inheritance graph"></center>
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-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Algorithm::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:41 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__CompositeSegment.html">Mesh_CompositeSegment</a></div>
-<h1>smeshDC.Mesh_CompositeSegment Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_CompositeSegment" --><!-- doxytag: inherits="smeshDC::Mesh_Segment" -->Class to define a segment 1D algorithm for discretization.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_CompositeSegment:<p><center><img src="classsmeshDC_1_1Mesh__CompositeSegment__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__CompositeSegment__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__CompositeSegment__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Segment.html" shape="rect" coords="42,84,229,108" alt="">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="40,9,232,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__CompositeSegment.html#3e92141214a56886fdf7918a922ef0af">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#3e92141214a56886fdf7918a922ef0af"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#2f9d15d24a38ccc273014f85ea6dcd24">LocalLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "LocalLength" hypothesis to cut an edge in several segments with the same length. <a href="#2f9d15d24a38ccc273014f85ea6dcd24"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#04608e6ca6e7008ebd248548f24a8248">NumberOfSegments</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments. <a href="#04608e6ca6e7008ebd248548f24a8248"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#4e44e56e3986592ea4b373314350ba1e">Arithmetic1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing. <a href="#4e44e56e3986592ea4b373314350ba1e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#55111c455f6db69788784ab3592422bf">StartEndLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing. <a href="#55111c455f6db69788784ab3592422bf"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#9c66c7680baa0ad57798f636f1f76714">Deflection1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Deflection1D" hypothesis. <a href="#9c66c7680baa0ad57798f636f1f76714"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#a056c4ab47821070f56256c5247a83dc">Propagation</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Propagation" hypothesis that propagate all other hypothesis on all others edges that are in the opposite side in the case of quadrangular faces. <a href="#a056c4ab47821070f56256c5247a83dc"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#37c89f203f0c2d4b668775f38d406d00">AutomaticLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "AutomaticLength" hypothesis. <a href="#37c89f203f0c2d4b668775f38d406d00"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#b55e9b34c5e68ad2a4bf8aa5b737de9b">LengthNearVertex</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "SegmentLengthAroundVertex" hypothesis. <a href="#b55e9b34c5e68ad2a4bf8aa5b737de9b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#99a77d794183b6b42d27c4d63f85fe74">QuadraticMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges. <a href="#99a77d794183b6b42d27c4d63f85fe74"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="3e92141214a56886fdf7918a922ef0af"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::__init__" ref="3e92141214a56886fdf7918a922ef0af" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_CompositeSegment.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented from <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#5c4a83872230465157d06af21b0b0982">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2f9d15d24a38ccc273014f85ea6dcd24"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::LocalLength" ref="2f9d15d24a38ccc273014f85ea6dcd24" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.LocalLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>l</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>l</em> </td><td>for the length of segments that cut an edge </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="04608e6ca6e7008ebd248548f24a8248"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::NumberOfSegments" ref="04608e6ca6e7008ebd248548f24a8248" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.NumberOfSegments </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>n</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>s</em> = <code>[]</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>n</em> </td><td>for the number of segments that cut an edge </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>s</em> </td><td>for the scale factor (optional) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4e44e56e3986592ea4b373314350ba1e"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::Arithmetic1D" ref="4e44e56e3986592ea4b373314350ba1e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Arithmetic1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="55111c455f6db69788784ab3592422bf"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::StartEndLength" ref="55111c455f6db69788784ab3592422bf" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.StartEndLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="9c66c7680baa0ad57798f636f1f76714"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::Deflection1D" ref="9c66c7680baa0ad57798f636f1f76714" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Deflection1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>d</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>d</em> </td><td>for the deflection </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a056c4ab47821070f56256c5247a83dc"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::Propagation" ref="a056c4ab47821070f56256c5247a83dc" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Propagation </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="37c89f203f0c2d4b668775f38d406d00"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::AutomaticLength" ref="37c89f203f0c2d4b668775f38d406d00" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.AutomaticLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>fineness</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>fineness</em> </td><td>for the fineness [0-1] </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b55e9b34c5e68ad2a4bf8aa5b737de9b"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::LengthNearVertex" ref="b55e9b34c5e68ad2a4bf8aa5b737de9b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.LengthNearVertex </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>length</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>vertex</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>length</em> </td><td>for the segment length </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>vertex</em> </td><td>for the length localization: vertex index [0,1] | verext object </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="99a77d794183b6b42d27c4d63f85fe74"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::QuadraticMesh" ref="99a77d794183b6b42d27c4d63f85fe74" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.QuadraticMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the 2D mesher sees that all boundary edges are quadratic ones, it generates quadratic faces, else it generates linear faces using medium nodes as if they were vertex ones. The 3D mesher generates quadratic volumes only if all boundary faces are quadratic ones, else it fails.
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="44e8968ec16413fd4aac2b906c313c0e"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::geom" ref="44e8968ec16413fd4aac2b906c313c0e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented from <a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm</a>.
-</div>
-</div><p>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_CompositeSegment::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:43 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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+++ /dev/null
-<!doctype html public "-//w3c//dtd html 4.0 transitional//en">
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- <meta http-equiv="Content-Type" content="text/html; charset=iso-8859-1">
- <meta name="GENERATOR" content="Mozilla/4.73 [en] (WinNT; I) [Netscape]">
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Hexahedron.html">Mesh_Hexahedron</a></div>
-<h1>smeshDC.Mesh_Hexahedron Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Hexahedron" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a hexahedron 3D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Hexahedron:<p><center><img src="classsmeshDC_1_1Mesh__Hexahedron__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Hexahedron__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Hexahedron__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="16,9,208,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Hexahedron.html#eba90a9ad532744e074d3de1479c6c67">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#eba90a9ad532744e074d3de1479c6c67"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="eba90a9ad532744e074d3de1479c6c67"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::__init__" ref="eba90a9ad532744e074d3de1479c6c67" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Hexahedron.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
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-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Hexahedron::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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-Generated on Thu Jun 21 13:26:47 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Netgen.html">Mesh_Netgen</a></div>
-<h1>smeshDC.Mesh_Netgen Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Netgen" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a NETGEN-based 2D or 3D algorithm that need no discrete boundary (i.e.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Netgen:<p><center><img src="classsmeshDC_1_1Mesh__Netgen__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Netgen__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Netgen__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="8,9,200,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Netgen.html#cc249253a950e976bbbd35bb2bfeb38e">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#cc249253a950e976bbbd35bb2bfeb38e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Netgen.html#10530284277e8628d75bfc54415ed540">Parameters</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define hypothesis containing parameters of the algorithm. <a href="#10530284277e8628d75bfc54415ed540"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Netgen.html#fe33f93c8752f6c1e82ff3023bc1d3fd">is3D</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-<tr><td colspan="2"><br><h2>Static Public Attributes</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Netgen.html#deeb4b81754fbde417907ac821dc7134">is3D</a> = 0</td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-independent)<p>
-This class is deprecated, only for compatibility!<p>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="cc249253a950e976bbbd35bb2bfeb38e"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::__init__" ref="cc249253a950e976bbbd35bb2bfeb38e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Netgen.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>is3D</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="10530284277e8628d75bfc54415ed540"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::Parameters" ref="10530284277e8628d75bfc54415ed540" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Netgen.Parameters </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="deeb4b81754fbde417907ac821dc7134"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::is3D" ref="deeb4b81754fbde417907ac821dc7134" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh__Netgen.html#deeb4b81754fbde417907ac821dc7134">smeshDC.Mesh_Netgen.is3D</a> = 0<code> [static]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fe33f93c8752f6c1e82ff3023bc1d3fd"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::is3D" ref="fe33f93c8752f6c1e82ff3023bc1d3fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Netgen.html#deeb4b81754fbde417907ac821dc7134">smeshDC.Mesh_Netgen.is3D</a> </td>
- </tr>
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-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Netgen::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
- </tr>
- </table>
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-</DIV>
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-Generated on Thu Jun 21 13:26:48 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Prism3D.html">Mesh_Prism3D</a></div>
-<h1>smeshDC.Mesh_Prism3D Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Prism3D" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a 3D extrusion algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Prism3D:<p><center><img src="classsmeshDC_1_1Mesh__Prism3D__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Prism3D__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Prism3D__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="8,9,200,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Prism3D.html#4ce95d1e28e83b154b907b13478c1d9e">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#4ce95d1e28e83b154b907b13478c1d9e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="4ce95d1e28e83b154b907b13478c1d9e"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::__init__" ref="4ce95d1e28e83b154b907b13478c1d9e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Prism3D.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Prism3D::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
- </tr>
- </table>
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-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:51 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Projection1D.html">Mesh_Projection1D</a></div>
-<h1>smeshDC.Mesh_Projection1D Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Projection1D" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a projection 1D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Projection1D:<p><center><img src="classsmeshDC_1_1Mesh__Projection1D__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Projection1D__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Projection1D__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="17,9,209,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection1D.html#2149b168dc43aee773f8c2abd254c3ab">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#2149b168dc43aee773f8c2abd254c3ab"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection1D.html#e0701063b5905dfd9da3b451fc2dd5e1">SourceEdge</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Source Edge" hypothesis, specifying a meshed edge to take a mesh pattern from, and optionally association of vertices between the source edge and a target one (where a hipothesis is assigned to). <a href="#e0701063b5905dfd9da3b451fc2dd5e1"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="2149b168dc43aee773f8c2abd254c3ab"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::__init__" ref="2149b168dc43aee773f8c2abd254c3ab" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Projection1D.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="e0701063b5905dfd9da3b451fc2dd5e1"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::SourceEdge" ref="e0701063b5905dfd9da3b451fc2dd5e1" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Projection1D.SourceEdge </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>edge</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em> = <code>None</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>srcV</em> = <code>None</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>tgtV</em> = <code>None</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>edge</em> </td><td>to take nodes distribution from </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>mesh</em> </td><td>to take nodes distribution from (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>srcV</em> </td><td>is vertex of <em>edge</em> to associate with <em>tgtV</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>tgtV</em> </td><td>is vertex of <em>the</em> edge where the algorithm is assigned, to associate with <em>srcV</em> (optional) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Projection1D::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:49 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!doctype html public "-//w3c//dtd html 4.0 transitional//en">
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Projection2D.html">Mesh_Projection2D</a></div>
-<h1>smeshDC.Mesh_Projection2D Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Projection2D" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a projection 2D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Projection2D:<p><center><img src="classsmeshDC_1_1Mesh__Projection2D__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Projection2D__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Projection2D__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="17,9,209,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection2D.html#b218b943a0376aa9edec0520e11cabc6">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#b218b943a0376aa9edec0520e11cabc6"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection2D.html#455c8da553d208def480454bfa9e915f">SourceFace</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Source Face" hypothesis, specifying a meshed face to take a mesh pattern from, and optionally association of vertices between the source face and a target one (where a hipothesis is assigned to). <a href="#455c8da553d208def480454bfa9e915f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="b218b943a0376aa9edec0520e11cabc6"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::__init__" ref="b218b943a0376aa9edec0520e11cabc6" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Projection2D.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="455c8da553d208def480454bfa9e915f"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::SourceFace" ref="455c8da553d208def480454bfa9e915f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Projection2D.SourceFace </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>face</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em> = <code>None</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>srcV1</em> = <code>None</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>tgtV1</em> = <code>None</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>srcV2</em> = <code>None</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>tgtV2</em> = <code>None</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>face</em> </td><td>to take mesh pattern from </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>mesh</em> </td><td>to take mesh pattern from (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>srcV1</em> </td><td>is vertex of <em>face</em> to associate with <em>tgtV1</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>tgtV1</em> </td><td>is vertex of <em>the</em> face where the algorithm is assigned, to associate with <em>srcV1</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>srcV2</em> </td><td>is vertex of <em>face</em> to associate with <em>tgtV1</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>tgtV2</em> </td><td>is vertex of <em>the</em> face where the algorithm is assigned, to associate with <em>srcV2</em> (optional)</td></tr>
- </table>
-</dl>
-Note: association vertices must belong to one edge of a face
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
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- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
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- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Projection2D::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
- </tr>
- </table>
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-</div>
-</div><p>
-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:50 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Projection3D.html">Mesh_Projection3D</a></div>
-<h1>smeshDC.Mesh_Projection3D Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Projection3D" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a projection 3D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Projection3D:<p><center><img src="classsmeshDC_1_1Mesh__Projection3D__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Projection3D__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Projection3D__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="17,9,209,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection3D.html#a2b866785c6c7c5d71b79c44a743e7a0">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#a2b866785c6c7c5d71b79c44a743e7a0"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection3D.html#7b3368edafb7a696506b2d2ab703c835">SourceShape3D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Source Shape 3D" hypothesis, specifying a meshed solid to take a mesh pattern from, and optionally association of vertices between the source solid and a target one (where a hipothesis is assigned to). <a href="#7b3368edafb7a696506b2d2ab703c835"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="a2b866785c6c7c5d71b79c44a743e7a0"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::__init__" ref="a2b866785c6c7c5d71b79c44a743e7a0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Projection3D.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="7b3368edafb7a696506b2d2ab703c835"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::SourceShape3D" ref="7b3368edafb7a696506b2d2ab703c835" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Projection3D.SourceShape3D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>solid</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>srcV1</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>tgtV1</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>srcV2</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>tgtV2</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>solid</em> </td><td>to take mesh pattern from </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>mesh</em> </td><td>to take mesh pattern from (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>srcV1</em> </td><td>is vertex of <em>solid</em> to associate with <em>tgtV1</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>tgtV1</em> </td><td>is vertex of <em>the</em> solid where the algorithm is assigned, to associate with <em>srcV1</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>srcV2</em> </td><td>is vertex of <em>solid</em> to associate with <em>tgtV1</em> (optional) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>tgtV2</em> </td><td>is vertex of <em>the</em> solid where the algorithm is assigned, to associate with <em>srcV2</em> (optional)</td></tr>
- </table>
-</dl>
-Note: association vertices must belong to one edge of a solid
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Projection3D::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
- </tr>
- </table>
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-<div class="memdoc">
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-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:51 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Quadrangle.html">Mesh_Quadrangle</a></div>
-<h1>smeshDC.Mesh_Quadrangle Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Quadrangle" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a quadrangle 2D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Quadrangle:<p><center><img src="classsmeshDC_1_1Mesh__Quadrangle__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Quadrangle__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Quadrangle__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="14,9,206,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Quadrangle.html#be7e16731b1a94760df4e685f714da46">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#be7e16731b1a94760df4e685f714da46"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Quadrangle.html#fe1d8832a448dd80ae454a959901bb80">QuadranglePreference</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "QuadranglePreference" hypothesis, forcing construction of quadrangles if the number of nodes on opposite edges is not the same in the case where the global number of nodes on edges is even. <a href="#fe1d8832a448dd80ae454a959901bb80"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="be7e16731b1a94760df4e685f714da46"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::__init__" ref="be7e16731b1a94760df4e685f714da46" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Quadrangle.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fe1d8832a448dd80ae454a959901bb80"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::QuadranglePreference" ref="fe1d8832a448dd80ae454a959901bb80" args="" -->
-<div class="memitem">
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- <tr>
- <td class="memname">def smeshDC.Mesh_Quadrangle.QuadranglePreference </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
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-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
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- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
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-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
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- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
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- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
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-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
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- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
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-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
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-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
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- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-
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-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
- </table>
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-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Quadrangle::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
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-Generated on Thu Jun 21 13:26:46 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html">Mesh_RadialPrism3D</a></div>
-<h1>smeshDC.Mesh_RadialPrism3D Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_RadialPrism3D" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a Radial Prism 3D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_RadialPrism3D:<p><center><img src="classsmeshDC_1_1Mesh__RadialPrism3D__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__RadialPrism3D__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__RadialPrism3D__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="24,9,216,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#8fcbbe1962a3f18d7fb41aadc7fd1c77">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#8fcbbe1962a3f18d7fb41aadc7fd1c77"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#caad8abecf265d92e1a43bbbced3e7ab">Get3DHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return 3D hypothesis holding the 1D one. <a href="#caad8abecf265d92e1a43bbbced3e7ab"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#a819a98bc2f4bae947d8cb3fcaae857b">OwnHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method creating 1D hypothes and storing it in the LayerDistribution hypothes. <a href="#a819a98bc2f4bae947d8cb3fcaae857b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#d1a1a93cf42a184945572e48023e32ca">NumberOfLayers</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "NumberOfLayers" hypothesis, specifying a number of layers of prisms to build between the inner and outer shells. <a href="#d1a1a93cf42a184945572e48023e32ca"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#439d3fde7be45cf430d4a14a0a3abbfa">LocalLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "LocalLength" hypothesis, specifying segment length to build between the inner and outer shells. <a href="#439d3fde7be45cf430d4a14a0a3abbfa"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#fba81e8f71b3a76b1bced257da509989">NumberOfSegments</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "NumberOfSegments" hypothesis, specifying a number of layers of prisms to build between the inner and outer shells. <a href="#fba81e8f71b3a76b1bced257da509989"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#3a989ad23dfeaae5d2e26a993effe4ad">Arithmetic1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Arithmetic1D" hypothesis, specifying distribution of segments to build between the inner and outer shells as arithmetic length increasing. <a href="#3a989ad23dfeaae5d2e26a993effe4ad"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#645825522286911f7257b6c258e650ca">StartEndLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "StartEndLength" hypothesis, specifying distribution of segments to build between the inner and outer shells as geometric length increasing. <a href="#645825522286911f7257b6c258e650ca"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#e47fd6f4c97e698438369657c14a3bbb">AutomaticLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "AutomaticLength" hypothesis, specifying number of segments to build between the inner and outer shells. <a href="#e47fd6f4c97e698438369657c14a3bbb"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#ff0943173414c92c9d36420a195b898f">distribHyp</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html#9f6f2363961e154bfc8212c155acf6bf">nbLayers</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="8fcbbe1962a3f18d7fb41aadc7fd1c77"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::__init__" ref="8fcbbe1962a3f18d7fb41aadc7fd1c77" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="caad8abecf265d92e1a43bbbced3e7ab"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::Get3DHypothesis" ref="caad8abecf265d92e1a43bbbced3e7ab" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.Get3DHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="a819a98bc2f4bae947d8cb3fcaae857b"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::OwnHypothesis" ref="a819a98bc2f4bae947d8cb3fcaae857b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.OwnHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Returns the created hypothes
-</div>
-</div><p>
-<a class="anchor" name="d1a1a93cf42a184945572e48023e32ca"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::NumberOfLayers" ref="d1a1a93cf42a184945572e48023e32ca" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.NumberOfLayers </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>n</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="439d3fde7be45cf430d4a14a0a3abbfa"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::LocalLength" ref="439d3fde7be45cf430d4a14a0a3abbfa" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.LocalLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>l</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>l</em> </td><td>for the length of segments </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="fba81e8f71b3a76b1bced257da509989"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::NumberOfSegments" ref="fba81e8f71b3a76b1bced257da509989" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.NumberOfSegments </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>n</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>s</em> = <code>[]</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>n</em> </td><td>for the number of segments </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>s</em> </td><td>for the scale factor (optional) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="3a989ad23dfeaae5d2e26a993effe4ad"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::Arithmetic1D" ref="3a989ad23dfeaae5d2e26a993effe4ad" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.Arithmetic1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="645825522286911f7257b6c258e650ca"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::StartEndLength" ref="645825522286911f7257b6c258e650ca" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.StartEndLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="e47fd6f4c97e698438369657c14a3bbb"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::AutomaticLength" ref="e47fd6f4c97e698438369657c14a3bbb" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_RadialPrism3D.AutomaticLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>fineness</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>fineness</em> </td><td>for the fineness [0-1] </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
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- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
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- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
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-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="ff0943173414c92c9d36420a195b898f"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::distribHyp" ref="ff0943173414c92c9d36420a195b898f" args="" -->
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-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
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-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_RadialPrism3D::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
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-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
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-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Segment.html">Mesh_Segment</a></div>
-<h1>smeshDC.Mesh_Segment Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Segment" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a segment 1D algorithm for discretization.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Segment:<p><center><img src="classsmeshDC_1_1Mesh__Segment__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Segment__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Segment__inherit__map">
-<area href="classsmeshDC_1_1Mesh__CompositeSegment.html" shape="rect" coords="7,158,263,182" alt="">
-<area href="classsmeshDC_1_1Mesh__Segment__Python.html" shape="rect" coords="287,158,525,182" alt="">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="174,9,366,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#5c4a83872230465157d06af21b0b0982">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#5c4a83872230465157d06af21b0b0982"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#2f9d15d24a38ccc273014f85ea6dcd24">LocalLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "LocalLength" hypothesis to cut an edge in several segments with the same length. <a href="#2f9d15d24a38ccc273014f85ea6dcd24"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#04608e6ca6e7008ebd248548f24a8248">NumberOfSegments</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments. <a href="#04608e6ca6e7008ebd248548f24a8248"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#4e44e56e3986592ea4b373314350ba1e">Arithmetic1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing. <a href="#4e44e56e3986592ea4b373314350ba1e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#55111c455f6db69788784ab3592422bf">StartEndLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing. <a href="#55111c455f6db69788784ab3592422bf"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#9c66c7680baa0ad57798f636f1f76714">Deflection1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Deflection1D" hypothesis. <a href="#9c66c7680baa0ad57798f636f1f76714"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#a056c4ab47821070f56256c5247a83dc">Propagation</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Propagation" hypothesis that propagate all other hypothesis on all others edges that are in the opposite side in the case of quadrangular faces. <a href="#a056c4ab47821070f56256c5247a83dc"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#37c89f203f0c2d4b668775f38d406d00">AutomaticLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "AutomaticLength" hypothesis. <a href="#37c89f203f0c2d4b668775f38d406d00"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#b55e9b34c5e68ad2a4bf8aa5b737de9b">LengthNearVertex</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "SegmentLengthAroundVertex" hypothesis. <a href="#b55e9b34c5e68ad2a4bf8aa5b737de9b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#99a77d794183b6b42d27c4d63f85fe74">QuadraticMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges. <a href="#99a77d794183b6b42d27c4d63f85fe74"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="5c4a83872230465157d06af21b0b0982"></a><!-- doxytag: member="smeshDC::Mesh_Segment::__init__" ref="5c4a83872230465157d06af21b0b0982" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__CompositeSegment.html#3e92141214a56886fdf7918a922ef0af">smeshDC.Mesh_CompositeSegment</a>, and <a class="el" href="classsmeshDC_1_1Mesh__Segment__Python.html#e38eb8379c79bc2a3f29658209098f2b">smeshDC.Mesh_Segment_Python</a>.
-</div>
-</div><p>
-<a class="anchor" name="2f9d15d24a38ccc273014f85ea6dcd24"></a><!-- doxytag: member="smeshDC::Mesh_Segment::LocalLength" ref="2f9d15d24a38ccc273014f85ea6dcd24" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.LocalLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>l</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>l</em> </td><td>for the length of segments that cut an edge </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="04608e6ca6e7008ebd248548f24a8248"></a><!-- doxytag: member="smeshDC::Mesh_Segment::NumberOfSegments" ref="04608e6ca6e7008ebd248548f24a8248" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.NumberOfSegments </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>n</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>s</em> = <code>[]</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>n</em> </td><td>for the number of segments that cut an edge </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>s</em> </td><td>for the scale factor (optional) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4e44e56e3986592ea4b373314350ba1e"></a><!-- doxytag: member="smeshDC::Mesh_Segment::Arithmetic1D" ref="4e44e56e3986592ea4b373314350ba1e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Arithmetic1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="55111c455f6db69788784ab3592422bf"></a><!-- doxytag: member="smeshDC::Mesh_Segment::StartEndLength" ref="55111c455f6db69788784ab3592422bf" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.StartEndLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="9c66c7680baa0ad57798f636f1f76714"></a><!-- doxytag: member="smeshDC::Mesh_Segment::Deflection1D" ref="9c66c7680baa0ad57798f636f1f76714" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Deflection1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>d</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>d</em> </td><td>for the deflection </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a056c4ab47821070f56256c5247a83dc"></a><!-- doxytag: member="smeshDC::Mesh_Segment::Propagation" ref="a056c4ab47821070f56256c5247a83dc" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Propagation </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="37c89f203f0c2d4b668775f38d406d00"></a><!-- doxytag: member="smeshDC::Mesh_Segment::AutomaticLength" ref="37c89f203f0c2d4b668775f38d406d00" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.AutomaticLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>fineness</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>fineness</em> </td><td>for the fineness [0-1] </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b55e9b34c5e68ad2a4bf8aa5b737de9b"></a><!-- doxytag: member="smeshDC::Mesh_Segment::LengthNearVertex" ref="b55e9b34c5e68ad2a4bf8aa5b737de9b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.LengthNearVertex </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>length</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>vertex</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>length</em> </td><td>for the segment length </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>vertex</em> </td><td>for the length localization: vertex index [0,1] | verext object </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="99a77d794183b6b42d27c4d63f85fe74"></a><!-- doxytag: member="smeshDC::Mesh_Segment::QuadraticMesh" ref="99a77d794183b6b42d27c4d63f85fe74" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.QuadraticMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the 2D mesher sees that all boundary edges are quadratic ones, it generates quadratic faces, else it generates linear faces using medium nodes as if they were vertex ones. The 3D mesher generates quadratic volumes only if all boundary faces are quadratic ones, else it fails.
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Segment::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Segment::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Segment::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Segment::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Segment::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Segment::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Segment::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Segment::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Segment::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="44e8968ec16413fd4aac2b906c313c0e"></a><!-- doxytag: member="smeshDC::Mesh_Segment::geom" ref="44e8968ec16413fd4aac2b906c313c0e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment.geom</a> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented from <a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm</a>.
-</div>
-</div><p>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Segment::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
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- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Segment::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
-<div class="memitem">
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- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
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-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Segment::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
- </tr>
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-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Segment::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
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- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-</DIV>
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-Generated on Thu Jun 21 13:26:42 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Segment__Python.html">Mesh_Segment_Python</a></div>
-<h1>smeshDC.Mesh_Segment_Python Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Segment_Python" --><!-- doxytag: inherits="smeshDC::Mesh_Segment" -->Class to define a segment 1D algorithm for discretization with python function.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Segment_Python:<p><center><img src="classsmeshDC_1_1Mesh__Segment__Python__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Segment__Python__inherit__map" alt="Inheritance graph"></center>
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-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment__Python.html#e38eb8379c79bc2a3f29658209098f2b">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#e38eb8379c79bc2a3f29658209098f2b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment__Python.html#67acdf24af043a2ee0d852c2b5281cd5">PythonSplit1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "PythonSplit1D" hypothesis based on the Erwan Adam patch, awaiting equivalent SALOME functionality. <a href="#67acdf24af043a2ee0d852c2b5281cd5"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#2f9d15d24a38ccc273014f85ea6dcd24">LocalLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "LocalLength" hypothesis to cut an edge in several segments with the same length. <a href="#2f9d15d24a38ccc273014f85ea6dcd24"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#04608e6ca6e7008ebd248548f24a8248">NumberOfSegments</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments. <a href="#04608e6ca6e7008ebd248548f24a8248"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#4e44e56e3986592ea4b373314350ba1e">Arithmetic1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing. <a href="#4e44e56e3986592ea4b373314350ba1e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#55111c455f6db69788784ab3592422bf">StartEndLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing. <a href="#55111c455f6db69788784ab3592422bf"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#9c66c7680baa0ad57798f636f1f76714">Deflection1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Deflection1D" hypothesis. <a href="#9c66c7680baa0ad57798f636f1f76714"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#a056c4ab47821070f56256c5247a83dc">Propagation</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Propagation" hypothesis that propagate all other hypothesis on all others edges that are in the opposite side in the case of quadrangular faces. <a href="#a056c4ab47821070f56256c5247a83dc"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#37c89f203f0c2d4b668775f38d406d00">AutomaticLength</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "AutomaticLength" hypothesis. <a href="#37c89f203f0c2d4b668775f38d406d00"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#b55e9b34c5e68ad2a4bf8aa5b737de9b">LengthNearVertex</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "SegmentLengthAroundVertex" hypothesis. <a href="#b55e9b34c5e68ad2a4bf8aa5b737de9b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#99a77d794183b6b42d27c4d63f85fe74">QuadraticMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges. <a href="#99a77d794183b6b42d27c4d63f85fe74"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="e38eb8379c79bc2a3f29658209098f2b"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::__init__" ref="e38eb8379c79bc2a3f29658209098f2b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment_Python.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented from <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#5c4a83872230465157d06af21b0b0982">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="67acdf24af043a2ee0d852c2b5281cd5"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::PythonSplit1D" ref="67acdf24af043a2ee0d852c2b5281cd5" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment_Python.PythonSplit1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>n</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>func</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>n</em> </td><td>for the number of segments that cut an edge </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>func</em> </td><td>for the python function that calculate the length of all segments </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2f9d15d24a38ccc273014f85ea6dcd24"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::LocalLength" ref="2f9d15d24a38ccc273014f85ea6dcd24" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.LocalLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>l</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>l</em> </td><td>for the length of segments that cut an edge </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="04608e6ca6e7008ebd248548f24a8248"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::NumberOfSegments" ref="04608e6ca6e7008ebd248548f24a8248" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.NumberOfSegments </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>n</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>s</em> = <code>[]</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>n</em> </td><td>for the number of segments that cut an edge </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>s</em> </td><td>for the scale factor (optional) </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="4e44e56e3986592ea4b373314350ba1e"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::Arithmetic1D" ref="4e44e56e3986592ea4b373314350ba1e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Arithmetic1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="55111c455f6db69788784ab3592422bf"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::StartEndLength" ref="55111c455f6db69788784ab3592422bf" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.StartEndLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>start</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>end</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>start</em> </td><td>for the length of the first segment </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>end</em> </td><td>for the length of the last segment </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="9c66c7680baa0ad57798f636f1f76714"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::Deflection1D" ref="9c66c7680baa0ad57798f636f1f76714" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Deflection1D </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>d</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>d</em> </td><td>for the deflection </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a056c4ab47821070f56256c5247a83dc"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::Propagation" ref="a056c4ab47821070f56256c5247a83dc" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.Propagation </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="37c89f203f0c2d4b668775f38d406d00"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::AutomaticLength" ref="37c89f203f0c2d4b668775f38d406d00" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.AutomaticLength </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>fineness</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>fineness</em> </td><td>for the fineness [0-1] </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="b55e9b34c5e68ad2a4bf8aa5b737de9b"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::LengthNearVertex" ref="b55e9b34c5e68ad2a4bf8aa5b737de9b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.LengthNearVertex </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>length</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>vertex</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>length</em> </td><td>for the segment length </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>vertex</em> </td><td>for the length localization: vertex index [0,1] | verext object </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="99a77d794183b6b42d27c4d63f85fe74"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::QuadraticMesh" ref="99a77d794183b6b42d27c4d63f85fe74" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Segment.QuadraticMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-If the 2D mesher sees that all boundary edges are quadratic ones, it generates quadratic faces, else it generates linear faces using medium nodes as if they were vertex ones. The 3D mesher generates quadratic volumes only if all boundary faces are quadratic ones, else it fails.
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="44e8968ec16413fd4aac2b906c313c0e"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::geom" ref="44e8968ec16413fd4aac2b906c313c0e" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment.geom</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-<p>
-Reimplemented from <a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm</a>.
-</div>
-</div><p>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
-<div class="memitem">
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
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-<div class="memdoc">
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-
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
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-<div class="memdoc">
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-
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-</div><p>
-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Segment_Python::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
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-<div class="memdoc">
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-<p>
-
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-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:44 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html">Mesh_Tetrahedron</a></div>
-<h1>smeshDC.Mesh_Tetrahedron Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Tetrahedron" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a tetrahedron 3D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Tetrahedron:<p><center><img src="classsmeshDC_1_1Mesh__Tetrahedron__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Tetrahedron__inherit__map" alt="Inheritance graph"></center>
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-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="14,9,206,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#291e0ee90a057800355c611106b047f7">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#291e0ee90a057800355c611106b047f7"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#b6a52d8875cd697f1873c7cdbfc48953">MaxElementVolume</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "MaxElementVolume" hypothesis to give the maximun volume of each tetrahedral. <a href="#b6a52d8875cd697f1873c7cdbfc48953"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#3fb1e88e134722730c09c710e79d7d2d">Parameters</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Netgen 3D Parameters" hypothesis. <a href="#3fb1e88e134722730c09c710e79d7d2d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#a1b26f4f423560c7b12ef02b65714f48">SetMaxSize</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set MaxSize. <a href="#a1b26f4f423560c7b12ef02b65714f48"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#10a8529a53e7476391bd34a564485aed">SetSecondOrder</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set SecondOrder flag. <a href="#10a8529a53e7476391bd34a564485aed"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#4f4cb87cace8b3f653967399fb068bbb">SetOptimize</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set Optimize flag. <a href="#4f4cb87cace8b3f653967399fb068bbb"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#27abbf4e34c4f9f328ba24a15243807a">SetFineness</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set Fineness. <a href="#27abbf4e34c4f9f328ba24a15243807a"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#d42c68ee93e1ba30db62a937e4093c46">SetGrowthRate</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set GrowthRate. <a href="#d42c68ee93e1ba30db62a937e4093c46"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#99f943f5f235d0c9eb67d11a95bfd1b4">SetNbSegPerEdge</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set NbSegPerEdge. <a href="#99f943f5f235d0c9eb67d11a95bfd1b4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#204fedb21f34d4f0356c1ee5e9b7efaf">SetNbSegPerRadius</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set NbSegPerRadius. <a href="#204fedb21f34d4f0356c1ee5e9b7efaf"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#cc69e601c3ecf0ebbd62b0b6e8133656">algoType</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#e1c0c8f0f6685cfc798c660d7bf150eb">params</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
-
-<tr><td colspan="2"><br><h2>Static Public Attributes</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#20aacdf4680ef9ac8478b884b1fa9821">params</a> = 0</td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#06ddd1af2a9d8e7282cea1ebb641206e">algoType</a> = 0</td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="291e0ee90a057800355c611106b047f7"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::__init__" ref="291e0ee90a057800355c611106b047f7" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>algoType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="b6a52d8875cd697f1873c7cdbfc48953"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::MaxElementVolume" ref="b6a52d8875cd697f1873c7cdbfc48953" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.MaxElementVolume </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>vol</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>vol</em> </td><td>for the maximum volume of each tetrahedral </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="3fb1e88e134722730c09c710e79d7d2d"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::Parameters" ref="3fb1e88e134722730c09c710e79d7d2d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.Parameters </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="a1b26f4f423560c7b12ef02b65714f48"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetMaxSize" ref="a1b26f4f423560c7b12ef02b65714f48" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetMaxSize </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theSize</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="10a8529a53e7476391bd34a564485aed"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetSecondOrder" ref="10a8529a53e7476391bd34a564485aed" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetSecondOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="4f4cb87cace8b3f653967399fb068bbb"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetOptimize" ref="4f4cb87cace8b3f653967399fb068bbb" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetOptimize </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="27abbf4e34c4f9f328ba24a15243807a"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetFineness" ref="27abbf4e34c4f9f328ba24a15243807a" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetFineness </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFineness</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theFineness</em> </td><td>is: VeryCoarse, Coarse, Moderate, Fine, VeryFine or Custom </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d42c68ee93e1ba30db62a937e4093c46"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetGrowthRate" ref="d42c68ee93e1ba30db62a937e4093c46" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetGrowthRate </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theRate</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="99f943f5f235d0c9eb67d11a95bfd1b4"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetNbSegPerEdge" ref="99f943f5f235d0c9eb67d11a95bfd1b4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetNbSegPerEdge </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="204fedb21f34d4f0356c1ee5e9b7efaf"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetNbSegPerRadius" ref="204fedb21f34d4f0356c1ee5e9b7efaf" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Tetrahedron.SetNbSegPerRadius </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
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- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
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- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
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-<p>
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-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="20aacdf4680ef9ac8478b884b1fa9821"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::params" ref="20aacdf4680ef9ac8478b884b1fa9821" args="" -->
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- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#20aacdf4680ef9ac8478b884b1fa9821">smeshDC.Mesh_Tetrahedron.params</a> = 0<code> [static]</code> </td>
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-<a class="anchor" name="06ddd1af2a9d8e7282cea1ebb641206e"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::algoType" ref="06ddd1af2a9d8e7282cea1ebb641206e" args="" -->
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- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#06ddd1af2a9d8e7282cea1ebb641206e">smeshDC.Mesh_Tetrahedron.algoType</a> = 0<code> [static]</code> </td>
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-<a class="anchor" name="cc69e601c3ecf0ebbd62b0b6e8133656"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::algoType" ref="cc69e601c3ecf0ebbd62b0b6e8133656" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html#06ddd1af2a9d8e7282cea1ebb641206e">smeshDC.Mesh_Tetrahedron.algoType</a> </td>
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-<a class="anchor" name="e1c0c8f0f6685cfc798c660d7bf150eb"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::params" ref="e1c0c8f0f6685cfc798c660d7bf150eb" args="" -->
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-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smeshDC.Mesh_Algorithm.smesh</a><code> [inherited]</code> </td>
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-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
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-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
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-<p>
-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
-</div><p>
-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
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-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Tetrahedron::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">smeshDC.Mesh_Algorithm.algo</a><code> [inherited]</code> </td>
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-</DIV>
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-Generated on Thu Jun 21 13:26:46 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1Mesh__Triangle.html">Mesh_Triangle</a></div>
-<h1>smeshDC.Mesh_Triangle Class Reference</h1><!-- doxytag: class="smeshDC::Mesh_Triangle" --><!-- doxytag: inherits="smeshDC::Mesh_Algorithm" -->Class to define a triangle 2D algorithm.
-<a href="#_details">More...</a>
-<p>
-Inheritance diagram for smeshDC.Mesh_Triangle:<p><center><img src="classsmeshDC_1_1Mesh__Triangle__inherit__graph.jpg" border="0" usemap="#smeshDC_8Mesh__Triangle__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8Mesh__Triangle__inherit__map">
-<area href="classsmeshDC_1_1Mesh__Algorithm.html" shape="rect" coords="8,9,200,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#2ed3a3036c54f80493180f63129ff648">__init__</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private constructor. <a href="#2ed3a3036c54f80493180f63129ff648"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#7ac62e5402ad301f21fc2a600aac487c">MaxElementArea</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "MaxElementArea" hypothesis to give the maximun area of each triangles. <a href="#7ac62e5402ad301f21fc2a600aac487c"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#aed380b422fdbd0f5dfce46a31f13584">LengthFromEdges</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "LengthFromEdges" hypothesis to build triangles based on the length of the edges taken from the wire. <a href="#aed380b422fdbd0f5dfce46a31f13584"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#467351133f6b28085085ce816486df3b">Parameters</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Define "Netgen 2D Parameters" hypothesis. <a href="#467351133f6b28085085ce816486df3b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#a4315cba92bf8d811dd4165ea3d414a8">SetMaxSize</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set MaxSize. <a href="#a4315cba92bf8d811dd4165ea3d414a8"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#dcc055f5a48f07f5e6e3795f8e20df91">SetSecondOrder</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set SecondOrder flag. <a href="#dcc055f5a48f07f5e6e3795f8e20df91"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#1038229839470562de0dfa5ea3295ffe">SetOptimize</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set Optimize flag. <a href="#1038229839470562de0dfa5ea3295ffe"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#d89eb1da49de683da7aee6c9fcce8c35">SetFineness</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set Fineness. <a href="#d89eb1da49de683da7aee6c9fcce8c35"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#d4d2280c1856f1c79802a35b02d3b85f">SetGrowthRate</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set GrowthRate. <a href="#d4d2280c1856f1c79802a35b02d3b85f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#71b7b2d8b2838a9cab8171918fa2b9a3">SetNbSegPerEdge</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set NbSegPerEdge. <a href="#71b7b2d8b2838a9cab8171918fa2b9a3"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#efa78245bff3e67168cd332b4320283e">SetNbSegPerRadius</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set NbSegPerRadius. <a href="#efa78245bff3e67168cd332b4320283e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#adebc1bdaeda926b21c2fc46fa6a4141">SetQuadAllowed</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set QuadAllowed flag. <a href="#adebc1bdaeda926b21c2fc46fa6a4141"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#d236fbbd88c3548e3e1cbaad693587fd">__init__</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6e10699dca080739fe879c39242d383f">GetSubMesh</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">If the algorithm is global, return 0; <br>
- else return the submesh associated to this algorithm. <a href="#6e10699dca080739fe879c39242d383f"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#823bceab89ad9844fbdcf7a2b59b82d4">GetAlgorithm</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Return the wrapped mesher. <a href="#823bceab89ad9844fbdcf7a2b59b82d4"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#cc7b73f68fec47890cf16932a71e71ff">GetCompatibleHypothesis</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get list of hypothesis that can be used with this algorithm. <a href="#cc7b73f68fec47890cf16932a71e71ff"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#07001c3590c379d357754b3a8b4e62f2">GetName</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get name of algo. <a href="#07001c3590c379d357754b3a8b4e62f2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#fc9788a5b000f2f7afb7f7e81888bc1d">SetName</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set name to algo. <a href="#fc9788a5b000f2f7afb7f7e81888bc1d"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#84a52154a90fef60f7939fc73084dea2">GetId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get id of algo. <a href="#84a52154a90fef60f7939fc73084dea2"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#6ed4da82cee92b3be4b42debecb10bfd">Create</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#6ed4da82cee92b3be4b42debecb10bfd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#088088a4a4c2f4057984a8d5f5af05d0">Hypothesis</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Private method. <a href="#088088a4a4c2f4057984a8d5f5af05d0"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#0989ce5ccd64fdee56033da4cc267d01">algoType</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#61485147eeee81ea323ae74d6a020a9b">params</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#a26131bcccd55e4d89612e43aeba151a">smesh</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">mesh</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">geom</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">subm</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#f42e17af989dda7a186b5d7e68f2ec71">algo</a></td></tr>
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-<tr><td colspan="2"><br><h2>Static Public Attributes</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#e9274508a096be121aecc16717c7befb">algoType</a> = 0</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#816078764568abdbe333915df1d5a643">params</a> = 0</td></tr>
-
-</table>
-<hr><a name="_details"></a><h2>Detailed Description</h2>
-More details.
-<p>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="2ed3a3036c54f80493180f63129ff648"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::__init__" ref="2ed3a3036c54f80493180f63129ff648" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>algoType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="7ac62e5402ad301f21fc2a600aac487c"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::MaxElementArea" ref="7ac62e5402ad301f21fc2a600aac487c" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.MaxElementArea </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>area</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>area</em> </td><td>for the maximum area of each triangles </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="aed380b422fdbd0f5dfce46a31f13584"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::LengthFromEdges" ref="aed380b422fdbd0f5dfce46a31f13584" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.LengthFromEdges </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="467351133f6b28085085ce816486df3b"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::Parameters" ref="467351133f6b28085085ce816486df3b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.Parameters </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="a4315cba92bf8d811dd4165ea3d414a8"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetMaxSize" ref="a4315cba92bf8d811dd4165ea3d414a8" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetMaxSize </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theSize</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="dcc055f5a48f07f5e6e3795f8e20df91"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetSecondOrder" ref="dcc055f5a48f07f5e6e3795f8e20df91" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetSecondOrder </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="1038229839470562de0dfa5ea3295ffe"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetOptimize" ref="1038229839470562de0dfa5ea3295ffe" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetOptimize </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d89eb1da49de683da7aee6c9fcce8c35"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetFineness" ref="d89eb1da49de683da7aee6c9fcce8c35" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetFineness </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFineness</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theFineness</em> </td><td>is: VeryCoarse, Coarse, Moderate, Fine, VeryFine or Custom </td></tr>
- </table>
-</dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d4d2280c1856f1c79802a35b02d3b85f"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetGrowthRate" ref="d4d2280c1856f1c79802a35b02d3b85f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetGrowthRate </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theRate</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="71b7b2d8b2838a9cab8171918fa2b9a3"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetNbSegPerEdge" ref="71b7b2d8b2838a9cab8171918fa2b9a3" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetNbSegPerEdge </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="efa78245bff3e67168cd332b4320283e"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetNbSegPerRadius" ref="efa78245bff3e67168cd332b4320283e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetNbSegPerRadius </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVal</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="adebc1bdaeda926b21c2fc46fa6a4141"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetQuadAllowed" ref="adebc1bdaeda926b21c2fc46fa6a4141" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Triangle.SetQuadAllowed </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>toAllow</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="d236fbbd88c3548e3e1cbaad693587fd"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::__init__" ref="d236fbbd88c3548e3e1cbaad693587fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.__init__ </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>smesh</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6e10699dca080739fe879c39242d383f"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::GetSubMesh" ref="6e10699dca080739fe879c39242d383f" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetSubMesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="823bceab89ad9844fbdcf7a2b59b82d4"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::GetAlgorithm" ref="823bceab89ad9844fbdcf7a2b59b82d4" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetAlgorithm </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="cc7b73f68fec47890cf16932a71e71ff"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::GetCompatibleHypothesis" ref="cc7b73f68fec47890cf16932a71e71ff" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="07001c3590c379d357754b3a8b4e62f2"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::GetName" ref="07001c3590c379d357754b3a8b4e62f2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="fc9788a5b000f2f7afb7f7e81888bc1d"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::SetName" ref="fc9788a5b000f2f7afb7f7e81888bc1d" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="84a52154a90fef60f7939fc73084dea2"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::GetId" ref="84a52154a90fef60f7939fc73084dea2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.GetId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6ed4da82cee92b3be4b42debecb10bfd"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::Create" ref="6ed4da82cee92b3be4b42debecb10bfd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Create </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>mesh</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geom</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypo</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="088088a4a4c2f4057984a8d5f5af05d0"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::Hypothesis" ref="088088a4a4c2f4057984a8d5f5af05d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.Mesh_Algorithm.Hypothesis </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hyp</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>args</em> = <code>[]</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>so</em> = <code>"libStdMeshersEngine.so"</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"><code> [inherited]</code></td>
- </tr>
- </table>
-</div>
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-<p>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="e9274508a096be121aecc16717c7befb"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::algoType" ref="e9274508a096be121aecc16717c7befb" args="" -->
-<div class="memitem">
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- <table class="memname">
- <tr>
- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#e9274508a096be121aecc16717c7befb">smeshDC.Mesh_Triangle.algoType</a> = 0<code> [static]</code> </td>
- </tr>
- </table>
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-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="816078764568abdbe333915df1d5a643"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::params" ref="816078764568abdbe333915df1d5a643" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">int <a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#816078764568abdbe333915df1d5a643">smeshDC.Mesh_Triangle.params</a> = 0<code> [static]</code> </td>
- </tr>
- </table>
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-<div class="memdoc">
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-<p>
-
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-</div><p>
-<a class="anchor" name="0989ce5ccd64fdee56033da4cc267d01"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::algoType" ref="0989ce5ccd64fdee56033da4cc267d01" args="" -->
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- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#e9274508a096be121aecc16717c7befb">smeshDC.Mesh_Triangle.algoType</a> </td>
- </tr>
- </table>
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-<div class="memdoc">
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-<p>
-
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-</div><p>
-<a class="anchor" name="61485147eeee81ea323ae74d6a020a9b"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::params" ref="61485147eeee81ea323ae74d6a020a9b" args="" -->
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-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html#816078764568abdbe333915df1d5a643">smeshDC.Mesh_Triangle.params</a> </td>
- </tr>
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-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="a26131bcccd55e4d89612e43aeba151a"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::smesh" ref="a26131bcccd55e4d89612e43aeba151a" args="" -->
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-<a class="anchor" name="389abfff22e0cd47e6fd98f5f5000cfa"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::mesh" ref="389abfff22e0cd47e6fd98f5f5000cfa" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#389abfff22e0cd47e6fd98f5f5000cfa">smeshDC.Mesh_Algorithm.mesh</a><code> [inherited]</code> </td>
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-<a class="anchor" name="20ae4013ee7d13170461eca766fdda32"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::geom" ref="20ae4013ee7d13170461eca766fdda32" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#20ae4013ee7d13170461eca766fdda32">smeshDC.Mesh_Algorithm.geom</a><code> [inherited]</code> </td>
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-Reimplemented in <a class="el" href="classsmeshDC_1_1Mesh__Segment.html#44e8968ec16413fd4aac2b906c313c0e">smeshDC.Mesh_Segment</a>.
-</div>
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-<a class="anchor" name="3292dd6a8b832264d19f199469602054"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::subm" ref="3292dd6a8b832264d19f199469602054" args="" -->
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- <td class="memname"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html#3292dd6a8b832264d19f199469602054">smeshDC.Mesh_Algorithm.subm</a><code> [inherited]</code> </td>
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-<a class="anchor" name="f42e17af989dda7a186b5d7e68f2ec71"></a><!-- doxytag: member="smeshDC::Mesh_Triangle::algo" ref="f42e17af989dda7a186b5d7e68f2ec71" args="" -->
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-Generated on Thu Jun 21 13:26:45 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!-- Generated by Doxygen 1.4.7 -->
-<div class="nav">
-<a class="el" href="namespacesmeshDC.html">smeshDC</a>.<a class="el" href="classsmeshDC_1_1smeshDC.html">smeshDC</a></div>
-<h1>smeshDC.smeshDC Class Reference</h1><!-- doxytag: class="smeshDC::smeshDC" --><!-- doxytag: inherits="SMESH::_objref_SMESH_Gen" -->Inheritance diagram for smeshDC.smeshDC:<p><center><img src="classsmeshDC_1_1smeshDC__inherit__graph.jpg" border="0" usemap="#smeshDC_8smeshDC__inherit__map" alt="Inheritance graph"></center>
-<map name="smeshDC_8smeshDC__inherit__map">
-<area href="classSMESH_1_1__objref__SMESH__Gen.html" shape="rect" coords="8,9,216,33" alt="">
-</map>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Public Member Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#3499c2d17eefbcd7bf18afd55724d8d0">init_smesh</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#2e7b8d092fdcbaf79a26288b0d626687">Mesh</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#334a64d26357505f4c01bac941dd4a62">EnumToLong</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Returns long value from enumeration Uses for SMESH.FunctorType enumeration. <a href="#334a64d26357505f4c01bac941dd4a62"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#64ad34d9c5d0e80645c2bb39987c317e">GetPointStruct</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get PointStruct from vertex. <a href="#64ad34d9c5d0e80645c2bb39987c317e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#2c9c34b4bb4cda25e0c79762e18b7cee">GetDirStruct</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get DirStruct from vector. <a href="#2c9c34b4bb4cda25e0c79762e18b7cee"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#0d27bea973eb458dd78cb34063409637">GetAxisStruct</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get AxisStruct from object. <a href="#0d27bea973eb458dd78cb34063409637"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#c1b7b046cf266b180366258adff61c58">SetEmbeddedMode</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set the current mode. <a href="#c1b7b046cf266b180366258adff61c58"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#56f3b2cf98523408e29c9e37ddbcd30b">IsEmbeddedMode</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the current mode. <a href="#56f3b2cf98523408e29c9e37ddbcd30b"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#d651984dfb70f141191ecb0ea19eef53">SetCurrentStudy</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Set the current study. <a href="#d651984dfb70f141191ecb0ea19eef53"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#a3092b9e1113eb7e8f6dd836504109e5">GetCurrentStudy</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Get the current study. <a href="#a3092b9e1113eb7e8f6dd836504109e5"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#6b8533345f9c0daaaa0461274c137896">CreateMeshesFromUNV</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> object importing data from given UNV file. <a href="#6b8533345f9c0daaaa0461274c137896"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#f4baebaebf0a5d22e8b17b4ce6111531">CreateMeshesFromMED</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> object(s) importing data from given MED file. <a href="#f4baebaebf0a5d22e8b17b4ce6111531"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#475c4a1a7f9b19a0c5e75b8c6d8d87dd">CreateMeshesFromSTL</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Create <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> object importing data from given STL file. <a href="#475c4a1a7f9b19a0c5e75b8c6d8d87dd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#73a72dd2b3247d457e84cc743542d512">GetSubShapesId</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">From SMESH_Gen interface. <a href="#73a72dd2b3247d457e84cc743542d512"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#c58d54d598efd8a04016374d9ec44f20">GetPattern</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">From SMESH_Gen interface. <a href="#c58d54d598efd8a04016374d9ec44f20"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#ba6515d9b4002b5424eca054f53e3651">GetEmptyCriterion</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates an empty criterion. <a href="#ba6515d9b4002b5424eca054f53e3651"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#d33640d1175a81d55932d21c3f1725fd">GetCriterion</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates a criterion by given parameters. <a href="#d33640d1175a81d55932d21c3f1725fd"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#547c7463acea82f6802261ff0f403820">GetFilter</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates filter by given parameters of criterion. <a href="#547c7463acea82f6802261ff0f403820"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#a40eee73fe02962d0365c131cb16eca7">GetFunctor</a></td></tr>
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-<tr><td class="mdescLeft"> </td><td class="mdescRight">Creates numerical functor by its type. <a href="#a40eee73fe02962d0365c131cb16eca7"></a><br></td></tr>
-<tr><td colspan="2"><br><h2>Data Fields</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html#4eb4abcdb87e8fd7d57e41ae2f0a1f5c">geompyD</a></td></tr>
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-</table>
-<hr><h2>Member Function Documentation</h2>
-<a class="anchor" name="3499c2d17eefbcd7bf18afd55724d8d0"></a><!-- doxytag: member="smeshDC::smeshDC::init_smesh" ref="3499c2d17eefbcd7bf18afd55724d8d0" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.init_smesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theStudy</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geompyD</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
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-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="2e7b8d092fdcbaf79a26288b0d626687"></a><!-- doxytag: member="smeshDC::smeshDC::Mesh" ref="2e7b8d092fdcbaf79a26288b0d626687" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.Mesh </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>obj</em> = <code>0</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em> = <code>0</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="334a64d26357505f4c01bac941dd4a62"></a><!-- doxytag: member="smeshDC::smeshDC::EnumToLong" ref="334a64d26357505f4c01bac941dd4a62" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.EnumToLong </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theItem</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="64ad34d9c5d0e80645c2bb39987c317e"></a><!-- doxytag: member="smeshDC::smeshDC::GetPointStruct" ref="64ad34d9c5d0e80645c2bb39987c317e" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetPointStruct </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVertex</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theVertex</em> </td><td>is GEOM object(vertex) </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH.PointStruct </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="2c9c34b4bb4cda25e0c79762e18b7cee"></a><!-- doxytag: member="smeshDC::smeshDC::GetDirStruct" ref="2c9c34b4bb4cda25e0c79762e18b7cee" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetDirStruct </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theVector</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theVector</em> </td><td>is GEOM object(vector) </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH.DirStruct </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="0d27bea973eb458dd78cb34063409637"></a><!-- doxytag: member="smeshDC::smeshDC::GetAxisStruct" ref="0d27bea973eb458dd78cb34063409637" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetAxisStruct </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theObj</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theObj</em> </td><td>is GEOM object(line or plane) </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH.AxisStruct </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="c1b7b046cf266b180366258adff61c58"></a><!-- doxytag: member="smeshDC::smeshDC::SetEmbeddedMode" ref="c1b7b046cf266b180366258adff61c58" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.SetEmbeddedMode </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theMode</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
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-<a class="anchor" name="56f3b2cf98523408e29c9e37ddbcd30b"></a><!-- doxytag: member="smeshDC::smeshDC::IsEmbeddedMode" ref="56f3b2cf98523408e29c9e37ddbcd30b" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.IsEmbeddedMode </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
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-</div>
-</div><p>
-<a class="anchor" name="d651984dfb70f141191ecb0ea19eef53"></a><!-- doxytag: member="smeshDC::smeshDC::SetCurrentStudy" ref="d651984dfb70f141191ecb0ea19eef53" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.SetCurrentStudy </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theStudy</em></td><td> </td>
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- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
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-<div class="memdoc">
-
-<p>
-
-</div>
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-<a class="anchor" name="a3092b9e1113eb7e8f6dd836504109e5"></a><!-- doxytag: member="smeshDC::smeshDC::GetCurrentStudy" ref="a3092b9e1113eb7e8f6dd836504109e5" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetCurrentStudy </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="6b8533345f9c0daaaa0461274c137896"></a><!-- doxytag: member="smeshDC::smeshDC::CreateMeshesFromUNV" ref="6b8533345f9c0daaaa0461274c137896" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.CreateMeshesFromUNV </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFileName</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>an instance of <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> class </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="f4baebaebf0a5d22e8b17b4ce6111531"></a><!-- doxytag: member="smeshDC::smeshDC::CreateMeshesFromMED" ref="f4baebaebf0a5d22e8b17b4ce6111531" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.CreateMeshesFromMED </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFileName</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>a list of <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> class instances </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="475c4a1a7f9b19a0c5e75b8c6d8d87dd"></a><!-- doxytag: member="smeshDC::smeshDC::CreateMeshesFromSTL" ref="475c4a1a7f9b19a0c5e75b8c6d8d87dd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.CreateMeshesFromSTL </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theFileName</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>an instance of <a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a> class </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="73a72dd2b3247d457e84cc743542d512"></a><!-- doxytag: member="smeshDC::smeshDC::GetSubShapesId" ref="73a72dd2b3247d457e84cc743542d512" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetSubShapesId </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theMainObject</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theListOfSubObjects</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="c58d54d598efd8a04016374d9ec44f20"></a><!-- doxytag: member="smeshDC::smeshDC::GetPattern" ref="c58d54d598efd8a04016374d9ec44f20" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetPattern </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-Creates pattern
-</div>
-</div><p>
-<a class="anchor" name="ba6515d9b4002b5424eca054f53e3651"></a><!-- doxytag: member="smeshDC::smeshDC::GetEmptyCriterion" ref="ba6515d9b4002b5424eca054f53e3651" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetEmptyCriterion </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH.Filter.Criterion </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="d33640d1175a81d55932d21c3f1725fd"></a><!-- doxytag: member="smeshDC::smeshDC::GetCriterion" ref="d33640d1175a81d55932d21c3f1725fd" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetCriterion </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CritType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Compare</em> = <code>FT_EqualTo</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Treshold</em> = <code>""</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>UnaryOp</em> = <code>FT_Undefined</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>BinaryOp</em> = <code>FT_Undefined</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementType</em> </td><td>is the type of elements(NODE, EDGE, FACE, VOLUME) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>CritType</em> </td><td>is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. ) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Compare</em> </td><td>belong to {FT_LessThan, FT_MoreThan, FT_EqualTo} </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Treshold</em> </td><td>is threshold value (range of ids as string, shape, numeric) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>UnaryOp</em> </td><td>is FT_LogicalNOT or FT_Undefined </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>BinaryOp</em> </td><td>is binary logical operation FT_LogicalAND, FT_LogicalOR or FT_Undefined(must be for the last criterion in criteria) </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH.Filter.Criterion </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="547c7463acea82f6802261ff0f403820"></a><!-- doxytag: member="smeshDC::smeshDC::GetFilter" ref="547c7463acea82f6802261ff0f403820" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetFilter </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>elementType</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>CritType</em> = <code>FT_Undefined</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Compare</em> = <code>FT_EqualTo</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>Treshold</em> = <code>""</code>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>UnaryOp</em> = <code>FT_Undefined</code></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>elementType</em> </td><td>is the type of elements in the group </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>CritType</em> </td><td>is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. ) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Compare</em> </td><td>belong to {FT_LessThan, FT_MoreThan, FT_EqualTo} </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>Treshold</em> </td><td>is threshold value (range of id ids as string, shape, numeric) </td></tr>
- <tr><td valign="top"></td><td valign="top"><em>UnaryOp</em> </td><td>is FT_LogicalNOT or FT_Undefined </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_Filter </dd></dl>
-
-</div>
-</div><p>
-<a class="anchor" name="a40eee73fe02962d0365c131cb16eca7"></a><!-- doxytag: member="smeshDC::smeshDC::GetFunctor" ref="a40eee73fe02962d0365c131cb16eca7" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.smeshDC.GetFunctor </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>self</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>theCriterion</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-<dl compact><dt><b>Parameters:</b></dt><dd>
- <table border="0" cellspacing="2" cellpadding="0">
- <tr><td valign="top"></td><td valign="top"><em>theCrierion</em> </td><td>is FT_...; functor type </td></tr>
- </table>
-</dl>
-<dl compact><dt><b>Returns:</b></dt><dd>SMESH_NumericalFunctor </dd></dl>
-
-</div>
-</div><p>
-<hr><h2>Field Documentation</h2>
-<a class="anchor" name="4eb4abcdb87e8fd7d57e41ae2f0a1f5c"></a><!-- doxytag: member="smeshDC::smeshDC::geompyD" ref="4eb4abcdb87e8fd7d57e41ae2f0a1f5c" args="" -->
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-<!doctype html public "-//w3c//dtd html 4.0 transitional//en">
-<html>
-<head>
- <meta http-equiv="Content-Type" content="text/html; charset=iso-8859-1">
- <meta name="GENERATOR" content="Mozilla/4.73 [en] (WinNT; I) [Netscape]">
- <title>Main Page</title>
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-</head>
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-
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-<!-- Generated by Doxygen 1.4.7 -->
-<h1>Package smesh</h1>
-<p>
-<p>
-For available methods and classes please see documentation of
-<a class="el" href="namespacesmeshDC.html">smeshDC</a> package.
-All methods of smeshDC package are accessible via smesh namespace,
-for example "mesh = smesh.Mesh(shape, name)".
-<p>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Variables</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">tuple </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmesh.html#6e041b9ca898fefe3ea0abafeed4aff2">smesh</a> = salome.lcc.FindOrLoadComponent("FactoryServer", "SMESH")</td></tr>
-
-</table>
-<hr><h2>Variable Documentation</h2>
-<a class="anchor" name="6e041b9ca898fefe3ea0abafeed4aff2"></a><!-- doxytag: member="smesh::smesh" ref="6e041b9ca898fefe3ea0abafeed4aff2" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">tuple <a class="el" href="namespacesmesh.html#6e041b9ca898fefe3ea0abafeed4aff2">smesh.smesh</a> = salome.lcc.FindOrLoadComponent("FactoryServer", "SMESH")<code> [static]</code> </td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
-
-<p>
-
-</div>
-</div><p>
-</DIV>
-<DIV class="div-footer">
-Generated on Thu Jun 21 13:26:39 2007 for SALOME - SMESH - v.4.0.0 by <A href="http://www.doxygen.org/index.html"><img src="doxygen.png" alt="doxygen" align="middle" border="0"></A> 1.4.7</DIV>
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-<!doctype html public "-//w3c//dtd html 4.0 transitional//en">
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-<head>
- <meta http-equiv="Content-Type" content="text/html; charset=iso-8859-1">
- <meta name="GENERATOR" content="Mozilla/4.73 [en] (WinNT; I) [Netscape]">
- <title>Main Page</title>
-<link href="doxygen.css" rel="stylesheet" type="text/css">
-<link href="tabs.css" rel="stylesheet" type="text/css">
-</head>
-<body>
-
-</body>
-</html>
-<!-- Generated by Doxygen 1.4.7 -->
-<h1>Package smeshDC</h1>
-<p>
-<table border="0" cellpadding="0" cellspacing="0">
-<tr><td></td></tr>
-<tr><td colspan="2"><br><h2>Data Structures</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1smeshDC.html">smeshDC</a></td></tr>
-
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Algorithm.html">Mesh_Algorithm</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Mother class to define algorithm, recommended to don't use directly. <a href="classsmeshDC_1_1Mesh__Algorithm.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment.html">Mesh_Segment</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a segment 1D algorithm for discretization. <a href="classsmeshDC_1_1Mesh__Segment.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__CompositeSegment.html">Mesh_CompositeSegment</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a segment 1D algorithm for discretization. <a href="classsmeshDC_1_1Mesh__CompositeSegment.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Segment__Python.html">Mesh_Segment_Python</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a segment 1D algorithm for discretization with python function. <a href="classsmeshDC_1_1Mesh__Segment__Python.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Triangle.html">Mesh_Triangle</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a triangle 2D algorithm. <a href="classsmeshDC_1_1Mesh__Triangle.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Quadrangle.html">Mesh_Quadrangle</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a quadrangle 2D algorithm. <a href="classsmeshDC_1_1Mesh__Quadrangle.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Tetrahedron.html">Mesh_Tetrahedron</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a tetrahedron 3D algorithm. <a href="classsmeshDC_1_1Mesh__Tetrahedron.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Hexahedron.html">Mesh_Hexahedron</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a hexahedron 3D algorithm. <a href="classsmeshDC_1_1Mesh__Hexahedron.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Netgen.html">Mesh_Netgen</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a NETGEN-based 2D or 3D algorithm that need no discrete boundary (i.e. <a href="classsmeshDC_1_1Mesh__Netgen.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection1D.html">Mesh_Projection1D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a projection 1D algorithm. <a href="classsmeshDC_1_1Mesh__Projection1D.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection2D.html">Mesh_Projection2D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a projection 2D algorithm. <a href="classsmeshDC_1_1Mesh__Projection2D.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Projection3D.html">Mesh_Projection3D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a projection 3D algorithm. <a href="classsmeshDC_1_1Mesh__Projection3D.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__Prism3D.html">Mesh_Prism3D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a 3D extrusion algorithm. <a href="classsmeshDC_1_1Mesh__Prism3D.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh__RadialPrism3D.html">Mesh_RadialPrism3D</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a Radial Prism 3D algorithm. <a href="classsmeshDC_1_1Mesh__RadialPrism3D.html#_details">More...</a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">class </td><td class="memItemRight" valign="bottom"><a class="el" href="classsmeshDC_1_1Mesh.html">Mesh</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Class to define a mesh. <a href="classsmeshDC_1_1Mesh.html#_details">More...</a><br></td></tr>
-<tr><td colspan="2"><br><h2>Functions</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#77e81fcdcad4ae78d1742a9b3fcce17e">GetName</a></td></tr>
-
-<tr><td class="mdescLeft"> </td><td class="mdescRight">Gets object name. <a href="#77e81fcdcad4ae78d1742a9b3fcce17e"></a><br></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#3acd2894e05c10d68008d96002621164">SetName</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">def </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#e95246982a965040a02c573066a8196e">TreatHypoStatus</a></td></tr>
-
-<tr><td colspan="2"><br><h2>Variables</h2></td></tr>
-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#f49588f8e1034367434a54957435b7ea">noNETGENPlugin</a> = 0</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#f49588f8e1034367434a54957435b7ea">noNETGENPlugin</a> = 1</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#fcd10952f4e87878b85f48b0b225372f">REGULAR</a> = 1</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#955814fbbff4cdc590cd03dbbb859927">PYTHON</a> = 2</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#118f33758b4f4725cc68db7aebd34083">FULL_NETGEN</a> = 6</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#fd5b5cedbc611e37e599f437c575ae36">POINT</a> = <a class="el" href="namespacesmeshDC.html#fd5b5cedbc611e37e599f437c575ae36">SMESH_MeshEditor.POINT</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#b9611ddbe9d93a2d4760a7de092cfd1f">AXIS</a> = <a class="el" href="namespacesmeshDC.html#b9611ddbe9d93a2d4760a7de092cfd1f">SMESH_MeshEditor.AXIS</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#92fd2c2fd43b6ce9f16f89ba7626742c">PLANE</a> = <a class="el" href="namespacesmeshDC.html#92fd2c2fd43b6ce9f16f89ba7626742c">SMESH_MeshEditor.PLANE</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#e8fab2e03b1a8d462378fe74c57de619">LAPLACIAN_SMOOTH</a> = <a class="el" href="namespacesmeshDC.html#e8fab2e03b1a8d462378fe74c57de619">SMESH_MeshEditor.LAPLACIAN_SMOOTH</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top"> </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#676e25a560cffbde266e642411de6c89">CENTROIDAL_SMOOTH</a> = <a class="el" href="namespacesmeshDC.html#676e25a560cffbde266e642411de6c89">SMESH_MeshEditor.CENTROIDAL_SMOOTH</a></td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#f13ac029f6502c7c30cf9d57eb799a1b">VeryCoarse</a> = 0</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#926afa25436fb731b6ad7402f054bb9a">Coarse</a> = 1</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#b434de550c6237c4896761aa23b9eac3">Moderate</a> = 2</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#8633ea7354db60e8ba8bf538280be54a">Fine</a> = 3</td></tr>
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-<tr><td class="memItemLeft" nowrap align="right" valign="top">int </td><td class="memItemRight" valign="bottom"><a class="el" href="namespacesmeshDC.html#8a359232ccf0e37f34296dc3c74fca2c">Custom</a> = 5</td></tr>
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-</table>
-<hr><h2>Function Documentation</h2>
-<a class="anchor" name="77e81fcdcad4ae78d1742a9b3fcce17e"></a><!-- doxytag: member="smeshDC::GetName" ref="77e81fcdcad4ae78d1742a9b3fcce17e" args="" -->
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- <td class="memname">def smeshDC.GetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>obj</em> </td>
- <td> ) </td>
- <td width="100%"></td>
- </tr>
- </table>
-</div>
-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="3acd2894e05c10d68008d96002621164"></a><!-- doxytag: member="smeshDC::SetName" ref="3acd2894e05c10d68008d96002621164" args="" -->
-<div class="memitem">
-<div class="memproto">
- <table class="memname">
- <tr>
- <td class="memname">def smeshDC.SetName </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>obj</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>name</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
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-<div class="memdoc">
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-<p>
-
-</div>
-</div><p>
-<a class="anchor" name="e95246982a965040a02c573066a8196e"></a><!-- doxytag: member="smeshDC::TreatHypoStatus" ref="e95246982a965040a02c573066a8196e" args="" -->
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- <td class="memname">def smeshDC.TreatHypoStatus </td>
- <td>(</td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>status</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>hypName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>geomName</em>, </td>
- </tr>
- <tr>
- <td class="paramkey"></td>
- <td></td>
- <td class="paramtype"> </td>
- <td class="paramname"> <em>isAlgo</em></td><td> </td>
- </tr>
- <tr>
- <td></td>
- <td>)</td>
- <td></td><td></td><td width="100%"></td>
- </tr>
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-<p>
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-<hr><h2>Variable Documentation</h2>
-<a class="anchor" name="f49588f8e1034367434a54957435b7ea"></a><!-- doxytag: member="smeshDC::noNETGENPlugin" ref="f49588f8e1034367434a54957435b7ea" args="" -->
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- <td class="memname">int <a class="el" href="namespacesmeshDC.html#f49588f8e1034367434a54957435b7ea">smeshDC.noNETGENPlugin</a> = 0<code> [static]</code> </td>
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-<a class="anchor" name="f49588f8e1034367434a54957435b7ea"></a><!-- doxytag: member="smeshDC::noNETGENPlugin" ref="f49588f8e1034367434a54957435b7ea" args="" -->
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- <td class="memname">int <a class="el" href="namespacesmeshDC.html#f49588f8e1034367434a54957435b7ea">smeshDC.noNETGENPlugin</a> = 1<code> [static]</code> </td>
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-<a class="anchor" name="fcd10952f4e87878b85f48b0b225372f"></a><!-- doxytag: member="smeshDC::REGULAR" ref="fcd10952f4e87878b85f48b0b225372f" args="" -->
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- <td class="memname">int <a class="el" href="namespacesmeshDC.html#fcd10952f4e87878b85f48b0b225372f">smeshDC.REGULAR</a> = 1<code> [static]</code> </td>
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-<a class="anchor" name="955814fbbff4cdc590cd03dbbb859927"></a><!-- doxytag: member="smeshDC::PYTHON" ref="955814fbbff4cdc590cd03dbbb859927" args="" -->
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- <td class="memname">int <a class="el" href="namespacesmeshDC.html#955814fbbff4cdc590cd03dbbb859927">smeshDC.PYTHON</a> = 2<code> [static]</code> </td>
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-<a class="anchor" name="e50ede87044d2daa26c4f139fe696c53"></a><!-- doxytag: member="smeshDC::COMPOSITE" ref="e50ede87044d2daa26c4f139fe696c53" args="" -->
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href="../adding_quadratic_nodes_and_elements.htm"><b>1</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../grouping_elements.htm"><b>4</b></a> </nobr><br><nobr>addition <a href="../files/cutting_quadrangles.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../mesh.htm"><b>3</b></a> </nobr><br><nobr>additional <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/about_hypotheses.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../files/constructing_meshes.htm"><b>4</b></a> <a href="../files/running_smesh_module.htm"><b>5</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>6</b></a> <a href="../selection_filter_library.htm"><b>7</b></a> </nobr><br><nobr>additionally <a href="../files/smoothing.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>addnode</b></a> <br><a href="../grouping_elements.htm"><b>addobject</b></a> <br><a href="../modifying_meshes.htm"><b>addpolygonalface</b></a> <br><a href="../modifying_meshes.htm"><b>addpolyhedralvolume</b></a> <br><nobr>addtostudy <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../quality_controls.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> <a href="../viewing_meshes.htm"><b>6</b></a> <a href="../transforming_meshes.htm"><b>7</b></a> </nobr><br><nobr>addtostudyinfather <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../grouping_elements.htm"><b>4</b></a> <a href="../viewing_meshes.htm"><b>5</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>addvolume</b></a> <br><nobr>adjacent <a href="../files/displacing_nodes.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>3</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>4</b></a> <a href="../files/minimum_angle.htm"><b>5</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>6</b></a> </nobr><br><a href="../files/smoothing.htm"><b>adjust</b></a> <br><a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>adjustable</b></a> <br><nobr>advanced <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/viewing_mesh_info.htm"><b>2</b></a> </nobr><br><nobr><a name="bms_AF"></a><a name="subkey_AF"></a>afilter <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><nobr>afiltermgr <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../grouping_elements.htm"><b>3</b></a> </nobr><br><nobr>afunctor <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../grouping_elements.htm"><b>3</b></a> </nobr><br><a name="bms_AG"></a><a name="subkey_AG"></a><a href="../grouping_elements.htm"><b>ageomgroup1</b></a> <br><a href="../grouping_elements.htm"><b>ageomgroup2</b></a> <br><nobr>agroup <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../grouping_elements.htm"><b>agroup1</b></a> <br><a href="../grouping_elements.htm"><b>agroup2</b></a> <br><a href="../grouping_elements.htm"><b>agroup3</b></a> <br><a href="../grouping_elements.htm"><b>agroup4</b></a> <br><a href="../grouping_elements.htm"><b>agroup5</b></a> <br><a href="../grouping_elements.htm"><b>agroupelemids</b></a> <br><a href="../quality_controls.htm"><b>agroupf</b></a> <br><a href="../grouping_elements.htm"><b>agroupmain</b></a> <br><a href="../quality_controls.htm"><b>agroupn</b></a> <br><a href="../grouping_elements.htm"><b>agroupres</b></a> <br><a href="../grouping_elements.htm"><b>agrouptool</b></a> <br><a name="bms_AI"></a><a name="subkey_AI"></a><a href="../files/arithmetic_1d.htm"><b>ai</b></a> <br><a name="bms_AL"></a><a name="subkey_AL"></a><a href="../modifying_meshes.htm"><b>al</b></a> <br><nobr>algo <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../transforming_meshes.htm"><b>4</b></a> </nobr><br><nobr>algo1 <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../quality_controls.htm"><b>2</b></a> <a href="../viewing_meshes.htm"><b>3</b></a> </nobr><br><nobr>algo2 <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../quality_controls.htm"><b>2</b></a> <a href="../viewing_meshes.htm"><b>3</b></a> </nobr><br><nobr>algorithm <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshing_algorithms.htm"><b>2</b></a> <a href="../files/about_hypotheses.htm"><b>3</b></a> <a href="../extrusion_along_a_path.htm"><b>4</b></a> <a href="../defining_hypotheses_tui.htm"><b>5</b></a> <a href="../constructing_meshes.htm"><b>6</b></a> <a href="../files/constructing_meshes.htm"><b>7</b></a> <a href="../files/area_of_elements.htm"><b>8</b></a> <a href="../files/sewing_meshes.htm"><b>9</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>10</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>11</b></a> <a href="../pattern_mapping.htm"><b>12</b></a> <a href="../transforming_meshes.htm"><b>13</b></a> </nobr><br><nobr>algorithms <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../constructing_meshes.htm"><b>4</b></a> <a href="../about_viewing_meshes.htm"><b>5</b></a> <a href="../files/constructing_submeshes.htm"><b>6</b></a> <a href="../files/constructing_meshes.htm"><b>7</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>8</b></a> <a href="../mesh.htm"><b>9</b></a> <a href="../grouping_elements.htm"><b>10</b></a> </nobr><br><a href="../files/about_hypotheses.htm"><b>allow</b></a> <br><nobr>allowed <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>2</b></a> <a href="../pattern_mapping.htm"><b>3</b></a> </nobr><br><nobr>allowing <a href="../files/importing_and_exporting_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><nobr>allows <a href="../adding_quadratic_nodes_and_elements.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> <a href="../files/cutting_quadrangles.htm"><b>3</b></a> <a href="../files/creating_groups.htm"><b>4</b></a> <a href="../files/constructing_submeshes.htm"><b>5</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>6</b></a> <a href="../files/arithmetic_1d.htm"><b>7</b></a> <a href="../files/translation.htm"><b>8</b></a> <a href="../files/symmetry.htm"><b>9</b></a> <a href="../files/smoothing.htm"><b>10</b></a> <a href="../files/sewing_meshes.htm"><b>11</b></a> <a href="../files/rotation.htm"><b>12</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>13</b></a> <a href="../files/merging_nodes.htm"><b>14</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>15</b></a> <a href="../mesh.htm"><b>16</b></a> <a href="../merge_elements.htm"><b>17</b></a> <a href="../files/vtk_3d_viewer.htm"><b>18</b></a> <a href="../files/using_operations_on_groups.htm"><b>19</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>20</b></a> </nobr><br><nobr>along <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../files/smoothing.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../modifying_meshes.htm"><b>5</b></a> <a href="../files/vtk_3d_viewer.htm"><b>6</b></a> </nobr><br><a href="../files/constructing_meshes.htm"><b>alternative</b></a> <br><nobr>alternatively <a href="../adding_quadratic_nodes_and_elements.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> </nobr><br><a href="../files/smoothing.htm"><b>always</b></a> <br><nobr><a name="bms_AM"></a><a name="subkey_AM"></a>amesheditor <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><a href="../borders_at_multi-connection.htm"><b>amount</b></a> <br><a name="bms_AN"></a><a name="subkey_AN"></a><a href="../files/arithmetic_1d.htm"><b>analytic</b></a> <br><nobr>aneditor <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../transforming_meshes.htm"><b>3</b></a> </nobr><br><nobr>angle <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../clipping.htm"><b>2</b></a> <a href="../files/cutting_quadrangles.htm"><b>3</b></a> <a href="../files/skew.htm"><b>4</b></a> <a href="../files/rotation.htm"><b>5</b></a> <a href="../files/minimum_angle.htm"><b>6</b></a> <a href="../quality_controls.htm"><b>7</b></a> <a href="../mesh.htm"><b>8</b></a> <a href="../files/warp.htm"><b>9</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>10</b></a> <a href="../revolution.htm"><b>11</b></a> </nobr><br><a href="../transforming_meshes.htm"><b>angle180</b></a> <br><a href="../modifying_meshes.htm"><b>angle45</b></a> <br><a href="../extrusion_along_a_path.htm"><b>angled</b></a> <br><nobr>angles <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../files/skew.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> </nobr><br><a href="../extrusion_along_a_path.htm"><b>angular</b></a> <br><a href="../extrusion_along_a_path.htm"><b>angularity</b></a> <br><nobr>anids <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>anodeid1</b></a> <br><a href="../modifying_meshes.htm"><b>anodeid2</b></a> <br><a href="../modifying_meshes.htm"><b>anodeid3</b></a> <br><a href="../modifying_meshes.htm"><b>anodeid4</b></a> <br><nobr>another <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><nobr>any <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>3</b></a> <a href="../files/displacing_nodes.htm"><b>4</b></a> <a href="../files/creating_groups.htm"><b>5</b></a> <a href="../files/constructing_meshes.htm"><b>6</b></a> <a href="../files/smoothing.htm"><b>7</b></a> <a href="../pattern_mapping.htm"><b>8</b></a> <a href="../grouping_elements.htm"><b>9</b></a> </nobr><br><a name="bms_AP"></a><a name="subkey_AP"></a><a href="../files/constructing_meshes.htm"><b>apparent</b></a> <br><nobr>appear <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>3</b></a> <a href="../files/editing_groups.htm"><b>4</b></a> <a href="../files/displacing_nodes.htm"><b>5</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>6</b></a> <a href="../files/cutting_quadrangles.htm"><b>7</b></a> <a href="../files/constructing_submeshes.htm"><b>8</b></a> <a href="../files/constructing_meshes.htm"><b>9</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>10</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>11</b></a> <a href="../files/translation.htm"><b>12</b></a> <a href="../files/symmetry.htm"><b>13</b></a> <a href="../files/rotation.htm"><b>14</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>15</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>16</b></a> <a href="../files/merging_nodes.htm"><b>17</b></a> <a href="../pattern_mapping.htm"><b>18</b></a> <a href="../files/using_operations_on_groups.htm"><b>19</b></a> <a href="../files/uniting_two_triangles.htm"><b>20</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>21</b></a> <a href="../revolution.htm"><b>22</b></a> </nobr><br><a href="../about_viewing_meshes.htm"><b>appeared</b></a> <br><nobr>append <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><nobr>applicable <a href="../files/aspect_ratio.htm"><b>1</b></a> <a href="../selection_filter_library.htm"><b>2</b></a> </nobr><br><nobr>application <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> </nobr><br><nobr>applied <a href="../aspect_ratio_3d.htm"><b>1</b></a> <a href="../files/length_of_edges.htm"><b>2</b></a> <a href="../files/constructing_submeshes.htm"><b>3</b></a> <a href="../files/constructing_meshes.htm"><b>4</b></a> <a href="../files/aspect_ratio.htm"><b>5</b></a> <a href="../files/arithmetic_1d.htm"><b>6</b></a> <a href="../files/area_of_elements.htm"><b>7</b></a> <a href="../files/taper.htm"><b>8</b></a> <a href="../files/smoothing.htm"><b>9</b></a> <a href="../files/skew.htm"><b>10</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>11</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>12</b></a> <a href="../files/minimum_angle.htm"><b>13</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>14</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>15</b></a> <a href="../files/warp.htm"><b>16</b></a> <a href="../volume.htm"><b>17</b></a> <a href="../selection_filter_library.htm"><b>18</b></a> </nobr><br><nobr>apply <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../deleting_groups.htm"><b>4</b></a> <a href="../defining_hypotheses_tui.htm"><b>5</b></a> <a href="../clipping.htm"><b>6</b></a> <a href="../aspect_ratio_3d.htm"><b>7</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>8</b></a> <a href="../files/length_of_edges.htm"><b>9</b></a> <a href="../files/editing_groups.htm"><b>10</b></a> <a href="../files/displacing_nodes.htm"><b>11</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>12</b></a> <a href="../files/cutting_quadrangles.htm"><b>13</b></a> <a href="../files/creating_groups.htm"><b>14</b></a> <a href="../files/constructing_meshes.htm"><b>15</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>16</b></a> <a href="../files/aspect_ratio.htm"><b>17</b></a> <a href="../files/area_of_elements.htm"><b>18</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>19</b></a> <a href="../files/taper.htm"><b>20</b></a> <a href="../files/symmetry.htm"><b>21</b></a> <a href="../files/smoothing.htm"><b>22</b></a> <a href="../files/skew.htm"><b>23</b></a> <a href="../files/sewing_meshes.htm"><b>24</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>25</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>26</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>27</b></a> <a href="../files/minimum_angle.htm"><b>28</b></a> <a href="../pattern_mapping.htm"><b>29</b></a> <a href="../modifying_meshes.htm"><b>30</b></a> <a href="../mesh.htm"><b>31</b></a> <a href="../merge_elements.htm"><b>32</b></a> <a href="../files/warp.htm"><b>33</b></a> <a href="../files/using_operations_on_groups.htm"><b>34</b></a> <a href="../files/uniting_two_triangles.htm"><b>35</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>36</b></a> <a href="../volume.htm"><b>37</b></a> <a href="../revolution.htm"><b>38</b></a> </nobr><br><nobr>applying <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> <a 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href="../files/warp.htm"><b>bisector</b></a> <br><a href="../selection_filter_library.htm"><b>bit</b></a> <br><a name="bms_BL"></a><a name="subkey_BL"></a><a href="../about_viewing_meshes.htm"><b>black</b></a> <br><nobr>block <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><a href="../borders_at_multi-connection.htm"><b>blue</b></a> <br><nobr><a name="bms_BM"></a><a name="subkey_BM"></a>bmp <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><a name="bms_BO"></a><a name="subkey_BO"></a><a href="../files/arithmetic_1d.htm"><b>bog</b></a> <br><a href="../files/using_operations_on_groups.htm"><b>boolean</b></a> <br><nobr>border <a href="../files/sewing_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><nobr>borders <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>2</b></a> <a href="../borders_at_multi-connection.htm"><b>3</b></a> <a href="../files/sewing_meshes.htm"><b>4</b></a> <a href="../quality_controls.htm"><b>5</b></a> <a href="../mesh.htm"><b>6</b></a> <a href="../free_edges.htm"><b>7</b></a> <a href="../free_borders.htm"><b>8</b></a> <a href="../transforming_meshes.htm"><b>9</b></a> </nobr><br><nobr>both <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> <a href="../files/smoothing.htm"><b>3</b></a> <a href="../files/using_operations_on_groups.htm"><b>4</b></a> </nobr><br><nobr>bottom <a href="../files/running_smesh_module.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><a href="../pattern_mapping.htm"><b>bound</b></a> <br><a href="../pattern_mapping.htm"><b>boundaries</b></a> <br><nobr>boundary <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../files/creating_groups.htm"><b>2</b></a> <a href="../files/smoothing.htm"><b>3</b></a> <a href="../files/sewing_meshes.htm"><b>4</b></a> <a href="../pattern_mapping.htm"><b>5</b></a> </nobr><br><a href="../files/about_meshes.htm"><b>bounded</b></a> <br><a href="../files/about_meshes.htm"><b>bounding</b></a> <br><a href="../files/about_meshes.htm"><b>bounds</b></a> <br><nobr>box <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../defining_hypotheses_tui.htm"><b>4</b></a> <a href="../constructing_meshes.htm"><b>5</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>6</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>7</b></a> <a href="../files/editing_groups.htm"><b>8</b></a> <a href="../files/displacing_nodes.htm"><b>9</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>10</b></a> <a href="../files/cutting_quadrangles.htm"><b>11</b></a> <a 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-<nobr><a name="bms_TR"></a><a name="subkey_TR"></a>transformation <a href="../files/translation.htm"><b>1</b></a> <a href="../files/symmetry.htm"><b>2</b></a> <a href="../files/sewing_meshes.htm"><b>3</b></a> <a href="../files/rotation.htm"><b>4</b></a> <a href="../files/merging_nodes.htm"><b>5</b></a> </nobr><br><a href="../files/displacing_nodes.htm"><b>transformed</b></a> <br><a href="../transforming_meshes.htm"><b>transforming</b></a> <br><nobr>translate <a href="../files/translation.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><a href="../files/translation.htm"><b>translated</b></a> <br><a href="../transforming_meshes.htm"><b>translateobject</b></a> <br><nobr>translation <a href="../files/translation.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><nobr>transparency <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../transparency.htm"><b>2</b></a> </nobr><br><a href="../transparency.htm"><b>transparent</b></a> <br><a href="../transforming_meshes.htm"><b>tri_mesh</b></a> <br><a href="../defining_hypotheses_tui.htm"><b>tria</b></a> <br><a href="../defining_hypotheses_tui.htm"><b>tria_mesh</b></a> <br><nobr>triangle <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>3</b></a> <a href="../files/aspect_ratio.htm"><b>4</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>5</b></a> <a href="../files/minimum_angle.htm"><b>6</b></a> <a href="../modifying_meshes.htm"><b>7</b></a> <a href="../merge_elements.htm"><b>8</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>9</b></a> <a href="../transforming_meshes.htm"><b>10</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>triangle_mefisto</b></a> <br><nobr>triangles <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../files/length_of_edges.htm"><b>4</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>5</b></a> <a href="../files/aspect_ratio.htm"><b>6</b></a> <a href="../files/area_of_elements.htm"><b>7</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>8</b></a> <a href="../files/taper.htm"><b>9</b></a> <a href="../files/skew.htm"><b>10</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>11</b></a> <a href="../modifying_meshes.htm"><b>12</b></a> <a href="../files/vtk_3d_viewer.htm"><b>13</b></a> <a href="../files/uniting_two_triangles.htm"><b>14</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>15</b></a> <a href="../viewing_meshes.htm"><b>16</b></a> <a href="../transforming_meshes.htm"><b>17</b></a> <a href="../revolution.htm"><b>18</b></a> </nobr><br><nobr>triangular <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>2</b></a> </nobr><br><a href="../defining_hypotheses_tui.htm"><b>triangulation</b></a> <br><nobr>trias <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><a href="../files/vtk_3d_viewer.htm"><b>trihedron</b></a> <br><a href="../modifying_meshes.htm"><b>tritoquad</b></a> <br><a href="../files/constructing_meshes.htm"><b>trying</b></a> <br><a name="bms_TT"></a><a name="subkey_TT"></a><a href="../defining_hypotheses_tui.htm"><b>tt</b></a> <br><nobr><a name="bms_TU"></a><a name="subkey_TU"></a>tui <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>4</b></a> <a href="../borders_at_multi-connection.htm"><b>5</b></a> <a href="../aspect_ratio_3d.htm"><b>6</b></a> <a href="../files/length_of_edges.htm"><b>7</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>8</b></a> <a href="../files/editing_groups.htm"><b>9</b></a> <a href="../files/displacing_nodes.htm"><b>10</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>11</b></a> <a href="../files/cutting_quadrangles.htm"><b>12</b></a> <a href="../files/creating_groups.htm"><b>13</b></a> <a href="../files/constructing_submeshes.htm"><b>14</b></a> <a href="../files/constructing_meshes.htm"><b>15</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>16</b></a> <a href="../files/aspect_ratio.htm"><b>17</b></a> <a href="../files/arithmetic_1d.htm"><b>18</b></a> <a href="../files/area_of_elements.htm"><b>19</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>20</b></a> <a href="../files/translation.htm"><b>21</b></a> <a href="../files/taper.htm"><b>22</b></a> <a href="../files/symmetry.htm"><b>23</b></a> <a href="../files/smoothing.htm"><b>24</b></a> <a href="../files/skew.htm"><b>25</b></a> <a href="../files/sewing_meshes.htm"><b>26</b></a> <a href="../files/rotation.htm"><b>27</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>28</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>29</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>30</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>31</b></a> <a href="../files/minimum_angle.htm"><b>32</b></a> <a href="../files/merging_nodes.htm"><b>33</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>34</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>35</b></a> <a href="../pattern_mapping.htm"><b>36</b></a> <a href="../merge_elements.htm"><b>37</b></a> <a href="../length.htm"><b>38</b></a> <a href="../free_edges.htm"><b>39</b></a> <a href="../free_borders.htm"><b>40</b></a> <a href="../files/warp.htm"><b>41</b></a> <a href="../files/viewing_mesh_info.htm"><b>42</b></a> <a href="../files/using_operations_on_groups.htm"><b>43</b></a> <a href="../files/uniting_two_triangles.htm"><b>44</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>45</b></a> <a href="../volume.htm"><b>46</b></a> <a href="../revolution.htm"><b>47</b></a> </nobr><br><nobr><a name="bms_TW"></a><a name="subkey_TW"></a>two <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../clipping.htm"><b>4</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>5</b></a> <a href="../files/cutting_quadrangles.htm"><b>6</b></a> <a href="../files/creating_groups.htm"><b>7</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>8</b></a> <a href="../files/translation.htm"><b>9</b></a> <a href="../files/taper.htm"><b>10</b></a> <a href="../files/sewing_meshes.htm"><b>11</b></a> <a href="../files/minimum_angle.htm"><b>12</b></a> <a href="../pattern_mapping.htm"><b>13</b></a> <a href="../modifying_meshes.htm"><b>14</b></a> <a href="../grouping_elements.htm"><b>15</b></a> <a href="../files/viewing_mesh_info.htm"><b>16</b></a> <a href="../files/using_operations_on_groups.htm"><b>17</b></a> <a href="../files/uniting_two_triangles.htm"><b>18</b></a> <a href="../transforming_meshes.htm"><b>19</b></a> </nobr><br><nobr><a name="bms_TY"></a><a name="subkey_TY"></a>type <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../files/creating_groups.htm"><b>4</b></a> <a href="../files/constructing_meshes.htm"><b>5</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>6</b></a> <a href="../files/aspect_ratio.htm"><b>7</b></a> <a href="../files/arithmetic_1d.htm"><b>8</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>9</b></a> <a href="../files/sewing_meshes.htm"><b>10</b></a> <a href="../selection_filter_library.htm"><b>11</b></a> <a href="../revolution.htm"><b>12</b></a> </nobr><br><nobr>types <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>4</b></a> <a href="../files/viewing_mesh_info.htm"><b>5</b></a> </nobr><br><a href="../files/smoothing.htm"><b>typically</b></a> <br>
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-<nobr><a name="bm_U"></a><a name="subkey_U{"></a>u <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br><a name="bms_UN"></a><a name="subkey_UN"></a><a href="../selection_filter_library.htm"><b>unary</b></a> <br><a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>unassigning</b></a> <br><a href="../files/smoothing.htm"><b>uniform</b></a> <br><nobr>union <a href="../grouping_elements.htm"><b>1</b></a> <a href="../files/using_operations_on_groups.htm"><b>2</b></a> <a href="../files/uniting_two_triangles.htm"><b>3</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>4</b></a> </nobr><br><a href="../grouping_elements.htm"><b>uniongroups</b></a> <br><nobr>unite <a href="../files/sewing_meshes.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../files/uniting_two_triangles.htm"><b>3</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>4</b></a> </nobr><br><nobr>united <a href="../files/using_operations_on_groups.htm"><b>1</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>2</b></a> </nobr><br><nobr>uniting <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../files/uniting_two_triangles.htm"><b>2</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>3</b></a> </nobr><br><a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>unless</b></a> <br><a href="../files/importing_and_exporting_meshes.htm"><b>unv</b></a> <br><nobr><a name="bms_UP"></a><a name="subkey_UP"></a>up <a href="../deleting_groups.htm"><b>1</b></a> <a href="../files/displaying_nodes_numbers.htm"><b>2</b></a> <a href="../files/arithmetic_1d.htm"><b>3</b></a> </nobr><br><a href="../about_viewing_meshes.htm"><b>update</b></a> <br><nobr>updated <a href="../files/smoothing.htm"><b>1</b></a> <a href="../files/running_smesh_module.htm"><b>2</b></a> </nobr><br><nobr>updateobjbrowser <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../quality_controls.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> <a href="../viewing_meshes.htm"><b>6</b></a> <a href="../transforming_meshes.htm"><b>7</b></a> </nobr><br><a href="../selection_filter_library.htm"><b>uploaded</b></a> <br><a name="bms_US"></a><a name="subkey_US"></a><a href="../files/about_quality_controls.htm"><b>usage</b></a> <br><nobr>used <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/constructing_submeshes.htm"><b>4</b></a> <a href="../files/constructing_meshes.htm"><b>5</b></a> <a href="../files/arithmetic_1d.htm"><b>6</b></a> <a href="../files/smoothing.htm"><b>7</b></a> <a href="../files/sewing_meshes.htm"><b>8</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>9</b></a> <a href="../pattern_mapping.htm"><b>10</b></a> <a href="../files/vtk_3d_viewer.htm"><b>11</b></a> <a href="../selection_filter_library.htm"><b>12</b></a> <a href="../revolution.htm"><b>13</b></a> </nobr><br><nobr>useful <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>4</b></a> </nobr><br><nobr>user <a href="../borders_at_multi-connection.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> <a href="../files/merging_nodes.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>uses</b></a> <br><nobr>using <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../clipping.htm"><b>2</b></a> <a href="../files/sewing_meshes.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../files/vtk_3d_viewer.htm"><b>5</b></a> <a href="../files/using_operations_on_groups.htm"><b>6</b></a> <a href="../transparency.htm"><b>7</b></a> <a href="../selection_filter_library.htm"><b>8</b></a> </nobr><br><nobr>usually <a href="../files/smoothing.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br>
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-<a name="bm_V"></a><a name="subkey_V{"></a><a href="../files/about_meshes.htm"><b>v</b></a> <br><nobr><a name="bms_VA"></a><a name="subkey_VA"></a>value <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../aspect_ratio_3d.htm"><b>3</b></a> <a href="../files/aspect_ratio.htm"><b>4</b></a> <a href="../files/arithmetic_1d.htm"><b>5</b></a> <a href="../files/skew.htm"><b>6</b></a> <a href="../files/minimum_angle.htm"><b>7</b></a> <a href="../length.htm"><b>8</b></a> <a href="../viewing_meshes.htm"><b>9</b></a> <a href="../selection_filter_library.htm"><b>10</b></a> </nobr><br><nobr>values <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_hypotheses.htm"><b>2</b></a> <a href="../extrusion_along_a_path.htm"><b>3</b></a> <a href="../files/constructing_meshes.htm"><b>4</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>5</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>6</b></a> </nobr><br><a href="../files/aspect_ratio.htm"><b>varies</b></a> <br><a href="../about_viewing_meshes.htm"><b>various</b></a> <br><a name="bms_VE"></a><a name="subkey_VE"></a><a href="../files/adding_nodes_and_elements.htm"><b>ve</b></a> <br><nobr>vector <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../files/translation.htm"><b>4</b></a> <a href="../files/symmetry.htm"><b>5</b></a> <a href="../files/rotation.htm"><b>6</b></a> <a href="../modifying_meshes.htm"><b>7</b></a> <a href="../files/warp.htm"><b>8</b></a> <a href="../transforming_meshes.htm"><b>9</b></a> <a href="../revolution.htm"><b>10</b></a> </nobr><br><nobr>vertex <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> </nobr><br><nobr>vertices <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../pattern_mapping.htm"><b>3</b></a> </nobr><br><nobr>very <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>2</b></a> </nobr><br><nobr><a name="bms_VI"></a><a name="subkey_VI"></a>via <a href="../files/vtk_3d_viewer.htm"><b>1</b></a> <a href="../files/viewing_mesh_info.htm"><b>2</b></a> <a href="../selection_filter_library.htm"><b>3</b></a> </nobr><br><nobr>view <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> <a href="../files/viewing_mesh_info.htm"><b>3</b></a> </nobr><br><nobr>viewer <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../deleting_groups.htm"><b>3</b></a> <a href="../aspect_ratio_3d.htm"><b>4</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>5</b></a> <a href="../about_viewing_meshes.htm"><b>6</b></a> <a href="../files/length_of_edges.htm"><b>7</b></a> <a href="../files/displaying_nodes_numbers.htm"><b>8</b></a> <a href="../files/displacing_nodes.htm"><b>9</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>10</b></a> <a href="../files/cutting_quadrangles.htm"><b>11</b></a> <a href="../files/creating_groups.htm"><b>12</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>13</b></a> <a href="../files/aspect_ratio.htm"><b>14</b></a> <a href="../files/area_of_elements.htm"><b>15</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>16</b></a> <a href="../files/taper.htm"><b>17</b></a> <a href="../files/smoothing.htm"><b>18</b></a> <a href="../files/skew.htm"><b>19</b></a> <a href="../files/sewing_meshes.htm"><b>20</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>21</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>22</b></a> <a href="../files/minimum_angle.htm"><b>23</b></a> <a href="../files/warp.htm"><b>24</b></a> <a href="../files/vtk_3d_viewer.htm"><b>25</b></a> <a href="../files/uniting_two_triangles.htm"><b>26</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>27</b></a> <a href="../volume.htm"><b>28</b></a> <a href="../selection_filter_library.htm"><b>29</b></a> <a href="../revolution.htm"><b>30</b></a> </nobr><br><nobr>viewing <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../viewing_meshes.htm"><b>2</b></a> </nobr><br><a href="../clipping.htm"><b>views</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>visible</b></a> <br><a href="../files/about_quality_controls.htm"><b>visual</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>visualize</b></a> <br><a name="bms_VK"></a><a name="subkey_VK"></a><a href="../aspect_ratio_3d.htm"><b>vk</b></a> <br><nobr><a name="bms_VO"></a><a name="subkey_VO"></a>volume <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshing_algorithms.htm"><b>2</b></a> <a href="../files/about_meshes.htm"><b>3</b></a> <a href="../files/about_hypotheses.htm"><b>4</b></a> <a href="../defining_hypotheses_tui.htm"><b>5</b></a> <a href="../aspect_ratio_3d.htm"><b>6</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>7</b></a> <a href="../quality_controls.htm"><b>8</b></a> <a href="../modifying_meshes.htm"><b>9</b></a> <a href="../mesh.htm"><b>10</b></a> <a href="../volume.htm"><b>11</b></a> </nobr><br><nobr>volumes <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../files/about_hypotheses.htm"><b>3</b></a> <a href="../display_entity.htm"><b>4</b></a> <a href="../files/creating_groups.htm"><b>5</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>6</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>7</b></a> <a href="../files/viewing_mesh_info.htm"><b>8</b></a> <a href="../viewing_meshes.htm"><b>9</b></a> <a href="../transforming_meshes.htm"><b>10</b></a> <a href="../selection_filter_library.htm"><b>11</b></a> </nobr><br><nobr><a name="bms_VT"></a><a name="subkey_VT"></a>vtk <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><nobr><a name="bms_VX"></a><a name="subkey_VX"></a>vxy <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../transforming_meshes.htm"><b>3</b></a> </nobr><br>
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-<nobr><a name="bm_Z"></a><a name="subkey_Z{"></a>z <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../clipping.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>z0</b></a> <br><a name="bms_ZE"></a><a name="subkey_ZE"></a><a href="../pattern_mapping.htm"><b>zero</b></a> <br><a name="bms_ZO"></a><a name="subkey_ZO"></a><a href="../files/vtk_3d_viewer.htm"><b>zoom</b></a> <br><br><br></p>
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href="../presentation.htm"><b>5</b></a> <a href="../pattern_mapping.htm"><b>6</b></a> <a href="../selection_filter_library.htm"><b>7</b></a> </nobr><br><nobr>clipping <a href="../clipping.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> </nobr><br><nobr>close <a href="../deleting_groups.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br><nobr>closed <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br><a href="../files/aspect_ratio.htm"><b>closer</b></a> <br><a name="bms_CO"></a><a name="subkey_CO"></a><a href="../files/sewing_meshes.htm"><b>co</b></a> <br><a href="../files/arithmetic_1d.htm"><b>coarse</b></a> <br><nobr>coincident <a href="../files/merging_nodes.htm"><b>1</b></a> <a href="../merge_elements.htm"><b>2</b></a> </nobr><br><a href="../merge_elements.htm"><b>coincides</b></a> <br><nobr>color <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/creating_groups.htm"><b>2</b></a> <a href="../files/vtk_3d_viewer.htm"><b>3</b></a> </nobr><br><nobr>colored <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../files/length_of_edges.htm"><b>3</b></a> <a href="../files/aspect_ratio.htm"><b>4</b></a> <a href="../files/area_of_elements.htm"><b>5</b></a> <a href="../files/taper.htm"><b>6</b></a> <a href="../files/skew.htm"><b>7</b></a> <a href="../files/minimum_angle.htm"><b>8</b></a> <a href="../files/warp.htm"><b>9</b></a> <a href="../volume.htm"><b>10</b></a> </nobr><br><a href="../files/about_quality_controls.htm"><b>coloring</b></a> <br><nobr>colors <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/creating_groups.htm"><b>2</b></a> </nobr><br><nobr>combine <a href="../display_entity.htm"><b>1</b></a> <a href="../presentation.htm"><b>2</b></a> <a href="../selection_filter_library.htm"><b>3</b></a> </nobr><br><a href="../files/length_of_edges.htm"><b>combining</b></a> <br><nobr>common <a href="../files/diagonal_iversion_of_elements.htm"><b>1</b></a> <a href="../files/uniting_two_triangles.htm"><b>2</b></a> <a href="../selection_filter_library.htm"><b>3</b></a> </nobr><br><nobr>compare <a href="../files/arithmetic_1d.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br><a href="../merge_elements.htm"><b>completely</b></a> <br><a href="../adding_quadratic_nodes_and_elements.htm"><b>complex</b></a> <br><nobr>component <a href="../files/running_smesh_module.htm"><b>1</b></a> <a href="../mesh.htm"><b>2</b></a> </nobr><br><nobr>compose <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>3</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>4</b></a> </nobr><br><nobr>composed <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/skew.htm"><b>2</b></a> </nobr><br><nobr>composing <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshing_algorithms.htm"><b>2</b></a> <a href="../about_viewing_meshes.htm"><b>3</b></a> <a href="../files/displaying_nodes_numbers.htm"><b>4</b></a> <a href="../files/arithmetic_1d.htm"><b>5</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>6</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>7</b></a> </nobr><br><nobr>compound <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>computation <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../files/constructing_submeshes.htm"><b>2</b></a> <a href="../files/constructing_meshes.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> </nobr><br><nobr>compute <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../about_viewing_meshes.htm"><b>3</b></a> <a href="../files/constructing_meshes.htm"><b>4</b></a> <a href="../quality_controls.htm"><b>5</b></a> <a href="../modifying_meshes.htm"><b>6</b></a> <a href="../grouping_elements.htm"><b>7</b></a> <a href="../viewing_meshes.htm"><b>8</b></a> <a href="../transforming_meshes.htm"><b>9</b></a> </nobr><br><nobr>computed <a href="../files/sewing_meshes.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>computes</b></a> <br><nobr>computing <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../grouping_elements.htm"><b>3</b></a> </nobr><br><a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>concepts</b></a> <br><nobr>conditions <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../files/creating_groups.htm"><b>2</b></a> </nobr><br><nobr>confirm <a href="../files/editing_groups.htm"><b>1</b></a> <a href="../files/cutting_quadrangles.htm"><b>2</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>3</b></a> <a href="../files/smoothing.htm"><b>4</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>5</b></a> <a href="../files/using_operations_on_groups.htm"><b>6</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>7</b></a> </nobr><br><a href="../files/creating_groups.htm"><b>confirmation</b></a> <br><nobr>conform <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>3</b></a> <a href="../transforming_meshes.htm"><b>4</b></a> </nobr><br><a href="../files/aspect_ratio.htm"><b>conformity</b></a> <br><a href="../files/cutting_quadrangles.htm"><b>connect</b></a> <br><nobr>connected <a href="../files/cutting_quadrangles.htm"><b>1</b></a> <a href="../files/smoothing.htm"><b>2</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>connecting</b></a> <br><nobr>connection <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>2</b></a> <a href="../borders_at_multi-connection.htm"><b>3</b></a> <a href="../quality_controls.htm"><b>4</b></a> <a href="../mesh.htm"><b>5</b></a> </nobr><br><nobr>connections <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../quality_controls.htm"><b>2</b></a> </nobr><br><a href="../pattern_mapping.htm"><b>connectivity</b></a> <br><nobr>consider <a href="../files/constructing_meshes.htm"><b>1</b></a> <a href="../files/aspect_ratio.htm"><b>2</b></a> </nobr><br><nobr>considered <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../files/aspect_ratio.htm"><b>3</b></a> <a href="../files/sewing_meshes.htm"><b>4</b></a> </nobr><br><a href="../adding_quadratic_nodes_and_elements.htm"><b>consist</b></a> <br><nobr>consisting <a href="../borders_at_multiconnection_2d.htm"><b>1</b></a> <a href="../borders_at_multi-connection.htm"><b>2</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>3</b></a> <a href="../files/aspect_ratio.htm"><b>4</b></a> <a href="../files/area_of_elements.htm"><b>5</b></a> <a href="../files/taper.htm"><b>6</b></a> <a href="../grouping_elements.htm"><b>7</b></a> <a href="../free_edges.htm"><b>8</b></a> <a href="../free_borders.htm"><b>9</b></a> </nobr><br><nobr>consists <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/length_of_edges.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/constructing_submeshes.htm"><b>4</b></a> <a href="../files/constructing_meshes.htm"><b>5</b></a> <a href="../files/arithmetic_1d.htm"><b>6</b></a> <a href="../files/minimum_angle.htm"><b>7</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>8</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>9</b></a> </nobr><br><a href="../files/viewing_mesh_info.htm"><b>console</b></a> <br><a href="../files/arithmetic_1d.htm"><b>constant</b></a> <br><nobr>construct <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../files/constructing_submeshes.htm"><b>2</b></a> <a href="../files/constructing_meshes.htm"><b>3</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>4</b></a> </nobr><br><nobr>constructed <a href="../files/constructing_submeshes.htm"><b>1</b></a> <a href="../files/constructing_meshes.htm"><b>2</b></a> <a href="../files/arithmetic_1d.htm"><b>3</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>4</b></a> </nobr><br><nobr>constructing <a href="../files/constructing_submeshes.htm"><b>1</b></a> <a href="../files/constructing_meshes.htm"><b>2</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>3</b></a> </nobr><br><nobr>construction <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../files/constructing_submeshes.htm"><b>2</b></a> <a href="../files/constructing_meshes.htm"><b>3</b></a> <a href="../files/arithmetic_1d.htm"><b>4</b></a> </nobr><br><nobr>contain <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>2</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>3</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>4</b></a> <a href="../pattern_mapping.htm"><b>5</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>6</b></a> </nobr><br><nobr>containing <a href="../files/importing_and_exporting_meshes.htm"><b>1</b></a> <a href="../files/constructing_submeshes.htm"><b>2</b></a> <a href="../files/constructing_meshes.htm"><b>3</b></a> </nobr><br><nobr>contains <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/cutting_quadrangles.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/constructing_submeshes.htm"><b>4</b></a> <a href="../files/constructing_meshes.htm"><b>5</b></a> <a href="../files/smoothing.htm"><b>6</b></a> <a href="../pattern_mapping.htm"><b>7</b></a> </nobr><br><nobr>contents <a href="../deleting_groups.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><a href="../files/smoothing.htm"><b>continues</b></a> <br><nobr>contour <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br><a href="../files/uniting_a_set_of_triangles.htm"><b>contrast</b></a> <br><nobr>control <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>2</b></a> <a href="../borders_at_multi-connection.htm"><b>3</b></a> <a href="../aspect_ratio_3d.htm"><b>4</b></a> <a href="../files/length_of_edges.htm"><b>5</b></a> <a href="../files/aspect_ratio.htm"><b>6</b></a> <a href="../files/area_of_elements.htm"><b>7</b></a> <a href="../files/taper.htm"><b>8</b></a> <a href="../files/skew.htm"><b>9</b></a> <a href="../files/minimum_angle.htm"><b>10</b></a> <a href="../mesh.htm"><b>11</b></a> <a href="../length.htm"><b>12</b></a> <a href="../free_edges.htm"><b>13</b></a> <a href="../free_borders.htm"><b>14</b></a> <a href="../files/warp.htm"><b>15</b></a> <a href="../volume.htm"><b>16</b></a> </nobr><br><nobr>controls <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../about_viewing_meshes.htm"><b>3</b></a> <a href="../files/length_of_edges.htm"><b>4</b></a> <a href="../files/cutting_quadrangles.htm"><b>5</b></a> <a href="../files/aspect_ratio.htm"><b>6</b></a> <a href="../files/area_of_elements.htm"><b>7</b></a> <a href="../files/taper.htm"><b>8</b></a> <a href="../files/skew.htm"><b>9</b></a> <a href="../files/minimum_angle.htm"><b>10</b></a> <a href="../quality_controls.htm"><b>11</b></a> <a href="../files/warp.htm"><b>12</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>13</b></a> <a href="../volume.htm"><b>14</b></a> </nobr><br><a href="../files/smoothing.htm"><b>converge</b></a> <br><a href="../files/arithmetic_1d.htm"><b>conversion</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>coordinate</b></a> <br><nobr>coordinates <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/displacing_nodes.htm"><b>2</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../files/vtk_3d_viewer.htm"><b>5</b></a> </nobr><br><nobr>copy <a href="../files/translation.htm"><b>1</b></a> <a href="../files/symmetry.htm"><b>2</b></a> <a href="../files/rotation.htm"><b>3</b></a> <a href="../transforming_meshes.htm"><b>4</b></a> <a href="../selection_filter_library.htm"><b>5</b></a> </nobr><br><nobr>corner <a href="../adding_quadratic_nodes_and_elements.htm"><b>1</b></a> <a href="../files/warp.htm"><b>2</b></a> </nobr><br><nobr>corners <a href="../files/cutting_quadrangles.htm"><b>1</b></a> <a href="../files/smoothing.htm"><b>2</b></a> <a href="../files/warp.htm"><b>3</b></a> </nobr><br><nobr>corresponding <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>3</b></a> <a href="../files/translation.htm"><b>4</b></a> <a href="../files/sewing_meshes.htm"><b>5</b></a> <a href="../quality_controls.htm"><b>6</b></a> <a href="../pattern_mapping.htm"><b>7</b></a> <a href="../modifying_meshes.htm"><b>8</b></a> <a href="../selection_filter_library.htm"><b>9</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>cos</b></a> <br><a href="../modifying_meshes.htm"><b>cosal</b></a> <br><nobr>could <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>2</b></a> </nobr><br><a href="../pattern_mapping.htm"><b>counterclockwise</b></a> <br><a href="../files/sewing_meshes.htm"><b>counting</b></a> <br><a href="../files/constructing_meshes.htm"><b>course</b></a> <br><nobr><a name="bms_CR"></a><a name="subkey_CR"></a>create <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../constructing_meshes.htm"><b>4</b></a> <a href="../clipping.htm"><b>5</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>6</b></a> <a href="../about_viewing_meshes.htm"><b>7</b></a> <a href="../files/creating_groups.htm"><b>8</b></a> <a href="../files/constructing_submeshes.htm"><b>9</b></a> <a href="../files/constructing_meshes.htm"><b>10</b></a> <a href="../files/arithmetic_1d.htm"><b>11</b></a> <a href="../files/translation.htm"><b>12</b></a> <a href="../files/symmetry.htm"><b>13</b></a> <a href="../files/rotation.htm"><b>14</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>15</b></a> <a href="../files/merging_nodes.htm"><b>16</b></a> <a href="../quality_controls.htm"><b>17</b></a> <a href="../modifying_meshes.htm"><b>18</b></a> <a href="../grouping_elements.htm"><b>19</b></a> <a href="../files/using_operations_on_groups.htm"><b>20</b></a> <a href="../transforming_meshes.htm"><b>21</b></a> <a href="../selection_filter_library.htm"><b>22</b></a> </nobr><br><a href="../defining_hypotheses_tui.htm"><b>createanddisplaygo</b></a> <br><nobr>createarea <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../quality_controls.htm"><b>createaspectratio</b></a> <br><a href="../quality_controls.htm"><b>createaspectratio3d</b></a> <br><nobr>created <a href="../files/creating_groups.htm"><b>1</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>2</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../mesh.htm"><b>5</b></a> <a href="../files/warp.htm"><b>6</b></a> <a href="../selection_filter_library.htm"><b>7</b></a> </nobr><br><nobr>createequalto <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><nobr>createfilter <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><nobr>createfiltermanager <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../grouping_elements.htm"><b>3</b></a> </nobr><br><a href="../quality_controls.htm"><b>createfreeborders</b></a> <br><a href="../quality_controls.htm"><b>createfreeedges</b></a> <br><nobr>creategroup <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../grouping_elements.htm"><b>3</b></a> </nobr><br><a href="../grouping_elements.htm"><b>creategroupfromgeom</b></a> <br><nobr>createhypothesis <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../quality_controls.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> <a href="../viewing_meshes.htm"><b>6</b></a> </nobr><br><a href="../quality_controls.htm"><b>createlength</b></a> <br><a href="../quality_controls.htm"><b>createlength2d</b></a> <br><nobr>createlessthan <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><nobr>createmesh <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../quality_controls.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> <a href="../viewing_meshes.htm"><b>6</b></a> </nobr><br><nobr>createminimumangle <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><nobr>createmorethan <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../quality_controls.htm"><b>createmulticonnection</b></a> <br><a href="../quality_controls.htm"><b>createmulticonnection2d</b></a> <br><nobr>creates <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> <a href="../selection_filter_library.htm"><b>3</b></a> </nobr><br><a href="../quality_controls.htm"><b>createskew</b></a> <br><a href="../quality_controls.htm"><b>createtaper</b></a> <br><a href="../quality_controls.htm"><b>createvolume3d</b></a> <br><a href="../quality_controls.htm"><b>createwarping</b></a> <br><nobr>creating <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../files/editing_groups.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../files/warp.htm"><b>5</b></a> </nobr><br><nobr>creation <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>2</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../files/using_operations_on_groups.htm"><b>5</b></a> </nobr><br><nobr>criteria <a href="../mesh.htm"><b>1</b></a> <a href="../selection_filter_library.htm"><b>2</b></a> </nobr><br><nobr>criterion <a href="../aspect_ratio_3d.htm"><b>1</b></a> <a href="../files/length_of_edges.htm"><b>2</b></a> <a href="../files/cutting_quadrangles.htm"><b>3</b></a> <a href="../files/creating_groups.htm"><b>4</b></a> <a href="../files/aspect_ratio.htm"><b>5</b></a> <a href="../files/area_of_elements.htm"><b>6</b></a> <a href="../files/taper.htm"><b>7</b></a> <a href="../files/skew.htm"><b>8</b></a> <a href="../files/minimum_angle.htm"><b>9</b></a> <a href="../quality_controls.htm"><b>10</b></a> <a href="../length.htm"><b>11</b></a> <a href="../grouping_elements.htm"><b>12</b></a> <a href="../files/warp.htm"><b>13</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>14</b></a> <a href="../volume.htm"><b>15</b></a> <a href="../selection_filter_library.htm"><b>16</b></a> </nobr><br><nobr>cross <a href="../clipping.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> <a href="../files/warp.htm"><b>3</b></a> </nobr><br><br><br></p><p class="ftsbody" align="center"><a href="whlstf3.htm" target="_self" title="previous search group"><b>>></b></a>
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-<a name="bms_CU"></a><a name="subkey_CU"></a><a href="../files/about_meshing_algorithms.htm"><b>cubic</b></a> <br><nobr>current <a href="../files/constructing_meshes.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>3</b></a> <a href="../selection_filter_library.htm"><b>4</b></a> </nobr><br><nobr>currently <a href="../files/cutting_quadrangles.htm"><b>1</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>2</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>3</b></a> </nobr><br><nobr>curve <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../files/arithmetic_1d.htm"><b>3</b></a> </nobr><br><nobr>curvilinear <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../files/arithmetic_1d.htm"><b>2</b></a> </nobr><br><nobr>cut <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../files/cutting_quadrangles.htm"><b>3</b></a> <a href="../files/arithmetic_1d.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> <a href="../files/using_operations_on_groups.htm"><b>6</b></a> <a href="../transforming_meshes.htm"><b>7</b></a> </nobr><br><a href="../grouping_elements.htm"><b>cutgroups</b></a> <br><nobr>cutting <a href="../files/cutting_quadrangles.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><a name="bms_CY"></a><a name="subkey_CY"></a><a href="../modifying_meshes.htm"><b>cylinder</b></a> <br>
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-<a name="bm_D"></a><a name="subkey_D{"></a><a href="../files/arithmetic_1d.htm"><b>d</b></a> <br><a name="bms_DE"></a><a name="subkey_DE"></a><a href="../files/about_meshes.htm"><b>dealing</b></a> <br><a href="../modifying_meshes.htm"><b>def</b></a> <br><nobr>default <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../about_viewing_meshes.htm"><b>2</b></a> <a href="../files/constructing_meshes.htm"><b>3</b></a> <a href="../presentation.htm"><b>4</b></a> <a href="../files/vtk_3d_viewer.htm"><b>5</b></a> <a href="../transparency.htm"><b>6</b></a> <a href="../selection_filter_library.htm"><b>7</b></a> </nobr><br><nobr>define <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../constructing_meshes.htm"><b>4</b></a> <a href="../clipping.htm"><b>5</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>6</b></a> <a href="../files/creating_groups.htm"><b>7</b></a> <a href="../files/constructing_submeshes.htm"><b>8</b></a> <a href="../files/constructing_meshes.htm"><b>9</b></a> <a href="../files/arithmetic_1d.htm"><b>10</b></a> <a href="../files/sewing_meshes.htm"><b>11</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>12</b></a> <a href="../modifying_meshes.htm"><b>13</b></a> <a href="../files/vtk_3d_viewer.htm"><b>14</b></a> <a href="../transforming_meshes.htm"><b>15</b></a> </nobr><br><nobr>defined <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/aspect_ratio.htm"><b>4</b></a> <a href="../files/sewing_meshes.htm"><b>5</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>6</b></a> <a href="../pattern_mapping.htm"><b>7</b></a> </nobr><br><nobr>defining <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/arithmetic_1d.htm"><b>4</b></a> </nobr><br><nobr>definite <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../files/cutting_quadrangles.htm"><b>3</b></a> <a href="../files/creating_groups.htm"><b>4</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>5</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>6</b></a> <a href="../files/arithmetic_1d.htm"><b>7</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>8</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>9</b></a> <a href="../mesh.htm"><b>10</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>11</b></a> </nobr><br><nobr>definition <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/arithmetic_1d.htm"><b>2</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>3</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>4</b></a> </nobr><br><nobr>deflection <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../files/arithmetic_1d.htm"><b>3</b></a> <a href="../mesh.htm"><b>4</b></a> </nobr><br><a href="../defining_hypotheses_tui.htm"><b>deflection1d</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>deformed</b></a> <br><a href="../files/aspect_ratio.htm"><b>degree</b></a> <br><a href="../clipping.htm"><b>degrees</b></a> <br><nobr>delete <a href="../deleting_groups.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../selection_filter_library.htm"><b>3</b></a> </nobr><br><nobr>deleted <a href="../files/removing_nodes_and_elements.htm"><b>1</b></a> <a href="../free_edges.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>deletediag</b></a> <br><a href="../selection_filter_library.htm"><b>deletes</b></a> <br><a href="../deleting_groups.htm"><b>deleting</b></a> <br><nobr>deletion <a href="../files/removing_nodes_and_elements.htm"><b>1</b></a> <a href="../files/uniting_two_triangles.htm"><b>2</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>density</b></a> <br><nobr>depending <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>2</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>3</b></a> </nobr><br><nobr>depends <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/about_hypotheses.htm"><b>2</b></a> <a href="../files/constructing_meshes.htm"><b>3</b></a> </nobr><br><a href="../pattern_mapping.htm"><b>describe</b></a> <br><nobr>described <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> </nobr><br><a href="../pattern_mapping.htm"><b>describes</b></a> <br><a href="../pattern_mapping.htm"><b>description</b></a> <br><a href="../files/merging_nodes.htm"><b>desirable</b></a> <br><a href="../files/running_smesh_module.htm"><b>desktop</b></a> <br><nobr>destined <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../mesh.htm"><b>3</b></a> </nobr><br><a href="../files/about_hypotheses.htm"><b>detail</b></a> <br><a href="../about_viewing_meshes.htm"><b>detailed</b></a> <br><a href="../files/merging_nodes.htm"><b>detect</b></a> <br><a name="bms_DH"></a><a name="subkey_DH"></a><a href="../modifying_meshes.htm"><b>dh</b></a> <br><nobr><a name="bms_DI"></a><a name="subkey_DI"></a>diagonal <a href="../files/diagonal_iversion_of_elements.htm"><b>1</b></a> <a href="../files/cutting_quadrangles.htm"><b>2</b></a> <a href="../files/taper.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> </nobr><br><nobr>dialog <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>4</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>5</b></a> <a href="../files/editing_groups.htm"><b>6</b></a> <a href="../files/displacing_nodes.htm"><b>7</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>8</b></a> <a href="../files/cutting_quadrangles.htm"><b>9</b></a> <a href="../files/constructing_submeshes.htm"><b>10</b></a> <a href="../files/constructing_meshes.htm"><b>11</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>12</b></a> <a href="../files/arithmetic_1d.htm"><b>13</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>14</b></a> <a href="../files/translation.htm"><b>15</b></a> <a href="../files/symmetry.htm"><b>16</b></a> <a href="../files/smoothing.htm"><b>17</b></a> <a href="../files/sewing_meshes.htm"><b>18</b></a> <a href="../files/rotation.htm"><b>19</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>20</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>21</b></a> <a href="../files/merging_nodes.htm"><b>22</b></a> <a href="../pattern_mapping.htm"><b>23</b></a> <a href="../merge_elements.htm"><b>24</b></a> <a href="../files/using_operations_on_groups.htm"><b>25</b></a> <a href="../files/uniting_two_triangles.htm"><b>26</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>27</b></a> <a href="../revolution.htm"><b>28</b></a> </nobr><br><a href="../files/aspect_ratio.htm"><b>diameter</b></a> <br><a href="../adding_quadratic_nodes_and_elements.htm"><b>differ</b></a> <br><nobr>difference <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> </nobr><br><nobr>different <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../files/creating_groups.htm"><b>2</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>3</b></a> <a href="../files/sewing_meshes.htm"><b>4</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>5</b></a> </nobr><br><a href="../selection_filter_library.htm"><b>differently</b></a> <br><a href="../files/arithmetic_1d.htm"><b>differs</b></a> <br><nobr>dimension <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../aspect_ratio_3d.htm"><b>3</b></a> <a href="../files/constructing_meshes.htm"><b>4</b></a> <a href="../files/viewing_mesh_info.htm"><b>5</b></a> <a href="../revolution.htm"><b>6</b></a> </nobr><br><a href="../files/about_meshes.htm"><b>direct</b></a> <br><a href="../files/sewing_meshes.htm"><b>directed</b></a> <br><nobr>direction <a href="../pattern_mapping.htm"><b>1</b></a> <a href="../files/warp.htm"><b>2</b></a> </nobr><br><a href="../files/smoothing.htm"><b>directly</b></a> <br><nobr>dirstruct <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><nobr>discretisation <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>discretization <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> </nobr><br><nobr>discretized <a href="../extrusion.htm"><b>1</b></a> <a href="../revolution.htm"><b>2</b></a> </nobr><br><a href="../files/displacing_nodes.htm"><b>displace</b></a> <br><a href="../files/displacing_nodes.htm"><b>displaced</b></a> <br><nobr>display <a href="../display_entity.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../aspect_ratio_3d.htm"><b>3</b></a> <a href="../about_viewing_meshes.htm"><b>4</b></a> <a href="../files/length_of_edges.htm"><b>5</b></a> <a href="../files/displaying_nodes_numbers.htm"><b>6</b></a> <a href="../files/cutting_quadrangles.htm"><b>7</b></a> <a href="../files/creating_groups.htm"><b>8</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>9</b></a> <a href="../files/aspect_ratio.htm"><b>10</b></a> <a href="../files/area_of_elements.htm"><b>11</b></a> <a href="../files/taper.htm"><b>12</b></a> <a href="../files/smoothing.htm"><b>13</b></a> <a href="../files/skew.htm"><b>14</b></a> <a href="../files/minimum_angle.htm"><b>15</b></a> <a href="../presentation.htm"><b>16</b></a> <a href="../files/warp.htm"><b>17</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>18</b></a> <a href="../volume.htm"><b>19</b></a> </nobr><br><nobr>displayed <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../borders_at_multi-connection.htm"><b>2</b></a> <a href="../aspect_ratio_3d.htm"><b>3</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>4</b></a> <a href="../about_viewing_meshes.htm"><b>5</b></a> <a href="../files/length_of_edges.htm"><b>6</b></a> <a href="../files/displacing_nodes.htm"><b>7</b></a> <a href="../files/cutting_quadrangles.htm"><b>8</b></a> <a href="../files/constructing_submeshes.htm"><b>9</b></a> <a href="../files/constructing_meshes.htm"><b>10</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>11</b></a> <a href="../files/aspect_ratio.htm"><b>12</b></a> <a href="../files/area_of_elements.htm"><b>13</b></a> <a href="../files/taper.htm"><b>14</b></a> <a href="../files/skew.htm"><b>15</b></a> <a href="../files/minimum_angle.htm"><b>16</b></a> <a href="../free_borders.htm"><b>17</b></a> <a href="../files/warp.htm"><b>18</b></a> <a href="../files/vtk_3d_viewer.htm"><b>19</b></a> <a href="../files/viewing_mesh_info.htm"><b>20</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>21</b></a> <a href="../volume.htm"><b>22</b></a> </nobr><br><a href="../files/displaying_nodes_numbers.htm"><b>displaying</b></a> <br><nobr>distance <a href="../clipping.htm"><b>1</b></a> <a href="../files/arithmetic_1d.htm"><b>2</b></a> <a href="../pattern_mapping.htm"><b>3</b></a> <a href="../files/warp.htm"><b>4</b></a> <a href="../files/vtk_3d_viewer.htm"><b>5</b></a> </nobr><br><a href="../files/creating_groups.htm"><b>distinguishes</b></a> <br><a href="../files/smoothing.htm"><b>distortion</b></a> <br><a href="../files/smoothing.htm"><b>distortions</b></a> <br><a href="../files/arithmetic_1d.htm"><b>distribution</b></a> <br><a href="../files/arithmetic_1d.htm"><b>divide</b></a> <br><a href="../files/arithmetic_1d.htm"><b>divided</b></a> <br><a name="bms_DO"></a><a name="subkey_DO"></a><a href="../files/adding_nodes_and_elements.htm"><b>does</b></a> <br><a href="../pattern_mapping.htm"><b>domain</b></a> <br><nobr>don <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/constructing_meshes.htm"><b>2</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>3</b></a> <a href="../files/vtk_3d_viewer.htm"><b>4</b></a> </nobr><br><a href="../adding_quadratic_nodes_and_elements.htm"><b>double</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>downward</b></a> <br><a name="bms_DR"></a><a name="subkey_DR"></a><a href="../modifying_meshes.htm"><b>dr</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>drag</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>drawn</b></a> <br><nobr><a name="bms_DU"></a><a name="subkey_DU"></a>dump <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><a name="bms_DX"></a><a name="subkey_DX"></a><a href="../modifying_meshes.htm"><b>dx</b></a> <br><a name="bms_DY"></a><a name="subkey_DY"></a><a href="../modifying_meshes.htm"><b>dy</b></a> <br>
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href="../files/cutting_quadrangles.htm"><b>7</b></a> <a href="../files/aspect_ratio.htm"><b>8</b></a> <a href="../files/arithmetic_1d.htm"><b>9</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>10</b></a> <a href="../files/smoothing.htm"><b>11</b></a> <a href="../files/sewing_meshes.htm"><b>12</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>13</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>14</b></a> <a href="../quality_controls.htm"><b>15</b></a> <a href="../pattern_mapping.htm"><b>16</b></a> <a href="../modifying_meshes.htm"><b>17</b></a> <a href="../length.htm"><b>18</b></a> <a href="../grouping_elements.htm"><b>19</b></a> <a href="../files/warp.htm"><b>20</b></a> <a href="../files/uniting_two_triangles.htm"><b>21</b></a> <a href="../viewing_meshes.htm"><b>22</b></a> <a href="../transforming_meshes.htm"><b>23</b></a> </nobr><br><nobr>edges <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshing_algorithms.htm"><b>2</b></a> <a href="../files/about_meshes.htm"><b>3</b></a> <a href="../files/about_hypotheses.htm"><b>4</b></a> <a href="../display_entity.htm"><b>5</b></a> <a href="../defining_hypotheses_tui.htm"><b>6</b></a> <a href="../constructing_meshes.htm"><b>7</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>8</b></a> <a href="../borders_at_multi-connection.htm"><b>9</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>10</b></a> <a href="../about_viewing_meshes.htm"><b>11</b></a> <a href="../files/length_of_edges.htm"><b>12</b></a> <a href="../files/displacing_nodes.htm"><b>13</b></a> <a href="../files/creating_groups.htm"><b>14</b></a> <a href="../files/constructing_meshes.htm"><b>15</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>16</b></a> <a href="../files/aspect_ratio.htm"><b>17</b></a> <a href="../files/arithmetic_1d.htm"><b>18</b></a> <a 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-<a name="bms_EF"></a><a name="subkey_EF"></a><a href="../files/uniting_a_set_of_triangles.htm"><b>effect</b></a> <br><nobr><a name="bms_EI"></a><a name="subkey_EI"></a>either <a href="../files/sewing_meshes.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> </nobr><br><nobr><a name="bms_EL"></a><a name="subkey_EL"></a>element <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/about_hypotheses.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../defining_hypotheses_tui.htm"><b>4</b></a> <a href="../aspect_ratio_3d.htm"><b>5</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>6</b></a> <a href="../files/cutting_quadrangles.htm"><b>7</b></a> <a href="../files/creating_groups.htm"><b>8</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>9</b></a> <a href="../files/aspect_ratio.htm"><b>10</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>11</b></a> <a href="../files/smoothing.htm"><b>12</b></a> <a 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href="../free_edges.htm"><b>43</b></a> <a href="../files/warp.htm"><b>44</b></a> <a href="../files/viewing_mesh_info.htm"><b>45</b></a> <a href="../files/using_operations_on_groups.htm"><b>46</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>47</b></a> <a href="../volume.htm"><b>48</b></a> <a href="../transforming_meshes.htm"><b>49</b></a> <a href="../selection_filter_library.htm"><b>50</b></a> <a href="../revolution.htm"><b>51</b></a> </nobr><br><nobr>else <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../pattern_mapping.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../grouping_elements.htm"><b>4</b></a> </nobr><br><a name="bms_EN"></a><a name="subkey_EN"></a><a href="../selection_filter_library.htm"><b>enables</b></a> <br><a href="../selection_filter_library.htm"><b>enabling</b></a> <br><a href="../files/constructing_submeshes.htm"><b>encapsulate</b></a> <br><a href="../pattern_mapping.htm"><b>encountered</b></a> <br><nobr>end <a href="../files/about_hypotheses.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../files/arithmetic_1d.htm"><b>3</b></a> <a href="../files/sewing_meshes.htm"><b>4</b></a> <a href="../mesh.htm"><b>5</b></a> <a href="../selection_filter_library.htm"><b>6</b></a> </nobr><br><nobr>ending <a href="../files/translation.htm"><b>1</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>2</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>ends</b></a> <br><a href="../files/sewing_meshes.htm"><b>enough</b></a> <br><nobr>enter <a href="../files/importing_and_exporting_meshes.htm"><b>1</b></a> <a href="../files/displacing_nodes.htm"><b>2</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>3</b></a> <a href="../files/creating_groups.htm"><b>4</b></a> <a href="../files/uniting_two_triangles.htm"><b>5</b></a> </nobr><br><nobr>entities <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> </nobr><br><nobr>entity <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../display_entity.htm"><b>2</b></a> <a href="../about_viewing_meshes.htm"><b>3</b></a> <a href="../selection_filter_library.htm"><b>4</b></a> </nobr><br><nobr><a name="bms_EQ"></a><a name="subkey_EQ"></a>equal <a href="../files/arithmetic_1d.htm"><b>1</b></a> <a href="../files/smoothing.htm"><b>2</b></a> <a href="../files/sewing_meshes.htm"><b>3</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>4</b></a> <a href="../pattern_mapping.htm"><b>5</b></a> <a href="../selection_filter_library.htm"><b>6</b></a> </nobr><br><a href="../files/sewing_meshes.htm"><b>equally</b></a> <br><a href="../files/arithmetic_1d.htm"><b>equidistant</b></a> <br><a href="../files/aspect_ratio.htm"><b>equilateral</b></a> <br><a name="bms_ER"></a><a name="subkey_ER"></a><a href="../about_viewing_meshes.htm"><b>erase</b></a> <br><nobr><a name="bms_ET"></a><a name="subkey_ET"></a>etc <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../files/cutting_quadrangles.htm"><b>3</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>4</b></a> </nobr><br><nobr><a name="bms_EV"></a><a name="subkey_EV"></a>even <a href="../files/constructing_meshes.htm"><b>1</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>2</b></a> </nobr><br><a href="../pattern_mapping.htm"><b>eventual</b></a> <br><a href="../files/warp.htm"><b>every</b></a> <br><a href="../files/constructing_meshes.htm"><b>everything</b></a> <br><nobr><a name="bms_EX"></a><a name="subkey_EX"></a>example <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../aspect_ratio_3d.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/constructing_meshes.htm"><b>4</b></a> <a href="../pattern_mapping.htm"><b>5</b></a> <a href="../files/using_operations_on_groups.htm"><b>6</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>exceed</b></a> <br><a href="../files/smoothing.htm"><b>exceeded</b></a> <br><nobr>except <a href="../files/sewing_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><a href="../files/about_hypotheses.htm"><b>exist</b></a> <br><a href="../files/constructing_meshes.htm"><b>existence</b></a> <br><nobr>existing <a href="../files/editing_groups.htm"><b>1</b></a> <a href="../files/cutting_quadrangles.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>4</b></a> <a href="../pattern_mapping.htm"><b>5</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>6</b></a> <a href="../selection_filter_library.htm"><b>7</b></a> </nobr><br><a href="../files/arithmetic_1d.htm"><b>exponent</b></a> <br><nobr>export <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>2</b></a> <a href="../mesh.htm"><b>3</b></a> </nobr><br><a href="../files/importing_and_exporting_meshes.htm"><b>exportation</b></a> <br><a href="../files/importing_and_exporting_meshes.htm"><b>exported</b></a> <br><a href="../files/importing_and_exporting_meshes.htm"><b>exporting</b></a> <br><a href="../constructing_meshes.htm"><b>exportmed</b></a> <br><nobr>exports <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/vtk_3d_viewer.htm"><b>2</b></a> </nobr><br><a href="../files/vtk_3d_viewer.htm"><b>extended</b></a> <br><a href="../files/warp.htm"><b>extends</b></a> <br><a href="../files/arithmetic_1d.htm"><b>extremely</b></a> <br><a href="../clipping.htm"><b>extremities</b></a> <br><nobr>extruded <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../revolution.htm"><b>4</b></a> </nobr><br><nobr>extrusion <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../extrusion.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../transforming_meshes.htm"><b>4</b></a> </nobr><br><nobr>extrusionalongpathobject <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>extrusionsweepobject</b></a> <br>
-<br><br>
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href="../files/warp.htm"><b>15</b></a> <a href="../transforming_meshes.htm"><b>16</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>face_1</b></a> <br><a href="../modifying_meshes.htm"><b>face_2</b></a> <br><nobr>face1 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../transforming_meshes.htm"><b>3</b></a> </nobr><br><a href="../quality_controls.htm"><b>facelist</b></a> <br><nobr>faces <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../files/about_hypotheses.htm"><b>3</b></a> <a href="../display_entity.htm"><b>4</b></a> <a href="../defining_hypotheses_tui.htm"><b>5</b></a> <a href="../constructing_meshes.htm"><b>6</b></a> <a href="../borders_at_multi-connection.htm"><b>7</b></a> <a href="../aspect_ratio_3d.htm"><b>8</b></a> <a href="../about_viewing_meshes.htm"><b>9</b></a> <a href="../files/creating_groups.htm"><b>10</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>11</b></a> <a href="../files/arithmetic_1d.htm"><b>12</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>13</b></a> <a href="../files/sewing_meshes.htm"><b>14</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>15</b></a> <a href="../quality_controls.htm"><b>16</b></a> <a href="../pattern_mapping.htm"><b>17</b></a> <a href="../modifying_meshes.htm"><b>18</b></a> <a href="../mesh.htm"><b>19</b></a> <a href="../grouping_elements.htm"><b>20</b></a> <a href="../free_borders.htm"><b>21</b></a> <a href="../files/viewing_mesh_info.htm"><b>22</b></a> <a href="../viewing_meshes.htm"><b>23</b></a> <a href="../transforming_meshes.htm"><b>24</b></a> <a href="../selection_filter_library.htm"><b>25</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>facesrotate</b></a> <br><a href="../modifying_meshes.htm"><b>facessmooth</b></a> <br><a href="../modifying_meshes.htm"><b>facestritoquad</b></a> <br><nobr>facex11 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>facex21 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>facey111 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>facey121 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>facez11 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>facez12 <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>factor <a href="../files/cutting_quadrangles.htm"><b>1</b></a> <a href="../files/arithmetic_1d.htm"><b>2</b></a> </nobr><br><nobr>factoryserver <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../quality_controls.htm"><b>3</b></a> <a href="../modifying_meshes.htm"><b>4</b></a> <a href="../grouping_elements.htm"><b>5</b></a> <a href="../viewing_meshes.htm"><b>6</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>failed</b></a> <br><a href="../files/sewing_meshes.htm"><b>far</b></a> <br><a href="../extrusion_along_a_path.htm"><b>fashion</b></a> <br><a href="../files/smoothing.htm"><b>faster</b></a> <br><a name="bms_FE"></a><a name="subkey_FE"></a><a href="../files/creating_groups.htm"><b>feature</b></a> <br><nobr><a name="bms_FI"></a><a name="subkey_FI"></a>field <a href="../adding_quadratic_nodes_and_elements.htm"><b>1</b></a> <a href="../files/displacing_nodes.htm"><b>2</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>3</b></a> <a href="../files/creating_groups.htm"><b>4</b></a> <a href="../files/smoothing.htm"><b>5</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>6</b></a> <a 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</nobr><br><nobr>get <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../clipping.htm"><b>3</b></a> <a href="../about_viewing_meshes.htm"><b>4</b></a> <a href="../files/constructing_meshes.htm"><b>5</b></a> <a href="../files/viewing_mesh_info.htm"><b>6</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>getalgorithm</b></a> <br><a href="../quality_controls.htm"><b>getborders</b></a> <br><nobr>getelementsid <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>geterrorcode</b></a> <br><a href="../constructing_meshes.htm"><b>getid</b></a> <br><a href="../grouping_elements.htm"><b>getlistofid</b></a> <br><nobr>getmaxelementarea <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>getmaxelementvolume <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>getmesh <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><nobr>getmesheditor <a href="../quality_controls.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../transforming_meshes.htm"><b>3</b></a> </nobr><br><nobr>getname <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>getnumberofsegments <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>getpattern</b></a> <br><a href="../pattern_mapping.htm"><b>getting</b></a> <br><a name="bms_GG"></a><a name="subkey_GG"></a><a href="../defining_hypotheses_tui.htm"><b>gg</b></a> <br><nobr><a name="bms_GI"></a><a name="subkey_GI"></a>given <a href="../files/arithmetic_1d.htm"><b>1</b></a> <a href="../files/sewing_meshes.htm"><b>2</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>3</b></a> </nobr><br><nobr>gives <a href="../files/viewing_mesh_info.htm"><b>1</b></a> <a href="../selection_filter_library.htm"><b>2</b></a> </nobr><br><a name="bms_GL"></a><a name="subkey_GL"></a><a href="../files/vtk_3d_viewer.htm"><b>global</b></a> <br><a name="bms_GO"></a><a name="subkey_GO"></a><a href="../modifying_meshes.htm"><b>going</b></a> <br><a href="../files/smoothing.htm"><b>good</b></a> <br><a href="../pattern_mapping.htm"><b>got</b></a> <br><a name="bms_GR"></a><a name="subkey_GR"></a><a href="../files/vtk_3d_viewer.htm"><b>graduate</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>graduated</b></a> <br><a href="../about_viewing_meshes.htm"><b>graphically</b></a> <br><a href="../files/arithmetic_1d.htm"><b>great</b></a> <br><a href="../files/vtk_3d_viewer.htm"><b>greater</b></a> <br><nobr>greatest <a href="../aspect_ratio_3d.htm"><b>1</b></a> <a href="../files/aspect_ratio.htm"><b>2</b></a> </nobr><br><a href="../files/creating_groups.htm"><b>green</b></a> <br><nobr>group <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../deleting_groups.htm"><b>2</b></a> <a href="../files/editing_groups.htm"><b>3</b></a> <a href="../files/cutting_quadrangles.htm"><b>4</b></a> <a href="../files/creating_groups.htm"><b>5</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>6</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>7</b></a> <a href="../files/translation.htm"><b>8</b></a> <a href="../files/smoothing.htm"><b>9</b></a> <a href="../quality_controls.htm"><b>10</b></a> <a href="../modifying_meshes.htm"><b>11</b></a> <a href="../grouping_elements.htm"><b>12</b></a> <a href="../files/using_operations_on_groups.htm"><b>13</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>14</b></a> <a href="../selection_filter_library.htm"><b>15</b></a> </nobr><br><a href="../files/using_operations_on_groups.htm"><b>group1</b></a> <br><a href="../files/using_operations_on_groups.htm"><b>group12</b></a> <br><a href="../files/using_operations_on_groups.htm"><b>group12a</b></a> <br><a href="../files/using_operations_on_groups.htm"><b>group12b</b></a> <br><a href="../files/using_operations_on_groups.htm"><b>group2</b></a> <br><nobr>grouping <a href="../mesh.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>grouprotate</b></a> <br><nobr>groups <a href="../deleting_groups.htm"><b>1</b></a> <a href="../files/editing_groups.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>4</b></a> <a href="../files/merging_nodes.htm"><b>5</b></a> <a href="../quality_controls.htm"><b>6</b></a> <a href="../mesh.htm"><b>7</b></a> <a href="../grouping_elements.htm"><b>8</b></a> <a href="../files/viewing_mesh_info.htm"><b>9</b></a> <a href="../files/using_operations_on_groups.htm"><b>10</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>groupsmooth</b></a> <br><a href="../transforming_meshes.htm"><b>groupsofnodes</b></a> <br><a href="../modifying_meshes.htm"><b>grouptritoquad</b></a> <br>
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href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><a href="../defining_hypotheses_tui.htm"><b>hexa_3d</b></a> <br><a href="../defining_hypotheses_tui.htm"><b>hexa3d</b></a> <br><a href="../extrusion_along_a_path.htm"><b>hexagon</b></a> <br><nobr>hexahedral <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../defining_hypotheses_tui.htm"><b>2</b></a> <a href="../constructing_meshes.htm"><b>3</b></a> </nobr><br><a href="../files/constructing_meshes.htm"><b>hexahedralization</b></a> <br><nobr>hexahedrical <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>hexahedron <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../defining_hypotheses_tui.htm"><b>3</b></a> <a href="../aspect_ratio_3d.htm"><b>4</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>5</b></a> <a 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href="../files/uniting_a_set_of_triangles.htm"><b>4</b></a> </nobr><br><nobr>highlights <a href="../borders_at_multiconnection_2d.htm"><b>1</b></a> <a href="../borders_at_multi-connection.htm"><b>2</b></a> <a href="../free_edges.htm"><b>3</b></a> <a href="../free_borders.htm"><b>4</b></a> </nobr><br><a name="bms_HM"></a><a name="subkey_HM"></a><a href="../files/aspect_ratio.htm"><b>hmax</b></a> <br><a name="bms_HO"></a><a name="subkey_HO"></a><a href="../pattern_mapping.htm"><b>holds</b></a> <br><a href="../free_edges.htm"><b>holes</b></a> <br><nobr>how <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>2</b></a> </nobr><br><a name="bms_HY"></a><a name="subkey_HY"></a><a href="../files/constructing_submeshes.htm"><b>hyp</b></a> <br><nobr>hyp1 <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../quality_controls.htm"><b>2</b></a> <a href="../viewing_meshes.htm"><b>3</b></a> </nobr><br><nobr>hyp2 <a 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href="../files/rotation.htm"><b>23</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>24</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>25</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>26</b></a> <a href="../files/merging_nodes.htm"><b>27</b></a> <a href="../pattern_mapping.htm"><b>28</b></a> <a href="../files/viewing_mesh_info.htm"><b>29</b></a> <a href="../files/using_operations_on_groups.htm"><b>30</b></a> <a href="../files/uniting_two_triangles.htm"><b>31</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>32</b></a> <a href="../selection_filter_library.htm"><b>33</b></a> <a href="../revolution.htm"><b>34</b></a> </nobr><br><a href="../files/running_smesh_module.htm"><b>menus</b></a> <br><nobr>merge <a href="../files/sewing_meshes.htm"><b>1</b></a> <a href="../files/merging_nodes.htm"><b>2</b></a> <a href="../merge_elements.htm"><b>3</b></a> <a href="../transforming_meshes.htm"><b>4</b></a> </nobr><br><nobr>merged <a 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href="../clipping.htm"><b>10</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>11</b></a> <a href="../borders_at_multi-connection.htm"><b>12</b></a> <a href="../aspect_ratio_3d.htm"><b>13</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>14</b></a> <a href="../about_viewing_meshes.htm"><b>15</b></a> <a href="../files/length_of_edges.htm"><b>16</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>17</b></a> <a href="../files/editing_groups.htm"><b>18</b></a> <a href="../files/displaying_nodes_numbers.htm"><b>19</b></a> <a href="../files/displacing_nodes.htm"><b>20</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>21</b></a> <a href="../files/cutting_quadrangles.htm"><b>22</b></a> <a href="../files/creating_groups.htm"><b>23</b></a> <a href="../files/constructing_submeshes.htm"><b>24</b></a> <a href="../files/constructing_meshes.htm"><b>25</b></a> <a href="../files/constructing_groups_of_specific_elements.htm"><b>26</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>27</b></a> <a href="../files/aspect_ratio.htm"><b>28</b></a> <a href="../files/arithmetic_1d.htm"><b>29</b></a> <a href="../files/area_of_elements.htm"><b>30</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>31</b></a> <a href="../files/translation.htm"><b>32</b></a> <a href="../files/taper.htm"><b>33</b></a> <a href="../files/symmetry.htm"><b>34</b></a> <a href="../files/smoothing.htm"><b>35</b></a> <a href="../files/skew.htm"><b>36</b></a> <a href="../files/sewing_meshes.htm"><b>37</b></a> <a href="../files/running_smesh_module.htm"><b>38</b></a> <a href="../files/rotation.htm"><b>39</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>40</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>41</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>42</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>43</b></a> <a href="../files/minimum_angle.htm"><b>44</b></a> <a href="../files/merging_nodes.htm"><b>45</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>46</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>47</b></a> <a href="../quality_controls.htm"><b>48</b></a> <a href="../presentation.htm"><b>49</b></a> <a href="../pattern_mapping.htm"><b>50</b></a> <a href="../modifying_meshes.htm"><b>51</b></a> <a href="../mesh.htm"><b>52</b></a> <a href="../merge_elements.htm"><b>53</b></a> <a href="../grouping_elements.htm"><b>54</b></a> <a href="../free_edges.htm"><b>55</b></a> <a href="../free_borders.htm"><b>56</b></a> <a href="../files/warp.htm"><b>57</b></a> <a href="../files/vtk_3d_viewer.htm"><b>58</b></a> <a href="../files/viewing_mesh_info.htm"><b>59</b></a> <a href="../files/using_operations_on_groups.htm"><b>60</b></a> <a href="../files/uniting_two_triangles.htm"><b>61</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>62</b></a> <a href="../volume.htm"><b>63</b></a> <a href="../viewing_meshes.htm"><b>64</b></a> <a href="../transforming_meshes.htm"><b>65</b></a> <a href="../selection_filter_library.htm"><b>66</b></a> <a href="../revolution.htm"><b>67</b></a> </nobr><br><nobr>mesh_1 <a href="../files/constructing_meshes.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>mesh_2</b></a> <br><a href="../quality_controls.htm"><b>mesh_borders_at_multi</b></a> <br><a href="../quality_controls.htm"><b>mesh_freebord</b></a> <br><nobr>meshbox <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> </nobr><br><nobr>meshed <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/about_hypotheses.htm"><b>2</b></a> <a href="../extrusion_along_a_path.htm"><b>3</b></a> <a href="../defining_hypotheses_tui.htm"><b>4</b></a> <a href="../files/arithmetic_1d.htm"><b>5</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>6</b></a> <a href="../modifying_meshes.htm"><b>7</b></a> <a href="../transforming_meshes.htm"><b>8</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>mesheditor</b></a> <br><a href="../pattern_mapping.htm"><b>mesher</b></a> <br><nobr>meshes <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../files/about_hypotheses.htm"><b>2</b></a> <a href="../constructing_meshes.htm"><b>3</b></a> <a href="../about_viewing_meshes.htm"><b>4</b></a> <a href="../files/importing_and_exporting_meshes.htm"><b>5</b></a> <a href="../files/constructing_meshes.htm"><b>6</b></a> <a href="../files/area_of_elements.htm"><b>7</b></a> <a href="../files/smoothing.htm"><b>8</b></a> <a href="../files/sewing_meshes.htm"><b>9</b></a> <a href="../files/reassigning_hypotheses_and_algorithms.htm"><b>10</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>11</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>12</b></a> <a href="../modifying_meshes.htm"><b>13</b></a> <a href="../mesh.htm"><b>14</b></a> <a href="../files/vtk_3d_viewer.htm"><b>15</b></a> <a href="../volume.htm"><b>16</b></a> <a href="../viewing_meshes.htm"><b>17</b></a> <a href="../transforming_meshes.htm"><b>18</b></a> <a href="../selection_filter_library.htm"><b>19</b></a> </nobr><br><nobr>meshing <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/about_meshing_algorithms.htm"><b>2</b></a> <a href="../files/about_hypotheses.htm"><b>3</b></a> <a href="../extrusion.htm"><b>4</b></a> <a href="../defining_hypotheses_tui.htm"><b>5</b></a> <a href="../about_viewing_meshes.htm"><b>6</b></a> <a href="../files/length_of_edges.htm"><b>7</b></a> <a href="../files/displaying_nodes_numbers.htm"><b>8</b></a> <a href="../files/constructing_submeshes.htm"><b>9</b></a> <a href="../files/constructing_meshes.htm"><b>10</b></a> <a href="../files/arithmetic_1d.htm"><b>11</b></a> <a href="../files/area_of_elements.htm"><b>12</b></a> <a href="../files/minimum_angle.htm"><b>13</b></a> <a href="../files/max._element_volume_hypothsis.htm"><b>14</b></a> <a href="../files/max._element_area_hypothesis.htm"><b>15</b></a> <a href="../mesh.htm"><b>16</b></a> <a href="../revolution.htm"><b>17</b></a> </nobr><br><a href="../constructing_meshes.htm"><b>meshmed</b></a> <br><nobr>method <a href="../files/smoothing.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><a href="../files/smoothing.htm"><b>methods</b></a> <br><nobr><a name="bms_MI"></a><a name="subkey_MI"></a>middle <a href="../adding_quadratic_nodes_and_elements.htm"><b>1</b></a> <a href="../files/non_conform_mesh_allowed_hypothesis.htm"><b>2</b></a> </nobr><br><nobr>minimum <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../files/cutting_quadrangles.htm"><b>2</b></a> <a href="../files/arithmetic_1d.htm"><b>3</b></a> <a href="../files/sewing_meshes.htm"><b>4</b></a> <a href="../files/minimum_angle.htm"><b>5</b></a> <a href="../quality_controls.htm"><b>6</b></a> <a href="../mesh.htm"><b>7</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>8</b></a> </nobr><br><a href="../transforming_meshes.htm"><b>mirrored</b></a> <br><a href="../transforming_meshes.htm"><b>mirrorobject</b></a> <br><nobr><a name="bms_MO"></a><a name="subkey_MO"></a>mode <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/arithmetic_1d.htm"><b>2</b></a> <a href="../presentation.htm"><b>3</b></a> </nobr><br><a href="../files/about_meshes.htm"><b>model</b></a> <br><a href="../mesh.htm"><b>models</b></a> <br><a href="../presentation.htm"><b>modes</b></a> <br><nobr>modification <a href="../files/about_meshes.htm"><b>1</b></a> <a href="../extrusion_along_a_path.htm"><b>2</b></a> <a href="../extrusion.htm"><b>3</b></a> <a href="../adding_quadratic_nodes_and_elements.htm"><b>4</b></a> <a href="../files/editing_groups.htm"><b>5</b></a> <a href="../files/displacing_nodes.htm"><b>6</b></a> <a href="../files/diagonal_iversion_of_elements.htm"><b>7</b></a> <a href="../files/cutting_quadrangles.htm"><b>8</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>9</b></a> <a href="../files/adding_nodes_and_elements.htm"><b>10</b></a> <a href="../files/translation.htm"><b>11</b></a> <a href="../files/symmetry.htm"><b>12</b></a> <a href="../files/smoothing.htm"><b>13</b></a> <a href="../files/sewing_meshes.htm"><b>14</b></a> <a href="../files/rotation.htm"><b>15</b></a> <a href="../files/renumbering_nodes_and_elements.htm"><b>16</b></a> <a href="../files/removing_nodes_and_elements.htm"><b>17</b></a> <a href="../files/merging_nodes.htm"><b>18</b></a> <a href="../pattern_mapping.htm"><b>19</b></a> <a href="../mesh.htm"><b>20</b></a> <a href="../files/uniting_two_triangles.htm"><b>21</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>22</b></a> <a href="../revolution.htm"><b>23</b></a> </nobr><br><nobr>modify <a href="../files/editing_groups.htm"><b>1</b></a> <a href="../files/cutting_quadrangles.htm"><b>2</b></a> <a href="../files/changing_orientation_of_elements.htm"><b>3</b></a> <a href="../files/uniting_a_set_of_triangles.htm"><b>4</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>modifying</b></a> <br><nobr>module <a href="../files/about_meshing_algorithms.htm"><b>1</b></a> <a href="../files/about_meshes.htm"><b>2</b></a> <a href="../files/creating_groups.htm"><b>3</b></a> <a href="../files/arithmetic_1d.htm"><b>4</b></a> <a href="../files/running_smesh_module.htm"><b>5</b></a> <a href="../modifying_meshes.htm"><b>6</b></a> <a href="../mesh.htm"><b>7</b></a> <a href="../files/vtk_3d_viewer.htm"><b>8</b></a> </nobr><br><a href="../adding_quadratic_nodes_and_elements.htm"><b>modules</b></a> <br><nobr>mouse <a href="../about_viewing_meshes.htm"><b>1</b></a> <a href="../files/creating_groups.htm"><b>2</b></a> <a href="../files/vtk_3d_viewer.htm"><b>3</b></a> </nobr><br><nobr>move <a href="../files/displacing_nodes.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>movenode</b></a> <br><nobr>moving <a href="../files/displacing_nodes.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> </nobr><br><nobr><a name="bms_MU"></a><a name="subkey_MU"></a>multi <a href="../files/about_quality_controls.htm"><b>1</b></a> <a href="../borders_at_multiconnection_2d.htm"><b>2</b></a> <a href="../borders_at_multi-connection.htm"><b>3</b></a> <a href="../quality_controls.htm"><b>4</b></a> <a href="../mesh.htm"><b>5</b></a> </nobr><br><a href="../quality_controls.htm"><b>multiconnection</b></a> <br><nobr>must <a href="../extrusion_along_a_path.htm"><b>1</b></a> <a href="../files/constructing_meshes.htm"><b>2</b></a> <a href="../files/sewing_meshes.htm"><b>3</b></a> <a href="../pattern_mapping.htm"><b>4</b></a> <a href="../selection_filter_library.htm"><b>5</b></a> </nobr><br><a name="bms_MY"></a><a name="subkey_MY"></a><a href="../quality_controls.htm"><b>myelemid</b></a> <br><a href="../quality_controls.htm"><b>mypnt1</b></a> <br><a href="../quality_controls.htm"><b>mypnt2</b></a> <br><nobr>mystudy <a href="../constructing_meshes.htm"><b>1</b></a> <a href="../quality_controls.htm"><b>2</b></a> <a href="../modifying_meshes.htm"><b>3</b></a> <a href="../viewing_meshes.htm"><b>4</b></a> </nobr><br><nobr>mystudyid <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../constructing_meshes.htm"><b>2</b></a> <a href="../quality_controls.htm"><b>3</b></a> </nobr><br>
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name="subkey_NB"></a>nb <a href="../quality_controls.htm"><b>1</b></a> <a href="../grouping_elements.htm"><b>2</b></a> </nobr><br><a href="../modifying_meshes.htm"><b>nb_segments_1</b></a> <br><a href="../modifying_meshes.htm"><b>nb_vert</b></a> <br><nobr>nbedges <a href="../viewing_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br><a href="../viewing_meshes.htm"><b>nbfaces</b></a> <br><a href="../viewing_meshes.htm"><b>nbhexas</b></a> <br><nobr>nbnodes <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../viewing_meshes.htm"><b>2</b></a> <a href="../transforming_meshes.htm"><b>3</b></a> </nobr><br><a href="../viewing_meshes.htm"><b>nbpolygons</b></a> <br><a href="../viewing_meshes.htm"><b>nbpolyhedrons</b></a> <br><a href="../viewing_meshes.htm"><b>nbprisms</b></a> <br><a href="../viewing_meshes.htm"><b>nbpyramids</b></a> <br><nobr>nbquadrangles <a href="../viewing_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> 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name="subkey_PZ"></a>pz <a href="../defining_hypotheses_tui.htm"><b>1</b></a> <a href="../modifying_meshes.htm"><b>2</b></a> <a href="../transforming_meshes.htm"><b>3</b></a> </nobr><br><nobr>pz1 <a href="../modifying_meshes.htm"><b>1</b></a> <a href="../transforming_meshes.htm"><b>2</b></a> </nobr><br>
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-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_C"></a><nobr><b>Cell</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Element of a mesh. Cells are determined by their connectivity. They can have 0,1,2 or 3 dimension.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Component</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">One integer or real value can correspond to each component of a field and to each entity of a mesh<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_D"></a><nobr><b>Descendant connectivity</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">It is a description of the entities of the mesh with dimension N. This description is made by an ordered list of geometrical entities (nodes, edges, or faces) with dimension N-1.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_E"></a><nobr><b>Edge</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">An edge of a volumetric or surface mesh. It is composed of 2 or 3 nodes (2 vertex nodes and optionally one middle node).<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Entity of a mesh</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Geometrical component of the mesh: node, cell, face and edge. Faces and edges are only intermediate entities allowing to define the cells in descendant connectivity.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Equivalence</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Equivalence represents a list of correspondance 2 by 2 of the entities of the same dimension.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_F"></a><nobr><b>Face</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Face of a volumetrical cell (triangle, quadrangle).<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Family</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Entities of a mesh are described by a certain number of characteristics (boundary conditions, groups membership). Families represent classes equivalent to these characteristics (two entities of a mesh can belong to the same family if they have the same characteristics). Every family is determined by a set of attributes and a list of groups membership.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Field</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Field consists of one or several scalar components. One definite type is associated to the given field and the values corresponding to different components are all of the same type.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Field profile</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Fields can be defined only on one part of the mesh. Profile of the field or profile of the component of a field indicates which entities of the mesh contain values.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_G"></a><nobr><b>Group</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Unordered set of entities of a mesh. One entity can belong to several groups.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_M"></a><nobr><b>Mesh</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Mesh is described by its geometry: list of nodes and list of cells which constitute this mesh. Supplementary information is added with the help of families (initial, boundary conditions).<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_N"></a><nobr><b>Nodal connectivity</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">It is a description of an entity of the mesh by an ordered list of nodes constituting this entity.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Node</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Node can be an isolated node of a mesh, a vertex or middle node of an edge. A node is associated to a point.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_P"></a><nobr><b>Point</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Geometrical entity determined by its coordinates in the space.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_R"></a><nobr><b>Reference connectivity</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">For each type of entity of a mesh, reference connectivity define the topology of an entity.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><nobr><b>Result</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">List of fields referring to one mesh.<p>
-<p class="glsbody" style="margin-bottom:1pt;"><a name="bm_S"></a><nobr><b>Study</b></nobr></p>
-<p class="glsbody" style="margin-top:1pt;">Study represents a chain of sequences of calculations.<p>
-<p class="glsbody"><br><br></p>
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- <nobr><a name="7"></a><a href="whlstt7.htm#7" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
- <nobr><a name="9"></a><a href="whlstt9.htm#9" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> TUI Scripts</a></nobr><br>
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
- <nobr><a href="../mesh.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Introduction to Mesh</a></nobr><br>
- <nobr><a href="../files/running_smesh_module.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Running MESH module</a></nobr><br>
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- <nobr><a name="4"></a><a href="whlstt4.htm#4" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Viewing meshes</a></nobr><br>
- <nobr><a name="5"></a><a href="whlstt5.htm#5" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Quality controls</a></nobr><br>
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- <nobr><a name="7"></a><a href="whlstt7.htm#7" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
- <nobr><a name="9"></a><a href="whlstt9.htm#9" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> TUI Scripts</a></nobr><br>
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
- <nobr><a href="../mesh.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Introduction to Mesh</a></nobr><br>
- <nobr><a href="../files/running_smesh_module.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Running MESH module</a></nobr><br>
- <nobr><a name="2"></a><a href="whlstt2.htm#2" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Creating meshes</a></nobr><br>
- <nobr><a name="4"></a><a href="whlstt1.htm#4" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> Viewing meshes</a></nobr><br>
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- <nobr><a name="7"></a><a href="whlstt7.htm#7" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
- <nobr><a href="../mesh.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Introduction to Mesh</a></nobr><br>
- <nobr><a href="../files/running_smesh_module.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Running MESH module</a></nobr><br>
- <nobr><a name="2"></a><a href="whlstt2.htm#2" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Creating meshes</a></nobr><br>
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- <nobr><a name="5"></a><a href="whlstt1.htm#5" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> Quality controls</a></nobr><br>
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- <nobr><a name="7"></a><a href="whlstt7.htm#7" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
- <nobr><a name="9"></a><a href="whlstt9.htm#9" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> TUI Scripts</a></nobr><br>
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
- <nobr><a href="../mesh.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Introduction to Mesh</a></nobr><br>
- <nobr><a href="../files/running_smesh_module.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Running MESH module</a></nobr><br>
- <nobr><a name="2"></a><a href="whlstt2.htm#2" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Creating meshes</a></nobr><br>
- <nobr><a name="4"></a><a href="whlstt4.htm#4" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Viewing meshes</a></nobr><br>
- <nobr><a name="5"></a><a href="whlstt5.htm#5" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Quality controls</a></nobr><br>
- <nobr><a name="6"></a><a href="whlstt1.htm#6" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> Grouping elements</a></nobr><br>
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- <nobr><a name="7"></a><a href="whlstt7.htm#7" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
- <nobr><a name="9"></a><a href="whlstt9.htm#9" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> TUI Scripts</a></nobr><br>
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+++ /dev/null
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
- <nobr><a href="../mesh.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Introduction to Mesh</a></nobr><br>
- <nobr><a href="../files/running_smesh_module.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Running MESH module</a></nobr><br>
- <nobr><a name="2"></a><a href="whlstt2.htm#2" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Creating meshes</a></nobr><br>
- <nobr><a name="4"></a><a href="whlstt4.htm#4" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Viewing meshes</a></nobr><br>
- <nobr><a name="5"></a><a href="whlstt5.htm#5" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Quality controls</a></nobr><br>
- <nobr><a name="6"></a><a href="whlstt6.htm#6" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Grouping elements</a></nobr><br>
- <nobr><a name="7"></a><a href="whlstt1.htm#7" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
- <nobr><a href="../files/adding_nodes_and_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Adding nodes and elements</a></nobr><br>
- <nobr><a href="../adding_quadratic_nodes_and_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Adding quadratic elements</a></nobr><br>
- <nobr><a href="../files/removing_nodes_and_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Removing nodes and elements</a></nobr><br>
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- <nobr><a name="8"></a><a href="whlstt8.htm#8" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Transforming meshes</a></nobr><br>
- <nobr><a href="../files/displacing_nodes.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Moving nodes</a></nobr><br>
- <nobr><a href="../files/diagonal_iversion_of_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Diagonal inversion of elements</a></nobr><br>
- <nobr><a href="../files/uniting_two_triangles.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Uniting two triangles</a></nobr><br>
- <nobr><a href="../files/uniting_a_set_of_triangles.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Uniting a set of triangles</a></nobr><br>
- <nobr><a href="../files/changing_orientation_of_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Changing orientation of elements</a></nobr><br>
- <nobr><a href="../files/cutting_quadrangles.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Cutting quadrangles</a></nobr><br>
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- <nobr><a name="9"></a><a href="whlstt9.htm#9" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> TUI Scripts</a></nobr><br>
- <nobr><a href="../smeshpy_doc/namespacesmesh.html"><img src="../wht_toc3.gif" border="0" align="absmiddle"> Python interface smesh.py</a></nobr><br>
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+++ /dev/null
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
- <nobr><a href="../mesh.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Introduction to Mesh</a></nobr><br>
- <nobr><a href="../files/running_smesh_module.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Running MESH module</a></nobr><br>
- <nobr><a name="2"></a><a href="whlstt2.htm#2" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Creating meshes</a></nobr><br>
- <nobr><a name="4"></a><a href="whlstt4.htm#4" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Viewing meshes</a></nobr><br>
- <nobr><a name="5"></a><a href="whlstt5.htm#5" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Quality controls</a></nobr><br>
- <nobr><a name="6"></a><a href="whlstt6.htm#6" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Grouping elements</a></nobr><br>
- <nobr><a name="7"></a><a href="whlstt1.htm#7" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
- <nobr><a href="../files/adding_nodes_and_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Adding nodes and elements</a></nobr><br>
- <nobr><a href="../adding_quadratic_nodes_and_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Adding quadratic elements</a></nobr><br>
- <nobr><a href="../files/removing_nodes_and_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Removing nodes and elements</a></nobr><br>
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- <nobr><a name="8"></a><a href="whlstt7.htm#8" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> Transforming meshes</a></nobr><br>
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- <nobr><a href="../files/displacing_nodes.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Moving nodes</a></nobr><br>
- <nobr><a href="../files/diagonal_iversion_of_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Diagonal inversion of elements</a></nobr><br>
- <nobr><a href="../files/uniting_two_triangles.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Uniting two triangles</a></nobr><br>
- <nobr><a href="../files/uniting_a_set_of_triangles.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Uniting a set of triangles</a></nobr><br>
- <nobr><a href="../files/changing_orientation_of_elements.htm"><img src="../whd_toc3.gif" border="0" align="absmiddle"> Changing orientation of elements</a></nobr><br>
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- <nobr><a name="9"></a><a href="whlstt9.htm#9" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> TUI Scripts</a></nobr><br>
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-<nobr><a name="1"></a><a href="whlstt0.htm#1" target="_self"><img src="../whd_toc2.gif" border="0" align="absmiddle"> MESH module</a></nobr><br>
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- <nobr><a name="2"></a><a href="whlstt2.htm#2" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Creating meshes</a></nobr><br>
- <nobr><a name="4"></a><a href="whlstt4.htm#4" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Viewing meshes</a></nobr><br>
- <nobr><a name="5"></a><a href="whlstt5.htm#5" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Quality controls</a></nobr><br>
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- <nobr><a name="7"></a><a href="whlstt7.htm#7" target="_self" title="closed book"><img src="../whd_toc1.gif" border="0" align="absmiddle"> Modifying meshes</a></nobr><br>
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-<key name="ve"> 18, </key>
-<key name="vector"> 12,13,63,72,42,47,76,49,55, </key>
-<key name="versa"> 8, </key>
-<key name="vert"> 63, </key>
-<key name="vertex"> 15,63,66,69,73, </key>
-<key name="vertex_"> 63, </key>
-<key name="vertic"> 63,66,68,69, </key>
-<key name="very"> 18,13,65, </key>
-<key name="via"> 74,53,54, </key>
-<key name="vic"> 8, </key>
-<key name="vid"> 63, </key>
-<key name="view"> 0,18,1,19,21,2,22,6,26,27,10,28,29,30,12,13,33,37,40,41,72,74,44,45,46,48,50,51,53,78,79,54,55, </key>
-<key name="visibl"> 54, </key>
-<key name="visual"> 17, </key>
-<key name="visualiz"> 54, </key>
-<key name="vk"> 2, </key>
-<key name="volum"> 14,15,16,17,18,2,23,7,26,9,11,13,61,63,35,70,74,76,53,78,79, </key>
-<key name="volume_margin"> 70, </key>
-<key name="vtk"> 0,54, </key>
-<key name="vxy"> 9,76, </key>
-<key name="wa_margin"> 70, </key>
-<key name="walk"> 66, </key>
-<key name="warp"> 17,27,61,70,50,55, </key>
-<key name="way"> 15,18,24,25,26,13,66,39,52, </key>
-<key name="weight"> 46, </key>
-<key name="well"> 66, </key>
-<key name="wheth"> 74, </key>
-<key name="whil"> 5,68,40, </key>
-<key name="whit"> 13,56, </key>
-<key name="whol"> 16,2,12,13,72,74,46,49, </key>
-<key name="whos"> 22,26,27,38,50, </key>
-<key name="will"> 14,15,0,18,1,19,20,21,2,5,22,23,24,7,25,8,26,27,10,29,30,31,12,13,32,34,33,60,37,63,65,35,38,66,69,40,41,72,43,74,44,45,46,48,77,50,52,53,79,55, </key>
-<key name="window"> 6, </key>
-<key name="wir"> 16,9,13,34,63,65,76, </key>
-<key name="wire_polylin"> 63, </key>
-<key name="wire_polyline_edg"> 63, </key>
-<key name="wire_polyline_mesh"> 63, </key>
-<key name="wirefram"> 0,67, </key>
-<key name="wish"> 24,8,10,32,54, </key>
-<key name="within"> 20,66,44, </key>
-<key name="without"> 1,13,70,71, </key>
-<key name="word"> 20, </key>
-<key name="work"> 1,13,65,69, </key>
-<key name="worst"> 21, </key>
-<key name="would"> 18,71,44, </key>
-<key name="wrong"> 63, </key>
-<key name="ww"> 9, </key>
-<key name="x"> 15,6,63,55, </key>
-<key name="x0"> 63, </key>
-<key name="xyz"> 63, </key>
-<key name="y"> 15,6,63, </key>
-<key name="y0"> 63, </key>
-<key name="your"> 14,15,17,0,18,1,19,20,21,2,22,6,23,24,25,26,29,30,31,32,34,33,36,37,35,66,67,39,40,41,42,74,45,46,47,48,49,53,79,55, </key>
-<key name="z"> 15,6,63, </key>
-<key name="z0"> 63, </key>
-<key name="zero"> 66, </key>
-<key name="zoom"> 54, </key>
-
-</ftswdata>
+++ /dev/null
-<?xml version='1.0' encoding='windows-1252' ?>
-<glossarydata>
- <entry name="Cell" value="Element of a mesh. Cells are determined by their connectivity. They can have 0,1,2 or 3 dimension." />
- <entry name="Component" value="One integer or real value can correspond to each component of a field and to each entity of a mesh" />
- <entry name="Descendant connectivity" value="It is a description of the entities of the mesh with dimension N. This description is made by an ordered list of geometrical entities (nodes, edges, or faces) with dimension N-1." />
- <entry name="Edge" value="An edge of a volumetric or surface mesh. It is composed of 2 or 3 nodes (2 vertex nodes and optionally one middle node)." />
- <entry name="Entity of a mesh" value="Geometrical component of the mesh: node, cell, face and edge. Faces and edges are only intermediate entities allowing to define the cells in descendant connectivity." />
- <entry name="Equivalence" value="Equivalence represents a list of correspondance 2 by 2 of the entities of the same dimension." />
- <entry name="Face" value="Face of a volumetrical cell (triangle, quadrangle)." />
- <entry name="Family" value="Entities of a mesh are described by a certain number of characteristics (boundary conditions, groups membership). Families represent classes equivalent to these characteristics (two entities of a mesh can belong to the same family if they have the same characteristics). Every family is determined by a set of attributes and a list of groups membership." />
- <entry name="Field" value="Field consists of one or several scalar components. One definite type is associated to the given field and the values corresponding to different components are all of the same type." />
- <entry name="Field profile" value="Fields can be defined only on one part of the mesh. Profile of the field or profile of the component of a field indicates which entities of the mesh contain values." />
- <entry name="Group" value="Unordered set of entities of a mesh. One entity can belong to several groups." />
- <entry name="Mesh" value="Mesh is described by its geometry: list of nodes and list of cells which constitute this mesh. Supplementary information is added with the help of families (initial, boundary conditions)." />
- <entry name="Nodal connectivity" value="It is a description of an entity of the mesh by an ordered list of nodes constituting this entity." />
- <entry name="Node" value="Node can be an isolated node of a mesh, a vertex or middle node of an edge. A node is associated to a point." />
- <entry name="Point" value="Geometrical entity determined by its coordinates in the space." />
- <entry name="Reference connectivity" value="For each type of entity of a mesh, reference connectivity define the topology of an entity." />
- <entry name="Result" value="List of fields referring to one mesh." />
- <entry name="Study" value="Study represents a chain of sequences of calculations." />
-
-</glossarydata>
+++ /dev/null
-<?xml version='1.0' encoding='windows-1252' ?>
-<glossary>
-<chunkinfo url="whgdata0.xml" first="Cell" last="Study" num="18" />
-
-</glossary>
\ No newline at end of file
+++ /dev/null
-<?xml version='1.0' encoding='windows-1252' ?>
-<index>
-
-</index>
+++ /dev/null
-<?xml version='1.0' encoding='windows-1252' ?>
-<tocdata>
-<book name="MESH module" >
- <item name="Introduction to Mesh" url="mesh.htm" />
- <item name="Running MESH module" url="files/running_smesh_module.htm" />
- <item name="Introduction to MESH module python interface" url="smesh.py_introduction.htm" />
- <book name="Creating meshes" >
- <item name="About meshes" url="files/about_meshes.htm" />
- <item name="Importing and exporting meshes" url="files/importing_and_exporting_meshes.htm" />
- <item name="Constructing meshes" url="files/constructing_meshes.htm" />
- <book name="Defining Algorithms" >
- <item name="Basic meshing algorithms" url="files/about_meshing_algorithms.htm" />
- <item name="Projection Algorithms" url="projection_algorithms.htm" />
- <item name="Radial Prism Algorithm" url="radial_prism.htm" />
- <item name="Segments around Vertex Algorithm" url="segments_around_vertex_algorithm.htm" />
- <item name="Prism 3D Algorithm" url="prism_3d_algorithm.htm" />
- </book>
- <book name="Defining hypotheses" >
- <item name="About Hypotheses" url="files/about_hypotheses.htm" />
- <item name="1D Meshing Hypotheses" url="files/arithmetic_1d.htm" />
- <item name="2D Meshing Hypotheses" url="files/max._element_area_hypothesis.htm" />
- <item name="Max Element Volume hypothesis" url="files/max._element_volume_hypothsis.htm" />
- <item name="Netgen 2D and 3D hypotheses" url="netgen_2d_and_3d_hypotheses.htm" />
- <item name="Additional Hypotheses" url="files/non_conform_mesh_allowed_hypothesis.htm" />
- </book>
- <item name="Constructing submeshes" url="files/constructing_submeshes.htm" />
- <item name="Building Compounds" url="building_compounds.htm" />
- <item name="Editing Meshes" url="files/reassigning_hypotheses_and_algorithms.htm" />
- </book>
- <book name="Viewing meshes" >
- <item name="Viewing meshes" url="about_viewing_meshes.htm" />
- <item name="Mesh infos" url="files/viewing_mesh_info.htm" />
- <item name="Numbering" url="files/displaying_nodes_numbers.htm" />
- <item name="Display Mode" url="presentation.htm" />
- <item name="Display Entity" url="display_entity.htm" />
- <item name="Transparency" url="transparency.htm" />
- <item name="Clipping" url="clipping.htm" />
- </book>
- <book name="Quality controls" >
- <item name="About quality controls" url="files/about_quality_controls.htm" />
- <item name="Free borders" url="free_borders.htm" />
- <item name="Borders at multi-connection" url="borders_at_multi-connection.htm" />
- <item name="Length" url="length.htm" />
- <item name="Free edges" url="free_edges.htm" />
- <item name="Length 2D" url="files/length_of_edges.htm" />
- <item name="Borders at multi-connection 2D" url="borders_at_multiconnection_2d.htm" />
- <item name="Area" url="files/area_of_elements.htm" />
- <item name="Taper" url="files/taper.htm" />
- <item name="Aspect ratio" url="files/aspect_ratio.htm" />
- <item name="Minimum angle" url="files/minimum_angle.htm" />
- <item name="Warping" url="files/warp.htm" />
- <item name="Skew" url="files/skew.htm" />
- <item name="Aspect ratio 3D" url="aspect_ratio_3d.htm" />
- <item name="Volume" url="volume.htm" />
- </book>
- <book name="Grouping elements" >
- <item name="Creating groups" url="files/creating_groups.htm" />
- <item name="Editing groups" url="files/editing_groups.htm" />
- <item name="Using operations on groups" url="files/using_operations_on_groups.htm" />
- <item name="Constructing groups of specific elements" url="files/constructing_groups_of_specific_elements.htm" />
- <item name="Deleting Groups" url="deleting_groups.htm" />
- <item name="Selection filter library" url="selection_filter_library.htm" />
- </book>
- <book name="Modifying meshes" >
- <item name="Adding nodes and elements" url="files/adding_nodes_and_elements.htm" />
- <item name="Adding quadratic elements" url="adding_quadratic_nodes_and_elements.htm" />
- <item name="Removing nodes and elements" url="files/removing_nodes_and_elements.htm" />
- <item name="Renumbering nodes and elements" url="files/renumbering_nodes_and_elements.htm" />
- <book name="Transforming meshes" >
- <item name="Translation" url="files/translation.htm" />
- <item name="Rotation" url="files/rotation.htm" />
- <item name="Symmetry" url="files/symmetry.htm" />
- <item name="Sewing meshes" url="files/sewing_meshes.htm" />
- <item name="Merging nodes" url="files/merging_nodes.htm" />
- <item name="Merging Elements" url="merge_elements.htm" />
- </book>
- <item name="Moving nodes" url="files/displacing_nodes.htm" />
- <item name="Mesh through point" url="mesh_through_point.htm" />
- <item name="Diagonal inversion of elements" url="files/diagonal_iversion_of_elements.htm" />
- <item name="Uniting two triangles" url="files/uniting_two_triangles.htm" />
- <item name="Uniting a set of triangles" url="files/uniting_a_set_of_triangles.htm" />
- <item name="Changing orientation of elements" url="files/changing_orientation_of_elements.htm" />
- <item name="Cutting quadrangles" url="files/cutting_quadrangles.htm" />
- <item name="Smoothing" url="files/smoothing.htm" />
- <item name="Extrusion" url="extrusion.htm" />
- <item name="Extrusion along a path" url="extrusion_along_a_path.htm" />
- <item name="Revolution" url="revolution.htm" />
- <item name="Pattern mapping" url="pattern_mapping.htm" />
- <item name="Convert to/from Quadratic Mesh" url="convert_to_from_quadratic_mesh.htm" />
- </book>
- <item name="Python Interface smesh.py" url="smeshpy_doc/namespacesmesh.html" />
- <book name="TUI Scripts" >
- <item name="Creating Meshes" url="constructing_meshes.htm" />
- <item name="Viewing Meshes" url="viewing_meshes.htm" />
- <item name="Defining Hypotheses" url="defining_hypotheses_tui.htm" />
- <item name="Quality Controls" url="quality_controls.htm" />
- <item name="Grouping Elements" url="grouping_elements.htm" />
- <item name="Modifying Meshes" url="modifying_meshes.htm" />
- <item name="Transforming Meshes" url="transforming_meshes.htm" />
- </book>
-</book>
-
-</tocdata>
+++ /dev/null
-<?xml version='1.0' encoding='windows-1252' ?>
-<toc root="whtdata0.xml">
-
-</toc>
SMESHDS_SubMesh* SDSM = SM->GetSubMeshDS();
if(!SDSM) return aResult._retn();
- map<int,const SMDS_MeshElement*> theElems;
- if( !all || (SDSM->NbElements()==0 && SDSM->NbNodes()==1) ) {
+ set<int> theElems;
+ if( !all || (SDSM->NbElements()==0) ) { // internal nodes or vertex submesh
SMDS_NodeIteratorPtr nIt = SDSM->GetNodes();
while ( nIt->more() ) {
const SMDS_MeshNode* elem = nIt->next();
- theElems.insert( make_pair(elem->GetID(),elem) );
+ theElems.insert( elem->GetID() );
}
}
else { // all nodes of submesh elements
SMDS_ElemIteratorPtr nIt = anElem->nodesIterator();
while ( nIt->more() ) {
const SMDS_MeshElement* elem = nIt->next();
- theElems.insert( make_pair(elem->GetID(),elem) );
+ theElems.insert( elem->GetID() );
}
}
}
aResult->length(theElems.size());
- map<int, const SMDS_MeshElement * >::iterator itElem;
+ set<int>::iterator itElem;
int i = 0;
for ( itElem = theElems.begin(); itElem != theElems.end(); itElem++ )
- aResult[i++] = (*itElem).first;
+ aResult[i++] = *itElem;
return aResult._retn();
}
omniORB.registerObjref(SMESH._objref_SMESH_Gen._NP_RepositoryId, smeshDC)
-## Mother class to define algorithm, recommended to do not use directly.
+# Public class: Mesh
+# ==================
+
+## Class to define a mesh
#
+# The class contains mesh shape, SMESH_Mesh, SMESH_MeshEditor
# More details.
-class Mesh_Algorithm:
- # @class Mesh_Algorithm
- # @brief Class Mesh_Algorithm
-
- #def __init__(self,smesh):
- # self.smesh=smesh
- def __init__(self):
- self.mesh = None
- self.geom = None
- self.subm = None
- self.algo = None
+class Mesh:
- ## Find hypothesis in study by its type name and parameters.
- # Find only those hypothesis, which was created in smeshpyD engine.
- def FindHypothesis (self, hypname, args, CompareMethod, smeshpyD):
- study = smeshpyD.GetCurrentStudy()
- #to do: find component by smeshpyD object, not by its data type
- scomp = study.FindComponent(smeshpyD.ComponentDataType())
- if scomp is not None:
- res,hypRoot = scomp.FindSubObject(SMESH.Tag_HypothesisRoot)
- # is hypotheses root label exists?
- if res and hypRoot is not None:
- iter = study.NewChildIterator(hypRoot)
- # check all published hypotheses
- while iter.More():
- hypo_so_i = iter.Value()
- attr = hypo_so_i.FindAttribute("AttributeIOR")[1]
- if attr is not None:
- anIOR = attr.Value()
- hypo_o_i = salome.orb.string_to_object(anIOR)
- if hypo_o_i is not None:
- # is hypothesis?
- hypo_i = hypo_o_i._narrow(SMESH.SMESH_Hypothesis)
- if hypo_i is not None:
- # belongs to this engine?
- if smeshpyD.GetObjectId(hypo_i) > 0:
- # is it the needed hypothesis?
- if hypo_i.GetName() == hypname:
- # check args
- if CompareMethod(hypo_i, args):
- # found!!!
- return hypo_i
- pass
- pass
- pass
- pass
- pass
- iter.Next()
- pass
- pass
- pass
- return None
+ geom = 0
+ mesh = 0
+ editor = 0
- ## Find algorithm in study by its type name.
- # Find only those algorithm, which was created in smeshpyD engine.
- def FindAlgorithm (self, algoname, smeshpyD):
- study = smeshpyD.GetCurrentStudy()
- #to do: find component by smeshpyD object, not by its data type
- scomp = study.FindComponent(smeshpyD.ComponentDataType())
- if scomp is not None:
- res,hypRoot = scomp.FindSubObject(SMESH.Tag_AlgorithmsRoot)
- # is algorithms root label exists?
- if res and hypRoot is not None:
- iter = study.NewChildIterator(hypRoot)
- # check all published algorithms
- while iter.More():
- algo_so_i = iter.Value()
- attr = algo_so_i.FindAttribute("AttributeIOR")[1]
- if attr is not None:
- anIOR = attr.Value()
- algo_o_i = salome.orb.string_to_object(anIOR)
- if algo_o_i is not None:
- # is algorithm?
- algo_i = algo_o_i._narrow(SMESH.SMESH_Algo)
- if algo_i is not None:
- # belongs to this engine?
- if smeshpyD.GetObjectId(algo_i) > 0:
- # is it the needed algorithm?
- if algo_i.GetName() == algoname:
- # found!!!
- return algo_i
- pass
- pass
- pass
- pass
- iter.Next()
- pass
- pass
- pass
- return None
+ ## Constructor
+ #
+ # Creates mesh on the shape \a geom(or the empty mesh if geom equal to 0),
+ # sets GUI name of this mesh to \a name.
+ # @param obj Shape to be meshed or SMESH_Mesh object
+ # @param name Study name of the mesh
+ def __init__(self, smeshpyD, geompyD, obj=0, name=0):
+ self.smeshpyD=smeshpyD
+ self.geompyD=geompyD
+ if obj is None:
+ obj = 0
+ if obj != 0:
+ if isinstance(obj, geompyDC.GEOM._objref_GEOM_Object):
+ self.geom = obj
+ self.mesh = self.smeshpyD.CreateMesh(self.geom)
+ elif isinstance(obj, SMESH._objref_SMESH_Mesh):
+ self.SetMesh(obj)
+ else:
+ self.mesh = self.smeshpyD.CreateEmptyMesh()
+ if name != 0:
+ SetName(self.mesh, name)
+ elif obj != 0:
+ SetName(self.mesh, GetName(obj))
- ## If the algorithm is global, return 0; \n
- # else return the submesh associated to this algorithm.
- def GetSubMesh(self):
- return self.subm
+ self.editor = self.mesh.GetMeshEditor()
- ## Return the wrapped mesher.
- def GetAlgorithm(self):
- return self.algo
+ ## Method that inits the Mesh object from SMESH_Mesh interface
+ # @param theMesh is SMESH_Mesh object
+ def SetMesh(self, theMesh):
+ self.mesh = theMesh
+ self.geom = self.mesh.GetShapeToMesh()
- ## Get list of hypothesis that can be used with this algorithm
- def GetCompatibleHypothesis(self):
- mylist = []
- if self.algo:
- mylist = self.algo.GetCompatibleHypothesis()
- return mylist
+ ## Method that returns the mesh
+ # @return SMESH_Mesh object
+ def GetMesh(self):
+ return self.mesh
- ## Get name of algo
+ ## Get mesh name
def GetName(self):
- GetName(self.algo)
+ name = GetName(self.GetMesh())
+ return name
- ## Set name to algo
+ ## Set name to mesh
def SetName(self, name):
- SetName(self.algo, name)
+ SetName(self.GetMesh(), name)
- ## Get id of algo
- def GetId(self):
- return self.algo.GetId()
+ ## Get the subMesh object associated to a subShape. The subMesh object
+ # gives access to nodes and elements IDs.
+ # \n SubMesh will be used instead of SubShape in a next idl version to
+ # adress a specific subMesh...
+ def GetSubMesh(self, theSubObject, name):
+ submesh = self.mesh.GetSubMesh(theSubObject, name)
+ return submesh
- ## Private method.
- def Create(self, mesh, geom, hypo, so="libStdMeshersEngine.so"):
- if geom is None:
- raise RuntimeError, "Attemp to create " + hypo + " algoritm on None shape"
- algo = self.FindAlgorithm(hypo, mesh.smeshpyD)
- if algo is None:
- algo = mesh.smeshpyD.CreateHypothesis(hypo, so)
- pass
- self.Assign(algo, mesh, geom)
- return self.algo
+ ## Method that returns the shape associated to the mesh
+ # @return GEOM_Object
+ def GetShape(self):
+ return self.geom
- ## Private method
- def Assign(self, algo, mesh, geom):
- if geom is None:
- raise RuntimeError, "Attemp to create " + algo + " algoritm on None shape"
- self.mesh = mesh
- piece = mesh.geom
- if not geom:
- self.geom = piece
- else:
- self.geom = geom
- name = GetName(geom)
- if name==NO_NAME:
- name = mesh.geompyD.SubShapeName(geom, piece)
- mesh.geompyD.addToStudyInFather(piece, geom, name)
- self.subm = mesh.mesh.GetSubMesh(geom, algo.GetName())
+ ## Method that associates given shape to the mesh(entails the mesh recreation)
+ # @param geom shape to be meshed(GEOM_Object)
+ def SetShape(self, geom):
+ self.mesh = self.smeshpyD.CreateMesh(geom)
- self.algo = algo
- status = mesh.mesh.AddHypothesis(self.geom, self.algo)
- TreatHypoStatus( status, algo.GetName(), GetName(self.geom), True )
+ ## Return true if hypotheses are defined well
+ # @param theMesh is an instance of Mesh class
+ # @param theSubObject subshape of a mesh shape
+ def IsReadyToCompute(self, theSubObject):
+ return self.smeshpyD.IsReadyToCompute(self.mesh, theSubObject)
- def CompareHyp (self, hyp, args):
- print "CompareHyp is not implemented for ", self.__class__.__name__, ":", hyp.GetName()
- return False
+ ## Return errors of hypotheses definintion
+ # error list is empty if everything is OK
+ # @param theMesh is an instance of Mesh class
+ # @param theSubObject subshape of a mesh shape
+ # @return a list of errors
+ def GetAlgoState(self, theSubObject):
+ return self.smeshpyD.GetAlgoState(self.mesh, theSubObject)
- def CompareEqualHyp (self, hyp, args):
- return True
+ ## Return geometrical object the given element is built on.
+ # The returned geometrical object, if not nil, is either found in the
+ # study or is published by this method with the given name
+ # @param theMesh is an instance of Mesh class
+ # @param theElementID an id of the mesh element
+ # @param theGeomName user defined name of geometrical object
+ # @return GEOM::GEOM_Object instance
+ def GetGeometryByMeshElement(self, theElementID, theGeomName):
+ return self.smeshpyD.GetGeometryByMeshElement( self.mesh, theElementID, theGeomName )
- ## Private method
- def Hypothesis (self, hyp, args=[], so="libStdMeshersEngine.so",
- UseExisting=0, CompareMethod=""):
- hypo = None
- if UseExisting:
- if CompareMethod == "": CompareMethod = self.CompareHyp
- hypo = self.FindHypothesis(hyp, args, CompareMethod, self.mesh.smeshpyD)
+ ## Returns mesh dimension depending on shape one
+ def MeshDimension(self):
+ shells = self.geompyD.SubShapeAllIDs( self.geom, geompyDC.ShapeType["SHELL"] )
+ if len( shells ) > 0 :
+ return 3
+ elif self.geompyD.NumberOfFaces( self.geom ) > 0 :
+ return 2
+ elif self.geompyD.NumberOfEdges( self.geom ) > 0 :
+ return 1
+ else:
+ return 0;
+ pass
+
+ ## Creates a segment discretization 1D algorithm.
+ # If the optional \a algo parameter is not sets, this algorithm is REGULAR.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param algo values are smesh.REGULAR or smesh.PYTHON for discretization via python function
+ # @param geom If defined, subshape to be meshed
+ def Segment(self, algo=REGULAR, geom=0):
+ ## if Segment(geom) is called by mistake
+ if isinstance( algo, geompyDC.GEOM._objref_GEOM_Object):
+ algo, geom = geom, algo
+ if not algo: algo = REGULAR
pass
- if hypo is None:
- hypo = self.mesh.smeshpyD.CreateHypothesis(hyp, so)
- a = ""
- s = "="
- i = 0
- n = len(args)
- while i<n:
- a = a + s + str(args[i])
- s = ","
- i = i + 1
- pass
- SetName(hypo, hyp + a)
- pass
- status = self.mesh.mesh.AddHypothesis(self.geom, hypo)
- TreatHypoStatus( status, GetName(hypo), GetName(self.geom), 0 )
- return hypo
-
-
-# Public class: Mesh_Segment
-# --------------------------
-
-## Class to define a segment 1D algorithm for discretization
-#
-# More details.
-class Mesh_Segment(Mesh_Algorithm):
-
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "Regular_1D")
-
- ## Define "LocalLength" hypothesis to cut an edge in several segments with the same length
- # @param l for the length of segments that cut an edge
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- # @param p precision, used for number of segments calculation.
- # It must be pozitive, meaningfull values are in range [0,1].
- # In general, number of segments is calculated with formula:
- # nb = ceil((edge_length / l) - p)
- # Function ceil rounds its argument to the higher integer.
- # So, p=0 means rounding of (edge_length / l) to the higher integer,
- # p=0.5 means rounding of (edge_length / l) to the nearest integer,
- # p=1 means rounding of (edge_length / l) to the lower integer.
- # Default value is 1e-07.
- def LocalLength(self, l, UseExisting=0, p=1e-07):
- hyp = self.Hypothesis("LocalLength", [l,p], UseExisting=UseExisting,
- CompareMethod=self.CompareLocalLength)
- hyp.SetLength(l)
- hyp.SetPrecision(p)
- return hyp
+ if algo == REGULAR:
+ return Mesh_Segment(self, geom)
+ elif algo == PYTHON:
+ return Mesh_Segment_Python(self, geom)
+ elif algo == COMPOSITE:
+ return Mesh_CompositeSegment(self, geom)
+ else:
+ return Mesh_Segment(self, geom)
- ## Check if the given "LocalLength" hypothesis has the same parameters as given arguments
- def CompareLocalLength(self, hyp, args):
- if IsEqual(hyp.GetLength(), args[0]):
- return IsEqual(hyp.GetPrecision(), args[1])
- return False
+ ## Enable creation of nodes and segments usable by 2D algoritms.
+ # Added nodes and segments must be bound to edges and vertices by
+ # SetNodeOnVertex(), SetNodeOnEdge() and SetMeshElementOnShape()
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom subshape to be manually meshed
+ # @return StdMeshers_UseExisting_1D algorithm that generates nothing
+ def UseExistingSegments(self, geom=0):
+ algo = Mesh_UseExisting(1,self,geom)
+ return algo.GetAlgorithm()
- ## Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments
- # @param n for the number of segments that cut an edge
- # @param s for the scale factor (optional)
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def NumberOfSegments(self, n, s=[], UseExisting=0):
- if s == []:
- hyp = self.Hypothesis("NumberOfSegments", [n], UseExisting=UseExisting,
- CompareMethod=self.CompareNumberOfSegments)
- else:
- hyp = self.Hypothesis("NumberOfSegments", [n,s], UseExisting=UseExisting,
- CompareMethod=self.CompareNumberOfSegments)
- hyp.SetDistrType( 1 )
- hyp.SetScaleFactor(s)
- hyp.SetNumberOfSegments(n)
- return hyp
+ ## Enable creation of nodes and faces usable by 3D algoritms.
+ # Added nodes and faces must be bound to geom faces by SetNodeOnFace()
+ # and SetMeshElementOnShape()
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom subshape to be manually meshed
+ # @return StdMeshers_UseExisting_2D algorithm that generates nothing
+ def UseExistingFaces(self, geom=0):
+ algo = Mesh_UseExisting(2,self,geom)
+ return algo.GetAlgorithm()
- ## Check if the given "NumberOfSegments" hypothesis has the same parameters as given arguments
- def CompareNumberOfSegments(self, hyp, args):
- if hyp.GetNumberOfSegments() == args[0]:
- if len(args) == 1:
- return True
- else:
- if hyp.GetDistrType() == 1:
- if IsEqual(hyp.GetScaleFactor(), args[1]):
- return True
- return False
+ ## Creates a triangle 2D algorithm for faces.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param algo values are: smesh.MEFISTO || smesh.NETGEN_1D2D || smesh.NETGEN_2D
+ # @param geom If defined, subshape to be meshed
+ def Triangle(self, algo=MEFISTO, geom=0):
+ ## if Triangle(geom) is called by mistake
+ if ( isinstance( algo, geompyDC.GEOM._objref_GEOM_Object)):
+ geom = algo
+ algo = MEFISTO
- ## Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing
- # @param start for the length of the first segment
- # @param end for the length of the last segment
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def Arithmetic1D(self, start, end, UseExisting=0):
- hyp = self.Hypothesis("Arithmetic1D", [start, end], UseExisting=UseExisting,
- CompareMethod=self.CompareArithmetic1D)
- hyp.SetLength(start, 1)
- hyp.SetLength(end , 0)
- return hyp
+ return Mesh_Triangle(self, algo, geom)
- ## Check if the given "Arithmetic1D" hypothesis has the same parameters as given arguments
- def CompareArithmetic1D(self, hyp, args):
- if IsEqual(hyp.GetLength(1), args[0]):
- if IsEqual(hyp.GetLength(0), args[1]):
- return True
- return False
+ ## Creates a quadrangle 2D algorithm for faces.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom If defined, subshape to be meshed
+ def Quadrangle(self, geom=0):
+ return Mesh_Quadrangle(self, geom)
- ## Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing
- # @param start for the length of the first segment
- # @param end for the length of the last segment
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def StartEndLength(self, start, end, UseExisting=0):
- hyp = self.Hypothesis("StartEndLength", [start, end], UseExisting=UseExisting,
- CompareMethod=self.CompareStartEndLength)
- hyp.SetLength(start, 1)
- hyp.SetLength(end , 0)
- return hyp
+ ## Creates a tetrahedron 3D algorithm for solids.
+ # The parameter \a algo permits to choice the algorithm: NETGEN or GHS3D
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param algo values are: smesh.NETGEN, smesh.GHS3D, smesh.FULL_NETGEN
+ # @param geom If defined, subshape to be meshed
+ def Tetrahedron(self, algo=NETGEN, geom=0):
+ ## if Tetrahedron(geom) is called by mistake
+ if ( isinstance( algo, geompyDC.GEOM._objref_GEOM_Object)):
+ algo, geom = geom, algo
+ if not algo: algo = NETGEN
+ pass
+ return Mesh_Tetrahedron(self, algo, geom)
- ## Check if the given "StartEndLength" hypothesis has the same parameters as given arguments
- def CompareStartEndLength(self, hyp, args):
- if IsEqual(hyp.GetLength(1), args[0]):
- if IsEqual(hyp.GetLength(0), args[1]):
- return True
- return False
+ ## Creates a hexahedron 3D algorithm for solids.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom If defined, subshape to be meshed
+ ## def Hexahedron(self, geom=0):
+ ## return Mesh_Hexahedron(self, geom)
+ def Hexahedron(self, algo=Hexa, geom=0):
+ ## if Hexahedron(geom, algo) or Hexahedron(geom) is called by mistake
+ if ( isinstance(algo, geompyDC.GEOM._objref_GEOM_Object) ):
+ if geom in [Hexa, Hexotic]: algo, geom = geom, algo
+ elif geom == 0: algo, geom = Hexa, algo
+ return Mesh_Hexahedron(self, algo, geom)
- ## Define "Deflection1D" hypothesis
- # @param d for the deflection
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def Deflection1D(self, d, UseExisting=0):
- hyp = self.Hypothesis("Deflection1D", [d], UseExisting=UseExisting,
- CompareMethod=self.CompareDeflection1D)
- hyp.SetDeflection(d)
- return hyp
+ ## Deprecated, only for compatibility!
+ def Netgen(self, is3D, geom=0):
+ return Mesh_Netgen(self, is3D, geom)
- ## Check if the given "Deflection1D" hypothesis has the same parameters as given arguments
- def CompareDeflection1D(self, hyp, args):
- return IsEqual(hyp.GetDeflection(), args[0])
+ ## Creates a projection 1D algorithm for edges.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom If defined, subshape to be meshed
+ def Projection1D(self, geom=0):
+ return Mesh_Projection1D(self, geom)
- ## Define "Propagation" hypothesis that propagate all other hypothesis on all others edges that are in
- # the opposite side in the case of quadrangular faces
- def Propagation(self):
- return self.Hypothesis("Propagation", UseExisting=1, CompareMethod=self.CompareEqualHyp)
+ ## Creates a projection 2D algorithm for faces.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom If defined, subshape to be meshed
+ def Projection2D(self, geom=0):
+ return Mesh_Projection2D(self, geom)
- ## Define "AutomaticLength" hypothesis
- # @param fineness for the fineness [0-1]
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def AutomaticLength(self, fineness=0, UseExisting=0):
- hyp = self.Hypothesis("AutomaticLength",[fineness],UseExisting=UseExisting,
- CompareMethod=self.CompareAutomaticLength)
- hyp.SetFineness( fineness )
- return hyp
+ ## Creates a projection 3D algorithm for solids.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom If defined, subshape to be meshed
+ def Projection3D(self, geom=0):
+ return Mesh_Projection3D(self, geom)
- ## Check if the given "AutomaticLength" hypothesis has the same parameters as given arguments
- def CompareAutomaticLength(self, hyp, args):
- return IsEqual(hyp.GetFineness(), args[0])
+ ## Creates a 3D extrusion (Prism 3D) or RadialPrism 3D algorithm for solids.
+ # If the optional \a geom parameter is not sets, this algorithm is global.
+ # Otherwise, this algorithm define a submesh based on \a geom subshape.
+ # @param geom If defined, subshape to be meshed
+ def Prism(self, geom=0):
+ shape = geom
+ if shape==0:
+ shape = self.geom
+ nbSolids = len( self.geompyD.SubShapeAll( shape, geompyDC.ShapeType["SOLID"] ))
+ nbShells = len( self.geompyD.SubShapeAll( shape, geompyDC.ShapeType["SHELL"] ))
+ if nbSolids == 0 or nbSolids == nbShells:
+ return Mesh_Prism3D(self, geom)
+ return Mesh_RadialPrism3D(self, geom)
- ## Define "SegmentLengthAroundVertex" hypothesis
- # @param length for the segment length
- # @param vertex for the length localization: vertex index [0,1] | vertex object.
- # Any other integer value means what hypo will be set on the
- # whole 1D shape, where Mesh_Segment algorithm is assigned.
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def LengthNearVertex(self, length, vertex=0, UseExisting=0):
- import types
- store_geom = self.geom
- if type(vertex) is types.IntType:
- if vertex == 0 or vertex == 1:
- vertex = self.mesh.geompyD.SubShapeAllSorted(self.geom, geompyDC.ShapeType["VERTEX"])[vertex]
- self.geom = vertex
+ ## Compute the mesh and return the status of the computation
+ def Compute(self, geom=0):
+ if geom == 0 or not isinstance(geom, geompyDC.GEOM._objref_GEOM_Object):
+ if self.geom == 0:
+ print "Compute impossible: mesh is not constructed on geom shape."
+ return 0
+ else:
+ geom = self.geom
+ ok = False
+ try:
+ ok = self.smeshpyD.Compute(self.mesh, geom)
+ except SALOME.SALOME_Exception, ex:
+ print "Mesh computation failed, exception caught:"
+ print " ", ex.details.text
+ except:
+ import traceback
+ print "Mesh computation failed, exception caught:"
+ traceback.print_exc()
+ if not ok:
+ errors = self.smeshpyD.GetAlgoState( self.mesh, geom )
+ allReasons = ""
+ for err in errors:
+ if err.isGlobalAlgo:
+ glob = "global"
+ else:
+ glob = "local"
+ pass
+ dim = err.algoDim
+ name = err.algoName
+ if len(name) == 0:
+ reason = '%s %sD algorithm is missing' % (glob, dim)
+ elif err.state == HYP_MISSING:
+ reason = ('%s %sD algorithm "%s" misses %sD hypothesis'
+ % (glob, dim, name, dim))
+ elif err.state == HYP_NOTCONFORM:
+ reason = 'Global "Not Conform mesh allowed" hypothesis is missing'
+ elif err.state == HYP_BAD_PARAMETER:
+ reason = ('Hypothesis of %s %sD algorithm "%s" has a bad parameter value'
+ % ( glob, dim, name ))
+ elif err.state == HYP_BAD_GEOMETRY:
+ reason = ('%s %sD algorithm "%s" is assigned to geometry mismatching'
+ 'its expectation' % ( glob, dim, name ))
+ else:
+ reason = "For unknown reason."+\
+ " Revise Mesh.Compute() implementation in smeshDC.py!"
+ pass
+ if allReasons != "":
+ allReasons += "\n"
+ pass
+ allReasons += reason
+ pass
+ if allReasons != "":
+ print '"' + GetName(self.mesh) + '"',"has not been computed:"
+ print allReasons
+ else:
+ print '"' + GetName(self.mesh) + '"',"has not been computed."
pass
pass
- else:
- self.geom = vertex
+ if salome.sg.hasDesktop():
+ smeshgui = salome.ImportComponentGUI("SMESH")
+ smeshgui.Init(salome.myStudyId)
+ smeshgui.SetMeshIcon( salome.ObjectToID( self.mesh ), ok, (self.NbNodes()==0) )
+ salome.sg.updateObjBrowser(1)
pass
- ### 0D algorithm
- if self.geom is None:
- raise RuntimeError, "Attemp to create SegmentAroundVertex_0D algoritm on None shape"
- name = GetName(self.geom)
- if name == NO_NAME:
- piece = self.mesh.geom
- name = self.mesh.geompyD.SubShapeName(self.geom, piece)
- self.mesh.geompyD.addToStudyInFather(piece, self.geom, name)
- algo = self.FindAlgorithm("SegmentAroundVertex_0D", self.mesh.smeshpyD)
- if algo is None:
- algo = self.mesh.smeshpyD.CreateHypothesis("SegmentAroundVertex_0D", "libStdMeshersEngine.so")
+ return ok
+
+ ## Compute tetrahedral mesh using AutomaticLength + MEFISTO + NETGEN
+ # The parameter \a fineness [0,-1] defines mesh fineness
+ def AutomaticTetrahedralization(self, fineness=0):
+ dim = self.MeshDimension()
+ # assign hypotheses
+ self.RemoveGlobalHypotheses()
+ self.Segment().AutomaticLength(fineness)
+ if dim > 1 :
+ self.Triangle().LengthFromEdges()
pass
- status = self.mesh.mesh.AddHypothesis(self.geom, algo)
- TreatHypoStatus(status, "SegmentAroundVertex_0D", name, True)
- ###
- hyp = self.Hypothesis("SegmentLengthAroundVertex", [length], UseExisting=UseExisting,
- CompareMethod=self.CompareLengthNearVertex)
- self.geom = store_geom
- hyp.SetLength( length )
- return hyp
+ if dim > 2 :
+ self.Tetrahedron(NETGEN)
+ pass
+ return self.Compute()
- ## Check if the given "LengthNearVertex" hypothesis has the same parameters as given arguments
- def CompareLengthNearVertex(self, hyp, args):
- return IsEqual(hyp.GetLength(), args[0])
+ ## Compute hexahedral mesh using AutomaticLength + Quadrangle + Hexahedron
+ # The parameter \a fineness [0,-1] defines mesh fineness
+ def AutomaticHexahedralization(self, fineness=0):
+ dim = self.MeshDimension()
+ # assign hypotheses
+ self.RemoveGlobalHypotheses()
+ self.Segment().AutomaticLength(fineness)
+ if dim > 1 :
+ self.Quadrangle()
+ pass
+ if dim > 2 :
+ self.Hexahedron()
+ pass
+ return self.Compute()
- ## Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges.
- # If the 2D mesher sees that all boundary edges are quadratic ones,
- # it generates quadratic faces, else it generates linear faces using
- # medium nodes as if they were vertex ones.
- # The 3D mesher generates quadratic volumes only if all boundary faces
- # are quadratic ones, else it fails.
- def QuadraticMesh(self):
- hyp = self.Hypothesis("QuadraticMesh", UseExisting=1, CompareMethod=self.CompareEqualHyp)
- return hyp
+ ## Assign hypothesis
+ # @param hyp is a hypothesis to assign
+ # @param geom is subhape of mesh geometry
+ def AddHypothesis(self, hyp, geom=0):
+ if isinstance( hyp, Mesh_Algorithm ):
+ hyp = hyp.GetAlgorithm()
+ pass
+ if not geom:
+ geom = self.geom
+ pass
+ status = self.mesh.AddHypothesis(geom, hyp)
+ isAlgo = hyp._narrow( SMESH_Algo )
+ TreatHypoStatus( status, GetName( hyp ), GetName( geom ), isAlgo )
+ return status
-# Public class: Mesh_CompositeSegment
-# --------------------------
+ ## Unassign hypothesis
+ # @param hyp is a hypothesis to unassign
+ # @param geom is subhape of mesh geometry
+ def RemoveHypothesis(self, hyp, geom=0):
+ if isinstance( hyp, Mesh_Algorithm ):
+ hyp = hyp.GetAlgorithm()
+ pass
+ if not geom:
+ geom = self.geom
+ pass
+ status = self.mesh.RemoveHypothesis(geom, hyp)
+ return status
-## Class to define a segment 1D algorithm for discretization
-#
-# More details.
-class Mesh_CompositeSegment(Mesh_Segment):
+ ## Get the list of hypothesis added on a geom
+ # @param geom is subhape of mesh geometry
+ def GetHypothesisList(self, geom):
+ return self.mesh.GetHypothesisList( geom )
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- self.Create(mesh, geom, "CompositeSegment_1D")
+ ## Removes all global hypotheses
+ def RemoveGlobalHypotheses(self):
+ current_hyps = self.mesh.GetHypothesisList( self.geom )
+ for hyp in current_hyps:
+ self.mesh.RemoveHypothesis( self.geom, hyp )
+ pass
+ pass
+ ## Create a mesh group based on geometric object \a grp
+ # and give a \a name, \n if this parameter is not defined
+ # the name is the same as the geometric group name \n
+ # Note: Works like GroupOnGeom().
+ # @param grp is a geometric group, a vertex, an edge, a face or a solid
+ # @param name is the name of the mesh group
+ # @return SMESH_GroupOnGeom
+ def Group(self, grp, name=""):
+ return self.GroupOnGeom(grp, name)
-# Public class: Mesh_Segment_Python
-# ---------------------------------
+ ## Deprecated, only for compatibility! Please, use ExportMED() method instead.
+ # Export the mesh in a file with the MED format and choice the \a version of MED format
+ # @param f is the file name
+ # @param version values are SMESH.MED_V2_1, SMESH.MED_V2_2
+ def ExportToMED(self, f, version, opt=0):
+ self.mesh.ExportToMED(f, opt, version)
-## Class to define a segment 1D algorithm for discretization with python function
-#
-# More details.
-class Mesh_Segment_Python(Mesh_Segment):
+ ## Export the mesh in a file with the MED format
+ # @param f is the file name
+ # @param auto_groups boolean parameter for creating/not creating
+ # the groups Group_On_All_Nodes, Group_On_All_Faces, ... ;
+ # the typical use is auto_groups=false.
+ # @param version MED format version(MED_V2_1 or MED_V2_2)
+ def ExportMED(self, f, auto_groups=0, version=MED_V2_2):
+ self.mesh.ExportToMED(f, auto_groups, version)
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- import Python1dPlugin
- self.Create(mesh, geom, "Python_1D", "libPython1dEngine.so")
+ ## Export the mesh in a file with the DAT format
+ # @param f is the file name
+ def ExportDAT(self, f):
+ self.mesh.ExportDAT(f)
- ## Define "PythonSplit1D" hypothesis based on the Erwan Adam patch, awaiting equivalent SALOME functionality
- # @param n for the number of segments that cut an edge
- # @param func for the python function that calculate the length of all segments
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def PythonSplit1D(self, n, func, UseExisting=0):
- hyp = self.Hypothesis("PythonSplit1D", [n], "libPython1dEngine.so",
- UseExisting=UseExisting, CompareMethod=self.ComparePythonSplit1D)
- hyp.SetNumberOfSegments(n)
- hyp.SetPythonLog10RatioFunction(func)
- return hyp
+ ## Export the mesh in a file with the UNV format
+ # @param f is the file name
+ def ExportUNV(self, f):
+ self.mesh.ExportUNV(f)
- ## Check if the given "PythonSplit1D" hypothesis has the same parameters as given arguments
- def ComparePythonSplit1D(self, hyp, args):
- #if hyp.GetNumberOfSegments() == args[0]:
- # if hyp.GetPythonLog10RatioFunction() == args[1]:
- # return True
- return False
+ ## Export the mesh in a file with the STL format
+ # @param f is the file name
+ # @param ascii defined the kind of file contents
+ def ExportSTL(self, f, ascii=1):
+ self.mesh.ExportSTL(f, ascii)
-# Public class: Mesh_Triangle
-# ---------------------------
-## Class to define a triangle 2D algorithm
-#
-# More details.
-class Mesh_Triangle(Mesh_Algorithm):
+ # Operations with groups:
+ # ----------------------
- # default values
- algoType = 0
- params = 0
+ ## Creates an empty mesh group
+ # @param elementType is the type of elements in the group
+ # @param name is the name of the mesh group
+ # @return SMESH_Group
+ def CreateEmptyGroup(self, elementType, name):
+ return self.mesh.CreateGroup(elementType, name)
- _angleMeshS = 8
- _gradation = 1.1
+ ## Creates a mesh group based on geometric object \a grp
+ # and give a \a name, \n if this parameter is not defined
+ # the name is the same as the geometric group name
+ # @param grp is a geometric group, a vertex, an edge, a face or a solid
+ # @param name is the name of the mesh group
+ # @return SMESH_GroupOnGeom
+ def GroupOnGeom(self, grp, name="", typ=None):
+ if name == "":
+ name = grp.GetName()
- ## Private constructor.
- def __init__(self, mesh, algoType, geom=0):
- Mesh_Algorithm.__init__(self)
+ if typ == None:
+ tgeo = str(grp.GetShapeType())
+ if tgeo == "VERTEX":
+ typ = NODE
+ elif tgeo == "EDGE":
+ typ = EDGE
+ elif tgeo == "FACE":
+ typ = FACE
+ elif tgeo == "SOLID":
+ typ = VOLUME
+ elif tgeo == "SHELL":
+ typ = VOLUME
+ elif tgeo == "COMPOUND":
+ if len( self.geompyD.GetObjectIDs( grp )) == 0:
+ print "Mesh.Group: empty geometric group", GetName( grp )
+ return 0
+ tgeo = self.geompyD.GetType(grp)
+ if tgeo == geompyDC.ShapeType["VERTEX"]:
+ typ = NODE
+ elif tgeo == geompyDC.ShapeType["EDGE"]:
+ typ = EDGE
+ elif tgeo == geompyDC.ShapeType["FACE"]:
+ typ = FACE
+ elif tgeo == geompyDC.ShapeType["SOLID"]:
+ typ = VOLUME
- self.algoType = algoType
- if algoType == MEFISTO:
- self.Create(mesh, geom, "MEFISTO_2D")
- pass
- elif algoType == BLSURF:
- import BLSURFPlugin
- self.Create(mesh, geom, "BLSURF", "libBLSURFEngine.so")
- self.SetPhysicalMesh()
- elif algoType == NETGEN:
- if noNETGENPlugin:
- print "Warning: NETGENPlugin module unavailable"
- pass
- self.Create(mesh, geom, "NETGEN_2D", "libNETGENEngine.so")
- pass
- elif algoType == NETGEN_2D:
- if noNETGENPlugin:
- print "Warning: NETGENPlugin module unavailable"
- pass
- self.Create(mesh, geom, "NETGEN_2D_ONLY", "libNETGENEngine.so")
- pass
+ if typ == None:
+ print "Mesh.Group: bad first argument: expected a group, a vertex, an edge, a face or a solid"
+ return 0
+ else:
+ return self.mesh.CreateGroupFromGEOM(typ, name, grp)
- ## Define "MaxElementArea" hypothesis to give the maximum area of each triangle
- # @param area for the maximum area of each triangle
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- #
- # Only for algoType == MEFISTO || NETGEN_2D
- def MaxElementArea(self, area, UseExisting=0):
- if self.algoType == MEFISTO or self.algoType == NETGEN_2D:
- hyp = self.Hypothesis("MaxElementArea", [area], UseExisting=UseExisting,
- CompareMethod=self.CompareMaxElementArea)
- hyp.SetMaxElementArea(area)
- return hyp
- elif self.algoType == NETGEN:
- print "Netgen 1D-2D algo doesn't support this hypothesis"
- return None
+ ## Create a mesh group by the given ids of elements
+ # @param groupName is the name of the mesh group
+ # @param elementType is the type of elements in the group
+ # @param elemIDs is the list of ids
+ # @return SMESH_Group
+ def MakeGroupByIds(self, groupName, elementType, elemIDs):
+ group = self.mesh.CreateGroup(elementType, groupName)
+ group.Add(elemIDs)
+ return group
- ## Check if the given "MaxElementArea" hypothesis has the same parameters as given arguments
- def CompareMaxElementArea(self, hyp, args):
- return IsEqual(hyp.GetMaxElementArea(), args[0])
+ ## Create a mesh group by the given conditions
+ # @param groupName is the name of the mesh group
+ # @param elementType is the type of elements in the group
+ # @param CritType is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. )
+ # @param Compare belong to {FT_LessThan, FT_MoreThan, FT_EqualTo}
+ # @param Treshold is threshold value (range of id ids as string, shape, numeric)
+ # @param UnaryOp is FT_LogicalNOT or FT_Undefined
+ # @return SMESH_Group
+ def MakeGroup(self,
+ groupName,
+ elementType,
+ CritType=FT_Undefined,
+ Compare=FT_EqualTo,
+ Treshold="",
+ UnaryOp=FT_Undefined):
+ aCriterion = self.smeshpyD.GetCriterion(elementType, CritType, Compare, Treshold, UnaryOp, FT_Undefined)
+ group = self.MakeGroupByCriterion(groupName, aCriterion)
+ return group
- ## Define "LengthFromEdges" hypothesis to build triangles
- # based on the length of the edges taken from the wire
- #
- # Only for algoType == MEFISTO || NETGEN_2D
- def LengthFromEdges(self):
- if self.algoType == MEFISTO or self.algoType == NETGEN_2D:
- hyp = self.Hypothesis("LengthFromEdges", UseExisting=1, CompareMethod=self.CompareEqualHyp)
- return hyp
- elif self.algoType == NETGEN:
- print "Netgen 1D-2D algo doesn't support this hypothesis"
- return None
+ ## Create a mesh group by the given criterion
+ # @param groupName is the name of the mesh group
+ # @param Criterion is the instance of Criterion class
+ # @return SMESH_Group
+ def MakeGroupByCriterion(self, groupName, Criterion):
+ aFilterMgr = self.smeshpyD.CreateFilterManager()
+ aFilter = aFilterMgr.CreateFilter()
+ aCriteria = []
+ aCriteria.append(Criterion)
+ aFilter.SetCriteria(aCriteria)
+ group = self.MakeGroupByFilter(groupName, aFilter)
+ return group
- ## Set PhysicalMesh
- # @param thePhysicalMesh is:
- # DefaultSize or Custom
- def SetPhysicalMesh(self, thePhysicalMesh=1):
- if self.params == 0:
- self.Parameters()
- self.params.SetPhysicalMesh(thePhysicalMesh)
+ ## Create a mesh group by the given criteria(list of criterions)
+ # @param groupName is the name of the mesh group
+ # @param Criteria is the list of criterions
+ # @return SMESH_Group
+ def MakeGroupByCriteria(self, groupName, theCriteria):
+ aFilterMgr = self.smeshpyD.CreateFilterManager()
+ aFilter = aFilterMgr.CreateFilter()
+ aFilter.SetCriteria(theCriteria)
+ group = self.MakeGroupByFilter(groupName, aFilter)
+ return group
- ## Set PhySize flag
- def SetPhySize(self, theVal):
- if self.params == 0:
- self.Parameters()
- self.params.SetPhySize(theVal)
+ ## Create a mesh group by the given filter
+ # @param groupName is the name of the mesh group
+ # @param Criterion is the instance of Filter class
+ # @return SMESH_Group
+ def MakeGroupByFilter(self, groupName, theFilter):
+ anIds = theFilter.GetElementsId(self.mesh)
+ anElemType = theFilter.GetElementType()
+ group = self.MakeGroupByIds(groupName, anElemType, anIds)
+ return group
- ## Set GeometricMesh
- # @param theGeometricMesh is:
- # DefaultGeom or Custom
- def SetGeometricMesh(self, theGeometricMesh=0):
- if self.params == 0:
- self.Parameters()
- if self.params.GetPhysicalMesh() == 0: theGeometricMesh = 1
- self.params.SetGeometricMesh(theGeometricMesh)
+ ## Pass mesh elements through the given filter and return ids
+ # @param theFilter is SMESH_Filter
+ # @return list of ids
+ def GetIdsFromFilter(self, theFilter):
+ return theFilter.GetElementsId(self.mesh)
- ## Set AngleMeshS flag
- def SetAngleMeshS(self, theVal=_angleMeshS):
- if self.params == 0:
- self.Parameters()
- if self.params.GetGeometricMesh() == 0: theVal = self._angleMeshS
- self.params.SetAngleMeshS(theVal)
+ ## Verify whether 2D mesh element has free edges(edges connected to one face only)\n
+ # Returns list of special structures(borders).
+ # @return list of SMESH.FreeEdges.Border structure: edge id and two its nodes ids.
+ def GetFreeBorders(self):
+ aFilterMgr = self.smeshpyD.CreateFilterManager()
+ aPredicate = aFilterMgr.CreateFreeEdges()
+ aPredicate.SetMesh(self.mesh)
+ aBorders = aPredicate.GetBorders()
+ return aBorders
- ## Set Gradation flag
- def SetGradation(self, theVal=_gradation):
- if self.params == 0:
- self.Parameters()
- if self.params.GetGeometricMesh() == 0: theVal = self._gradation
- self.params.SetGradation(theVal)
+ ## Remove a group
+ def RemoveGroup(self, group):
+ self.mesh.RemoveGroup(group)
- ## Set QuadAllowed flag
- #
- # Only for algoType == NETGEN || NETGEN_2D
- def SetQuadAllowed(self, toAllow=True):
- if self.algoType == NETGEN_2D:
- if toAllow: # add QuadranglePreference
- self.Hypothesis("QuadranglePreference", UseExisting=1, CompareMethod=self.CompareEqualHyp)
- else: # remove QuadranglePreference
- for hyp in self.mesh.GetHypothesisList( self.geom ):
- if hyp.GetName() == "QuadranglePreference":
- self.mesh.RemoveHypothesis( self.geom, hyp )
- pass
- pass
- pass
- return
- if self.params == 0:
- self.Parameters()
- if self.params:
- self.params.SetQuadAllowed(toAllow)
- return
+ ## Remove group with its contents
+ def RemoveGroupWithContents(self, group):
+ self.mesh.RemoveGroupWithContents(group)
- ## Define "Netgen 2D Parameters" hypothesis
- #
- # Only for algoType == NETGEN
- def Parameters(self):
- if self.algoType == NETGEN:
- self.params = self.Hypothesis("NETGEN_Parameters_2D", [],
- "libNETGENEngine.so", UseExisting=0)
- return self.params
- elif self.algoType == MEFISTO:
- print "Mefisto algo doesn't support NETGEN_Parameters_2D hypothesis"
- return None
- elif self.algoType == NETGEN_2D:
- print "NETGEN_2D_ONLY algo doesn't support 'NETGEN_Parameters_2D' hypothesis"
- print "NETGEN_2D_ONLY uses 'MaxElementArea' and 'LengthFromEdges' ones"
- return None
- elif self.algoType == BLSURF:
- self.params = self.Hypothesis("BLSURF_Parameters", [],
- "libBLSURFEngine.so", UseExisting=0)
- return self.params
- return None
+ ## Get the list of groups existing in the mesh
+ def GetGroups(self):
+ return self.mesh.GetGroups()
- ## Set MaxSize
- #
- # Only for algoType == NETGEN
- def SetMaxSize(self, theSize):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetMaxSize(theSize)
+ ## Get number of groups existing in the mesh
+ def NbGroups(self):
+ return self.mesh.NbGroups()
- ## Set SecondOrder flag
- #
- # Only for algoType == NETGEN
- def SetSecondOrder(self, theVal):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetSecondOrder(theVal)
-
- ## Set Optimize flag
- #
- # Only for algoType == NETGEN
- def SetOptimize(self, theVal):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetOptimize(theVal)
+ ## Get the list of names of groups existing in the mesh
+ def GetGroupNames(self):
+ groups = self.GetGroups()
+ names = []
+ for group in groups:
+ names.append(group.GetName())
+ return names
- ## Set Fineness
- # @param theFineness is:
- # VeryCoarse, Coarse, Moderate, Fine, VeryFine or Custom
- #
- # Only for algoType == NETGEN
- def SetFineness(self, theFineness):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetFineness(theFineness)
+ ## Union of two groups
+ # New group is created. All mesh elements that are
+ # present in initial groups are added to the new one
+ def UnionGroups(self, group1, group2, name):
+ return self.mesh.UnionGroups(group1, group2, name)
- ## Set GrowthRate
- #
- # Only for algoType == NETGEN
- def SetGrowthRate(self, theRate):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetGrowthRate(theRate)
+ ## Intersection of two groups
+ # New group is created. All mesh elements that are
+ # present in both initial groups are added to the new one.
+ def IntersectGroups(self, group1, group2, name):
+ return self.mesh.IntersectGroups(group1, group2, name)
- ## Set NbSegPerEdge
- #
- # Only for algoType == NETGEN
- def SetNbSegPerEdge(self, theVal):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetNbSegPerEdge(theVal)
+ ## Cut of two groups
+ # New group is created. All mesh elements that are present in
+ # main group but do not present in tool group are added to the new one
+ def CutGroups(self, mainGroup, toolGroup, name):
+ return self.mesh.CutGroups(mainGroup, toolGroup, name)
- ## Set NbSegPerRadius
- #
- # Only for algoType == NETGEN
- def SetNbSegPerRadius(self, theVal):
- if self.params == 0:
- self.Parameters()
- if self.params is not None:
- self.params.SetNbSegPerRadius(theVal)
- ## Set Decimesh flag
- def SetDecimesh(self, toAllow=False):
- if self.params == 0:
- self.Parameters()
- self.params.SetDecimesh(toAllow)
+ # Get some info about mesh:
+ # ------------------------
- pass
+ ## Get the log of nodes and elements added or removed since previous
+ # clear of the log.
+ # @param clearAfterGet log is emptied after Get (safe if concurrents access)
+ # @return list of log_block structures:
+ # commandType
+ # number
+ # coords
+ # indexes
+ def GetLog(self, clearAfterGet):
+ return self.mesh.GetLog(clearAfterGet)
+ ## Clear the log of nodes and elements added or removed since previous
+ # clear. Must be used immediately after GetLog if clearAfterGet is false.
+ def ClearLog(self):
+ self.mesh.ClearLog()
-# Public class: Mesh_Quadrangle
-# -----------------------------
+ def SetAutoColor(self, color):
+ self.mesh.SetAutoColor(color)
-## Class to define a quadrangle 2D algorithm
-#
-# More details.
-class Mesh_Quadrangle(Mesh_Algorithm):
+ def GetAutoColor(self):
+ return self.mesh.GetAutoColor()
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "Quadrangle_2D")
+ ## Get the internal Id
+ def GetId(self):
+ return self.mesh.GetId()
- ## Define "QuadranglePreference" hypothesis, forcing construction
- # of quadrangles if the number of nodes on opposite edges is not the same
- # in the case where the global number of nodes on edges is even
- def QuadranglePreference(self):
- hyp = self.Hypothesis("QuadranglePreference", UseExisting=1,
- CompareMethod=self.CompareEqualHyp)
- return hyp
+ ## Get the study Id
+ def GetStudyId(self):
+ return self.mesh.GetStudyId()
-# Public class: Mesh_Tetrahedron
-# ------------------------------
+ ## Check group names for duplications.
+ # Consider maximum group name length stored in MED file.
+ def HasDuplicatedGroupNamesMED(self):
+ return self.mesh.HasDuplicatedGroupNamesMED()
-## Class to define a tetrahedron 3D algorithm
-#
-# More details.
-class Mesh_Tetrahedron(Mesh_Algorithm):
+ ## Obtain instance of SMESH_MeshEditor
+ def GetMeshEditor(self):
+ return self.mesh.GetMeshEditor()
- params = 0
- algoType = 0
+ ## Get MED Mesh
+ def GetMEDMesh(self):
+ return self.mesh.GetMEDMesh()
- ## Private constructor.
- def __init__(self, mesh, algoType, geom=0):
- Mesh_Algorithm.__init__(self)
- if algoType == NETGEN:
- self.Create(mesh, geom, "NETGEN_3D", "libNETGENEngine.so")
- pass
+ # Get informations about mesh contents:
+ # ------------------------------------
- elif algoType == GHS3D:
- import GHS3DPlugin
- self.Create(mesh, geom, "GHS3D_3D" , "libGHS3DEngine.so")
- pass
+ ## Returns number of nodes in mesh
+ def NbNodes(self):
+ return self.mesh.NbNodes()
- elif algoType == FULL_NETGEN:
- if noNETGENPlugin:
- print "Warning: NETGENPlugin module has not been imported."
- self.Create(mesh, geom, "NETGEN_2D3D", "libNETGENEngine.so")
- pass
+ ## Returns number of elements in mesh
+ def NbElements(self):
+ return self.mesh.NbElements()
- self.algoType = algoType
+ ## Returns number of edges in mesh
+ def NbEdges(self):
+ return self.mesh.NbEdges()
- ## Define "MaxElementVolume" hypothesis to give the maximun volume of each tetrahedral
- # @param vol for the maximum volume of each tetrahedral
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def MaxElementVolume(self, vol, UseExisting=0):
- hyp = self.Hypothesis("MaxElementVolume", [vol], UseExisting=UseExisting,
- CompareMethod=self.CompareMaxElementVolume)
- hyp.SetMaxElementVolume(vol)
- return hyp
+ ## Returns number of edges with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbEdgesOfOrder(self, elementOrder):
+ return self.mesh.NbEdgesOfOrder(elementOrder)
- ## Check if the given "MaxElementVolume" hypothesis has the same parameters as given arguments
- def CompareMaxElementVolume(self, hyp, args):
- return IsEqual(hyp.GetMaxElementVolume(), args[0])
+ ## Returns number of faces in mesh
+ def NbFaces(self):
+ return self.mesh.NbFaces()
- ## Define "Netgen 3D Parameters" hypothesis
- def Parameters(self):
- if (self.algoType == FULL_NETGEN):
- self.params = self.Hypothesis("NETGEN_Parameters", [],
- "libNETGENEngine.so", UseExisting=0)
- return self.params
- else:
- print "Algo doesn't support this hypothesis"
- return None
+ ## Returns number of faces with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbFacesOfOrder(self, elementOrder):
+ return self.mesh.NbFacesOfOrder(elementOrder)
- ## Set MaxSize
- def SetMaxSize(self, theSize):
- if self.params == 0:
- self.Parameters()
- self.params.SetMaxSize(theSize)
+ ## Returns number of triangles in mesh
+ def NbTriangles(self):
+ return self.mesh.NbTriangles()
- ## Set SecondOrder flag
- def SetSecondOrder(self, theVal):
- if self.params == 0:
- self.Parameters()
- self.params.SetSecondOrder(theVal)
+ ## Returns number of triangles with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbTrianglesOfOrder(self, elementOrder):
+ return self.mesh.NbTrianglesOfOrder(elementOrder)
- ## Set Optimize flag
- def SetOptimize(self, theVal):
- if self.params == 0:
- self.Parameters()
- self.params.SetOptimize(theVal)
+ ## Returns number of quadrangles in mesh
+ def NbQuadrangles(self):
+ return self.mesh.NbQuadrangles()
- ## Set Fineness
- # @param theFineness is:
- # VeryCoarse, Coarse, Moderate, Fine, VeryFine or Custom
- def SetFineness(self, theFineness):
- if self.params == 0:
- self.Parameters()
- self.params.SetFineness(theFineness)
+ ## Returns number of quadrangles with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbQuadranglesOfOrder(self, elementOrder):
+ return self.mesh.NbQuadranglesOfOrder(elementOrder)
- ## Set GrowthRate
- def SetGrowthRate(self, theRate):
- if self.params == 0:
- self.Parameters()
- self.params.SetGrowthRate(theRate)
+ ## Returns number of polygons in mesh
+ def NbPolygons(self):
+ return self.mesh.NbPolygons()
- ## Set NbSegPerEdge
- def SetNbSegPerEdge(self, theVal):
- if self.params == 0:
- self.Parameters()
- self.params.SetNbSegPerEdge(theVal)
+ ## Returns number of volumes in mesh
+ def NbVolumes(self):
+ return self.mesh.NbVolumes()
- ## Set NbSegPerRadius
- def SetNbSegPerRadius(self, theVal):
- if self.params == 0:
- self.Parameters()
- self.params.SetNbSegPerRadius(theVal)
+ ## Returns number of volumes with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbVolumesOfOrder(self, elementOrder):
+ return self.mesh.NbVolumesOfOrder(elementOrder)
-# Public class: Mesh_Hexahedron
-# ------------------------------
+ ## Returns number of tetrahedrons in mesh
+ def NbTetras(self):
+ return self.mesh.NbTetras()
-## Class to define a hexahedron 3D algorithm
-#
-# More details.
-class Mesh_Hexahedron(Mesh_Algorithm):
+ ## Returns number of tetrahedrons with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbTetrasOfOrder(self, elementOrder):
+ return self.mesh.NbTetrasOfOrder(elementOrder)
- params = 0
- algoType = 0
+ ## Returns number of hexahedrons in mesh
+ def NbHexas(self):
+ return self.mesh.NbHexas()
- ## Private constructor.
- def __init__(self, mesh, algoType=Hexa, geom=0):
- Mesh_Algorithm.__init__(self)
+ ## Returns number of hexahedrons with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbHexasOfOrder(self, elementOrder):
+ return self.mesh.NbHexasOfOrder(elementOrder)
- self.algoType = algoType
+ ## Returns number of pyramids in mesh
+ def NbPyramids(self):
+ return self.mesh.NbPyramids()
- if algoType == Hexa:
- self.Create(mesh, geom, "Hexa_3D")
- pass
+ ## Returns number of pyramids with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbPyramidsOfOrder(self, elementOrder):
+ return self.mesh.NbPyramidsOfOrder(elementOrder)
- elif algoType == Hexotic:
- import HexoticPlugin
- self.Create(mesh, geom, "Hexotic_3D", "libHexoticEngine.so")
- pass
+ ## Returns number of prisms in mesh
+ def NbPrisms(self):
+ return self.mesh.NbPrisms()
- ## Define "MinMaxQuad" hypothesis to give the three hexotic parameters
- def MinMaxQuad(self, min=3, max=8, quad=True):
- self.params = self.Hypothesis("Hexotic_Parameters", [], "libHexoticEngine.so",
- UseExisting=0)
- self.params.SetHexesMinLevel(min)
- self.params.SetHexesMaxLevel(max)
- self.params.SetHexoticQuadrangles(quad)
- return self.params
+ ## Returns number of prisms with given order in mesh
+ # @param elementOrder is order of elements:
+ # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
+ def NbPrismsOfOrder(self, elementOrder):
+ return self.mesh.NbPrismsOfOrder(elementOrder)
-# Deprecated, only for compatibility!
-# Public class: Mesh_Netgen
-# ------------------------------
+ ## Returns number of polyhedrons in mesh
+ def NbPolyhedrons(self):
+ return self.mesh.NbPolyhedrons()
-## Class to define a NETGEN-based 2D or 3D algorithm
-# that need no discrete boundary (i.e. independent)
-#
-# This class is deprecated, only for compatibility!
-#
-# More details.
-class Mesh_Netgen(Mesh_Algorithm):
+ ## Returns number of submeshes in mesh
+ def NbSubMesh(self):
+ return self.mesh.NbSubMesh()
- is3D = 0
+ ## Returns list of mesh elements ids
+ def GetElementsId(self):
+ return self.mesh.GetElementsId()
- ## Private constructor.
- def __init__(self, mesh, is3D, geom=0):
- Mesh_Algorithm.__init__(self)
+ ## Returns list of ids of mesh elements with given type
+ # @param elementType is required type of elements
+ def GetElementsByType(self, elementType):
+ return self.mesh.GetElementsByType(elementType)
- if noNETGENPlugin:
- print "Warning: NETGENPlugin module has not been imported."
+ ## Returns list of mesh nodes ids
+ def GetNodesId(self):
+ return self.mesh.GetNodesId()
- self.is3D = is3D
- if is3D:
- self.Create(mesh, geom, "NETGEN_2D3D", "libNETGENEngine.so")
- pass
+ # Get informations about mesh elements:
+ # ------------------------------------
- else:
- self.Create(mesh, geom, "NETGEN_2D", "libNETGENEngine.so")
- pass
+ ## Returns type of mesh element
+ def GetElementType(self, id, iselem):
+ return self.mesh.GetElementType(id, iselem)
- ## Define hypothesis containing parameters of the algorithm
- def Parameters(self):
- if self.is3D:
- hyp = self.Hypothesis("NETGEN_Parameters", [],
- "libNETGENEngine.so", UseExisting=0)
+ ## Returns list of submesh elements ids
+ # @param Shape is geom object(subshape) IOR
+ # Shape must be subshape of a ShapeToMesh()
+ def GetSubMeshElementsId(self, Shape):
+ if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
+ ShapeID = Shape.GetSubShapeIndices()[0]
else:
- hyp = self.Hypothesis("NETGEN_Parameters_2D", [],
- "libNETGENEngine.so", UseExisting=0)
- return hyp
+ ShapeID = Shape
+ return self.mesh.GetSubMeshElementsId(ShapeID)
-# Public class: Mesh_Projection1D
-# ------------------------------
+ ## Returns list of submesh nodes ids
+ # @param Shape is geom object(subshape) IOR
+ # Shape must be subshape of a ShapeToMesh()
+ def GetSubMeshNodesId(self, Shape, all):
+ if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
+ ShapeID = Shape.GetSubShapeIndices()[0]
+ else:
+ ShapeID = Shape
+ return self.mesh.GetSubMeshNodesId(ShapeID, all)
-## Class to define a projection 1D algorithm
-#
-# More details.
-class Mesh_Projection1D(Mesh_Algorithm):
+ ## Returns list of ids of submesh elements with given type
+ # @param Shape is geom object(subshape) IOR
+ # Shape must be subshape of a ShapeToMesh()
+ def GetSubMeshElementType(self, Shape):
+ if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
+ ShapeID = Shape.GetSubShapeIndices()[0]
+ else:
+ ShapeID = Shape
+ return self.mesh.GetSubMeshElementType(ShapeID)
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "Projection_1D")
+ ## Get mesh description
+ def Dump(self):
+ return self.mesh.Dump()
- ## Define "Source Edge" hypothesis, specifying a meshed edge to
- # take a mesh pattern from, and optionally association of vertices
- # between the source edge and a target one (where a hipothesis is assigned to)
- # @param edge to take nodes distribution from
- # @param mesh to take nodes distribution from (optional)
- # @param srcV is vertex of \a edge to associate with \a tgtV (optional)
- # @param tgtV is vertex of \a the edge where the algorithm is assigned,
- # to associate with \a srcV (optional)
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def SourceEdge(self, edge, mesh=None, srcV=None, tgtV=None, UseExisting=0):
- hyp = self.Hypothesis("ProjectionSource1D", [edge,mesh,srcV,tgtV],
- UseExisting=0)
- #UseExisting=UseExisting, CompareMethod=self.CompareSourceEdge)
- hyp.SetSourceEdge( edge )
- if not mesh is None and isinstance(mesh, Mesh):
- mesh = mesh.GetMesh()
- hyp.SetSourceMesh( mesh )
- hyp.SetVertexAssociation( srcV, tgtV )
- return hyp
- ## Check if the given "SourceEdge" hypothesis has the same parameters as given arguments
- #def CompareSourceEdge(self, hyp, args):
- # # seems to be not really useful to reuse existing "SourceEdge" hypothesis
- # return False
+ # Get information about nodes and elements of mesh by its ids:
+ # -----------------------------------------------------------
+ ## Get XYZ coordinates of node as list of double
+ # \n If there is not node for given ID - returns empty list
+ def GetNodeXYZ(self, id):
+ return self.mesh.GetNodeXYZ(id)
-# Public class: Mesh_Projection2D
-# ------------------------------
+ ## For given node returns list of IDs of inverse elements
+ # \n If there is not node for given ID - returns empty list
+ def GetNodeInverseElements(self, id):
+ return self.mesh.GetNodeInverseElements(id)
-## Class to define a projection 2D algorithm
-#
-# More details.
-class Mesh_Projection2D(Mesh_Algorithm):
+ ## @brief Return position of a node on shape
+ # @return SMESH::NodePosition
+ def GetNodePosition(self,NodeID):
+ return self.mesh.GetNodePosition(NodeID)
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "Projection_2D")
+ ## If given element is node returns IDs of shape from position
+ # \n If there is not node for given ID - returns -1
+ def GetShapeID(self, id):
+ return self.mesh.GetShapeID(id)
- ## Define "Source Face" hypothesis, specifying a meshed face to
- # take a mesh pattern from, and optionally association of vertices
- # between the source face and a target one (where a hipothesis is assigned to)
- # @param face to take mesh pattern from
- # @param mesh to take mesh pattern from (optional)
- # @param srcV1 is vertex of \a face to associate with \a tgtV1 (optional)
- # @param tgtV1 is vertex of \a the face where the algorithm is assigned,
- # to associate with \a srcV1 (optional)
- # @param srcV2 is vertex of \a face to associate with \a tgtV1 (optional)
- # @param tgtV2 is vertex of \a the face where the algorithm is assigned,
- # to associate with \a srcV2 (optional)
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- #
- # Note: association vertices must belong to one edge of a face
- def SourceFace(self, face, mesh=None, srcV1=None, tgtV1=None,
- srcV2=None, tgtV2=None, UseExisting=0):
- hyp = self.Hypothesis("ProjectionSource2D", [face,mesh,srcV1,tgtV1,srcV2,tgtV2],
- UseExisting=0)
- #UseExisting=UseExisting, CompareMethod=self.CompareSourceFace)
- hyp.SetSourceFace( face )
- if not mesh is None and isinstance(mesh, Mesh):
- mesh = mesh.GetMesh()
- hyp.SetSourceMesh( mesh )
- hyp.SetVertexAssociation( srcV1, srcV2, tgtV1, tgtV2 )
- return hyp
+ ## For given element returns ID of result shape after
+ # FindShape() from SMESH_MeshEditor
+ # \n If there is not element for given ID - returns -1
+ def GetShapeIDForElem(self,id):
+ return self.mesh.GetShapeIDForElem(id)
- ## Check if the given "SourceFace" hypothesis has the same parameters as given arguments
- #def CompareSourceFace(self, hyp, args):
- # # seems to be not really useful to reuse existing "SourceFace" hypothesis
- # return False
+ ## Returns number of nodes for given element
+ # \n If there is not element for given ID - returns -1
+ def GetElemNbNodes(self, id):
+ return self.mesh.GetElemNbNodes(id)
-# Public class: Mesh_Projection3D
-# ------------------------------
+ ## Returns ID of node by given index for given element
+ # \n If there is not element for given ID - returns -1
+ # \n If there is not node for given index - returns -2
+ def GetElemNode(self, id, index):
+ return self.mesh.GetElemNode(id, index)
-## Class to define a projection 3D algorithm
-#
-# More details.
-class Mesh_Projection3D(Mesh_Algorithm):
-
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "Projection_3D")
+ ## Returns IDs of nodes of given element
+ def GetElemNodes(self, id):
+ return self.mesh.GetElemNodes(id)
- ## Define "Source Shape 3D" hypothesis, specifying a meshed solid to
- # take a mesh pattern from, and optionally association of vertices
- # between the source solid and a target one (where a hipothesis is assigned to)
- # @param solid to take mesh pattern from
- # @param mesh to take mesh pattern from (optional)
- # @param srcV1 is vertex of \a solid to associate with \a tgtV1 (optional)
- # @param tgtV1 is vertex of \a the solid where the algorithm is assigned,
- # to associate with \a srcV1 (optional)
- # @param srcV2 is vertex of \a solid to associate with \a tgtV1 (optional)
- # @param tgtV2 is vertex of \a the solid where the algorithm is assigned,
- # to associate with \a srcV2 (optional)
- # @param UseExisting - if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- #
- # Note: association vertices must belong to one edge of a solid
- def SourceShape3D(self, solid, mesh=0, srcV1=0, tgtV1=0,
- srcV2=0, tgtV2=0, UseExisting=0):
- hyp = self.Hypothesis("ProjectionSource3D",
- [solid,mesh,srcV1,tgtV1,srcV2,tgtV2],
- UseExisting=0)
- #UseExisting=UseExisting, CompareMethod=self.CompareSourceShape3D)
- hyp.SetSource3DShape( solid )
- if not mesh is None and isinstance(mesh, Mesh):
- mesh = mesh.GetMesh()
- hyp.SetSourceMesh( mesh )
- hyp.SetVertexAssociation( srcV1, srcV2, tgtV1, tgtV2 )
- return hyp
+ ## Returns true if given node is medium node
+ # in given quadratic element
+ def IsMediumNode(self, elementID, nodeID):
+ return self.mesh.IsMediumNode(elementID, nodeID)
- ## Check if the given "SourceShape3D" hypothesis has the same parameters as given arguments
- #def CompareSourceShape3D(self, hyp, args):
- # # seems to be not really useful to reuse existing "SourceShape3D" hypothesis
- # return False
+ ## Returns true if given node is medium node
+ # in one of quadratic elements
+ def IsMediumNodeOfAnyElem(self, nodeID, elementType):
+ return self.mesh.IsMediumNodeOfAnyElem(nodeID, elementType)
+ ## Returns number of edges for given element
+ def ElemNbEdges(self, id):
+ return self.mesh.ElemNbEdges(id)
-# Public class: Mesh_Prism
-# ------------------------
+ ## Returns number of faces for given element
+ def ElemNbFaces(self, id):
+ return self.mesh.ElemNbFaces(id)
-## Class to define a 3D extrusion algorithm
-#
-# More details.
-class Mesh_Prism3D(Mesh_Algorithm):
+ ## Returns true if given element is polygon
+ def IsPoly(self, id):
+ return self.mesh.IsPoly(id)
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "Prism_3D")
+ ## Returns true if given element is quadratic
+ def IsQuadratic(self, id):
+ return self.mesh.IsQuadratic(id)
-# Public class: Mesh_RadialPrism
-# -------------------------------
+ ## Returns XYZ coordinates of bary center for given element
+ # as list of double
+ # \n If there is not element for given ID - returns empty list
+ def BaryCenter(self, id):
+ return self.mesh.BaryCenter(id)
-## Class to define a Radial Prism 3D algorithm
-#
-# More details.
-class Mesh_RadialPrism3D(Mesh_Algorithm):
- ## Private constructor.
- def __init__(self, mesh, geom=0):
- Mesh_Algorithm.__init__(self)
- self.Create(mesh, geom, "RadialPrism_3D")
+ # Mesh edition (SMESH_MeshEditor functionality):
+ # ---------------------------------------------
- self.distribHyp = self.Hypothesis("LayerDistribution", UseExisting=0)
- self.nbLayers = None
+ ## Removes elements from mesh by ids
+ # @param IDsOfElements is list of ids of elements to remove
+ def RemoveElements(self, IDsOfElements):
+ return self.editor.RemoveElements(IDsOfElements)
- ## Return 3D hypothesis holding the 1D one
- def Get3DHypothesis(self):
- return self.distribHyp
+ ## Removes nodes from mesh by ids
+ # @param IDsOfNodes is list of ids of nodes to remove
+ def RemoveNodes(self, IDsOfNodes):
+ return self.editor.RemoveNodes(IDsOfNodes)
- ## Private method creating 1D hypothes and storing it in the LayerDistribution
- # hypothes. Returns the created hypothes
- def OwnHypothesis(self, hypType, args=[], so="libStdMeshersEngine.so"):
- #print "OwnHypothesis",hypType
- if not self.nbLayers is None:
- self.mesh.GetMesh().RemoveHypothesis( self.geom, self.nbLayers )
- self.mesh.GetMesh().AddHypothesis( self.geom, self.distribHyp )
- study = self.mesh.smeshpyD.GetCurrentStudy() # prevent publishing of own 1D hypothesis
- hyp = self.mesh.smeshpyD.CreateHypothesis(hypType, so)
- self.mesh.smeshpyD.SetCurrentStudy( study ) # anable publishing
- self.distribHyp.SetLayerDistribution( hyp )
- return hyp
+ ## Add node to mesh by coordinates
+ def AddNode(self, x, y, z):
+ return self.editor.AddNode( x, y, z)
- ## Define "NumberOfLayers" hypothesis, specifying a number of layers of
- # prisms to build between the inner and outer shells
- # @param UseExisting if ==true - search existing hypothesis created with
- # same parameters, else (default) - create new
- def NumberOfLayers(self, n, UseExisting=0):
- self.mesh.GetMesh().RemoveHypothesis( self.geom, self.distribHyp )
- self.nbLayers = self.Hypothesis("NumberOfLayers", [n], UseExisting=UseExisting,
- CompareMethod=self.CompareNumberOfLayers)
- self.nbLayers.SetNumberOfLayers( n )
- return self.nbLayers
- ## Check if the given "NumberOfLayers" hypothesis has the same parameters as given arguments
- def CompareNumberOfLayers(self, hyp, args):
- return IsEqual(hyp.GetNumberOfLayers(), args[0])
+ ## Create edge both similar and quadratic (this is determed
+ # by number of given nodes).
+ # @param IdsOfNodes List of node IDs for creation of element.
+ # Needed order of nodes in this list corresponds to description
+ # of MED. \n This description is located by the following link:
+ # http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.
+ def AddEdge(self, IDsOfNodes):
+ return self.editor.AddEdge(IDsOfNodes)
- ## Define "LocalLength" hypothesis, specifying segment length
- # to build between the inner and outer shells
- # @param l for the length of segments
- # @param p for the precision of rounding
- def LocalLength(self, l, p=1e-07):
- hyp = self.OwnHypothesis("LocalLength", [l,p])
- hyp.SetLength(l)
- hyp.SetPrecision(p)
- return hyp
+ ## Create face both similar and quadratic (this is determed
+ # by number of given nodes).
+ # @param IdsOfNodes List of node IDs for creation of element.
+ # Needed order of nodes in this list corresponds to description
+ # of MED. \n This description is located by the following link:
+ # http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.
+ def AddFace(self, IDsOfNodes):
+ return self.editor.AddFace(IDsOfNodes)
- ## Define "NumberOfSegments" hypothesis, specifying a number of layers of
- # prisms to build between the inner and outer shells
- # @param n for the number of segments
- # @param s for the scale factor (optional)
- def NumberOfSegments(self, n, s=[]):
- if s == []:
- hyp = self.OwnHypothesis("NumberOfSegments", [n])
- else:
- hyp = self.OwnHypothesis("NumberOfSegments", [n,s])
- hyp.SetDistrType( 1 )
- hyp.SetScaleFactor(s)
- hyp.SetNumberOfSegments(n)
- return hyp
+ ## Add polygonal face to mesh by list of nodes ids
+ def AddPolygonalFace(self, IdsOfNodes):
+ return self.editor.AddPolygonalFace(IdsOfNodes)
- ## Define "Arithmetic1D" hypothesis, specifying distribution of segments
- # to build between the inner and outer shells as arithmetic length increasing
- # @param start for the length of the first segment
- # @param end for the length of the last segment
- def Arithmetic1D(self, start, end ):
- hyp = self.OwnHypothesis("Arithmetic1D", [start, end])
- hyp.SetLength(start, 1)
- hyp.SetLength(end , 0)
- return hyp
+ ## Create volume both similar and quadratic (this is determed
+ # by number of given nodes).
+ # @param IdsOfNodes List of node IDs for creation of element.
+ # Needed order of nodes in this list corresponds to description
+ # of MED. \n This description is located by the following link:
+ # http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.
+ def AddVolume(self, IDsOfNodes):
+ return self.editor.AddVolume(IDsOfNodes)
- ## Define "StartEndLength" hypothesis, specifying distribution of segments
- # to build between the inner and outer shells as geometric length increasing
- # @param start for the length of the first segment
- # @param end for the length of the last segment
- def StartEndLength(self, start, end):
- hyp = self.OwnHypothesis("StartEndLength", [start, end])
- hyp.SetLength(start, 1)
- hyp.SetLength(end , 0)
- return hyp
+ ## Create volume of many faces, giving nodes for each face.
+ # @param IdsOfNodes List of node IDs for volume creation face by face.
+ # @param Quantities List of integer values, Quantities[i]
+ # gives quantity of nodes in face number i.
+ def AddPolyhedralVolume (self, IdsOfNodes, Quantities):
+ return self.editor.AddPolyhedralVolume(IdsOfNodes, Quantities)
- ## Define "AutomaticLength" hypothesis, specifying number of segments
- # to build between the inner and outer shells
- # @param fineness for the fineness [0-1]
- def AutomaticLength(self, fineness=0):
- hyp = self.OwnHypothesis("AutomaticLength")
- hyp.SetFineness( fineness )
- return hyp
+ ## Create volume of many faces, giving IDs of existing faces.
+ # @param IdsOfFaces List of face IDs for volume creation.
+ #
+ # Note: The created volume will refer only to nodes
+ # of the given faces, not to the faces itself.
+ def AddPolyhedralVolumeByFaces (self, IdsOfFaces):
+ return self.editor.AddPolyhedralVolumeByFaces(IdsOfFaces)
-# Private class: Mesh_UseExisting
-# -------------------------------
-class Mesh_UseExisting(Mesh_Algorithm):
- def __init__(self, dim, mesh, geom=0):
- if dim == 1:
- self.Create(mesh, geom, "UseExisting_1D")
+ ## @brief Bind a node to a vertex
+ # @param NodeID - node ID
+ # @param Vertex - vertex or vertex ID
+ # @return True if succeed else raise an exception
+ def SetNodeOnVertex(self, NodeID, Vertex):
+ if ( isinstance( Vertex, geompyDC.GEOM._objref_GEOM_Object)):
+ VertexID = Vertex.GetSubShapeIndices()[0]
else:
- self.Create(mesh, geom, "UseExisting_2D")
-
-# Public class: Mesh
-# ==================
-
-## Class to define a mesh
-#
-# The class contains mesh shape, SMESH_Mesh, SMESH_MeshEditor
-# More details.
-class Mesh:
+ VertexID = Vertex
+ try:
+ self.editor.SetNodeOnVertex(NodeID, VertexID)
+ except SALOME.SALOME_Exception, inst:
+ raise ValueError, inst.details.text
+ return True
- geom = 0
- mesh = 0
- editor = 0
- ## Constructor
- #
- # Creates mesh on the shape \a geom(or the empty mesh if geom equal to 0),
- # sets GUI name of this mesh to \a name.
- # @param obj Shape to be meshed or SMESH_Mesh object
- # @param name Study name of the mesh
- def __init__(self, smeshpyD, geompyD, obj=0, name=0):
- self.smeshpyD=smeshpyD
- self.geompyD=geompyD
- if obj is None:
- obj = 0
- if obj != 0:
- if isinstance(obj, geompyDC.GEOM._objref_GEOM_Object):
- self.geom = obj
- self.mesh = self.smeshpyD.CreateMesh(self.geom)
- elif isinstance(obj, SMESH._objref_SMESH_Mesh):
- self.SetMesh(obj)
+ ## @brief Store node position on an edge
+ # @param NodeID - node ID
+ # @param Edge - edge or edge ID
+ # @param paramOnEdge - parameter on edge where the node is located
+ # @return True if succeed else raise an exception
+ def SetNodeOnEdge(self, NodeID, Edge, paramOnEdge):
+ if ( isinstance( Edge, geompyDC.GEOM._objref_GEOM_Object)):
+ EdgeID = Edge.GetSubShapeIndices()[0]
else:
- self.mesh = self.smeshpyD.CreateEmptyMesh()
- if name != 0:
- SetName(self.mesh, name)
- elif obj != 0:
- SetName(self.mesh, GetName(obj))
-
- self.editor = self.mesh.GetMeshEditor()
+ EdgeID = Edge
+ try:
+ self.editor.SetNodeOnEdge(NodeID, EdgeID, paramOnEdge)
+ except SALOME.SALOME_Exception, inst:
+ raise ValueError, inst.details.text
+ return True
- ## Method that inits the Mesh object from SMESH_Mesh interface
- # @param theMesh is SMESH_Mesh object
- def SetMesh(self, theMesh):
- self.mesh = theMesh
- self.geom = self.mesh.GetShapeToMesh()
+ ## @brief Store node position on a face
+ # @param NodeID - node ID
+ # @param Face - face or face ID
+ # @param u - U parameter on face where the node is located
+ # @param v - V parameter on face where the node is located
+ # @return True if succeed else raise an exception
+ def SetNodeOnFace(self, NodeID, Face, u, v):
+ if ( isinstance( Face, geompyDC.GEOM._objref_GEOM_Object)):
+ FaceID = Face.GetSubShapeIndices()[0]
+ else:
+ FaceID = Face
+ try:
+ self.editor.SetNodeOnFace(NodeID, FaceID, u, v)
+ except SALOME.SALOME_Exception, inst:
+ raise ValueError, inst.details.text
+ return True
- ## Method that returns the mesh
- # @return SMESH_Mesh object
- def GetMesh(self):
- return self.mesh
+ ## @brief Bind a node to a solid
+ # @param NodeID - node ID
+ # @param Solid - solid or solid ID
+ # @return True if succeed else raise an exception
+ def SetNodeInVolume(self, NodeID, Solid):
+ if ( isinstance( Solid, geompyDC.GEOM._objref_GEOM_Object)):
+ SolidID = Solid.GetSubShapeIndices()[0]
+ else:
+ SolidID = Solid
+ try:
+ self.editor.SetNodeInVolume(NodeID, SolidID)
+ except SALOME.SALOME_Exception, inst:
+ raise ValueError, inst.details.text
+ return True
- ## Get mesh name
- def GetName(self):
- name = GetName(self.GetMesh())
- return name
+ ## @brief Bind an element to a shape
+ # @param ElementID - element ID
+ # @param Shape - shape or shape ID
+ # @return True if succeed else raise an exception
+ def SetMeshElementOnShape(self, ElementID, Shape):
+ if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
+ ShapeID = Shape.GetSubShapeIndices()[0]
+ else:
+ ShapeID = Shape
+ try:
+ self.editor.SetMeshElementOnShape(ElementID, ShapeID)
+ except SALOME.SALOME_Exception, inst:
+ raise ValueError, inst.details.text
+ return True
- ## Set name to mesh
- def SetName(self, name):
- SetName(self.GetMesh(), name)
- ## Get the subMesh object associated to a subShape. The subMesh object
- # gives access to nodes and elements IDs.
- # \n SubMesh will be used instead of SubShape in a next idl version to
- # adress a specific subMesh...
- def GetSubMesh(self, theSubObject, name):
- submesh = self.mesh.GetSubMesh(theSubObject, name)
- return submesh
+ ## Move node with given id
+ # @param NodeID id of the node
+ # @param x new X coordinate
+ # @param y new Y coordinate
+ # @param z new Z coordinate
+ def MoveNode(self, NodeID, x, y, z):
+ return self.editor.MoveNode(NodeID, x, y, z)
- ## Method that returns the shape associated to the mesh
- # @return GEOM_Object
- def GetShape(self):
- return self.geom
+ ## Find a node closest to a point
+ # @param x X coordinate of a point
+ # @param y Y coordinate of a point
+ # @param z Z coordinate of a point
+ # @return id of a node
+ def FindNodeClosestTo(self, x, y, z):
+ preview = self.mesh.GetMeshEditPreviewer()
+ return preview.MoveClosestNodeToPoint(x, y, z, -1)
- ## Method that associates given shape to the mesh(entails the mesh recreation)
- # @param geom shape to be meshed(GEOM_Object)
- def SetShape(self, geom):
- self.mesh = self.smeshpyD.CreateMesh(geom)
+ ## Find a node closest to a point and move it to a point location
+ # @param x X coordinate of a point
+ # @param y Y coordinate of a point
+ # @param z Z coordinate of a point
+ # @return id of a moved node
+ def MeshToPassThroughAPoint(self, x, y, z):
+ return self.editor.MoveClosestNodeToPoint(x, y, z, -1)
- ## Return true if hypotheses are defined well
- # @param theMesh is an instance of Mesh class
- # @param theSubObject subshape of a mesh shape
- def IsReadyToCompute(self, theSubObject):
- return self.smeshpyD.IsReadyToCompute(self.mesh, theSubObject)
+ ## Replace two neighbour triangles sharing Node1-Node2 link
+ # with ones built on the same 4 nodes but having other common link.
+ # @param NodeID1 first node id
+ # @param NodeID2 second node id
+ # @return false if proper faces not found
+ def InverseDiag(self, NodeID1, NodeID2):
+ return self.editor.InverseDiag(NodeID1, NodeID2)
- ## Return errors of hypotheses definintion
- # error list is empty if everything is OK
- # @param theMesh is an instance of Mesh class
- # @param theSubObject subshape of a mesh shape
- # @return a list of errors
- def GetAlgoState(self, theSubObject):
- return self.smeshpyD.GetAlgoState(self.mesh, theSubObject)
+ ## Replace two neighbour triangles sharing Node1-Node2 link
+ # with a quadrangle built on the same 4 nodes.
+ # @param NodeID1 first node id
+ # @param NodeID2 second node id
+ # @return false if proper faces not found
+ def DeleteDiag(self, NodeID1, NodeID2):
+ return self.editor.DeleteDiag(NodeID1, NodeID2)
- ## Return geometrical object the given element is built on.
- # The returned geometrical object, if not nil, is either found in the
- # study or is published by this method with the given name
- # @param theMesh is an instance of Mesh class
- # @param theElementID an id of the mesh element
- # @param theGeomName user defined name of geometrical object
- # @return GEOM::GEOM_Object instance
- def GetGeometryByMeshElement(self, theElementID, theGeomName):
- return self.smeshpyD.GetGeometryByMeshElement( self.mesh, theElementID, theGeomName )
+ ## Reorient elements by ids
+ # @param IDsOfElements if undefined reorient all mesh elements
+ def Reorient(self, IDsOfElements=None):
+ if IDsOfElements == None:
+ IDsOfElements = self.GetElementsId()
+ return self.editor.Reorient(IDsOfElements)
- ## Returns mesh dimension depending on shape one
- def MeshDimension(self):
- shells = self.geompyD.SubShapeAllIDs( self.geom, geompyDC.ShapeType["SHELL"] )
- if len( shells ) > 0 :
- return 3
- elif self.geompyD.NumberOfFaces( self.geom ) > 0 :
- return 2
- elif self.geompyD.NumberOfEdges( self.geom ) > 0 :
- return 1
- else:
- return 0;
- pass
+ ## Reorient all elements of the object
+ # @param theObject is mesh, submesh or group
+ def ReorientObject(self, theObject):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ return self.editor.ReorientObject(theObject)
- ## Creates a segment discretization 1D algorithm.
- # If the optional \a algo parameter is not sets, this algorithm is REGULAR.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param algo values are smesh.REGULAR or smesh.PYTHON for discretization via python function
- # @param geom If defined, subshape to be meshed
- def Segment(self, algo=REGULAR, geom=0):
- ## if Segment(geom) is called by mistake
- if isinstance( algo, geompyDC.GEOM._objref_GEOM_Object):
- algo, geom = geom, algo
- if not algo: algo = REGULAR
- pass
- if algo == REGULAR:
- return Mesh_Segment(self, geom)
- elif algo == PYTHON:
- return Mesh_Segment_Python(self, geom)
- elif algo == COMPOSITE:
- return Mesh_CompositeSegment(self, geom)
- else:
- return Mesh_Segment(self, geom)
+ ## Fuse neighbour triangles into quadrangles.
+ # @param IDsOfElements The triangles to be fused,
+ # @param theCriterion is FT_...; used to choose a neighbour to fuse with.
+ # @param MaxAngle is a max angle between element normals at which fusion
+ # is still performed; theMaxAngle is mesured in radians.
+ # @return TRUE in case of success, FALSE otherwise.
+ def TriToQuad(self, IDsOfElements, theCriterion, MaxAngle):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ return self.editor.TriToQuad(IDsOfElements, self.smeshpyD.GetFunctor(theCriterion), MaxAngle)
- ## Enable creation of nodes and segments usable by 2D algoritms.
- # Added nodes and segments must be bound to edges and vertices by
- # SetNodeOnVertex(), SetNodeOnEdge() and SetMeshElementOnShape()
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom subshape to be manually meshed
- # @return StdMeshers_UseExisting_1D algorithm that generates nothing
- def UseExistingSegments(self, geom=0):
- algo = Mesh_UseExisting(1,self,geom)
- return algo.GetAlgorithm()
+ ## Fuse neighbour triangles of the object into quadrangles
+ # @param theObject is mesh, submesh or group
+ # @param theCriterion is FT_...; used to choose a neighbour to fuse with.
+ # @param MaxAngle is a max angle between element normals at which fusion
+ # is still performed; theMaxAngle is mesured in radians.
+ # @return TRUE in case of success, FALSE otherwise.
+ def TriToQuadObject (self, theObject, theCriterion, MaxAngle):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ return self.editor.TriToQuadObject(theObject, self.smeshpyD.GetFunctor(theCriterion), MaxAngle)
- ## Enable creation of nodes and faces usable by 3D algoritms.
- # Added nodes and faces must be bound to geom faces by SetNodeOnFace()
- # and SetMeshElementOnShape()
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom subshape to be manually meshed
- # @return StdMeshers_UseExisting_2D algorithm that generates nothing
- def UseExistingFaces(self, geom=0):
- algo = Mesh_UseExisting(2,self,geom)
- return algo.GetAlgorithm()
+ ## Split quadrangles into triangles.
+ # @param IDsOfElements the faces to be splitted.
+ # @param theCriterion is FT_...; used to choose a diagonal for splitting.
+ # @return TRUE in case of success, FALSE otherwise.
+ def QuadToTri (self, IDsOfElements, theCriterion):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ return self.editor.QuadToTri(IDsOfElements, self.smeshpyD.GetFunctor(theCriterion))
- ## Creates a triangle 2D algorithm for faces.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param algo values are: smesh.MEFISTO || smesh.NETGEN_1D2D || smesh.NETGEN_2D
- # @param geom If defined, subshape to be meshed
- def Triangle(self, algo=MEFISTO, geom=0):
- ## if Triangle(geom) is called by mistake
- if ( isinstance( algo, geompyDC.GEOM._objref_GEOM_Object)):
- geom = algo
- algo = MEFISTO
-
- return Mesh_Triangle(self, algo, geom)
+ ## Split quadrangles into triangles.
+ # @param theObject object to taking list of elements from, is mesh, submesh or group
+ # @param theCriterion is FT_...; used to choose a diagonal for splitting.
+ def QuadToTriObject (self, theObject, theCriterion):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ return self.editor.QuadToTriObject(theObject, self.smeshpyD.GetFunctor(theCriterion))
- ## Creates a quadrangle 2D algorithm for faces.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom If defined, subshape to be meshed
- def Quadrangle(self, geom=0):
- return Mesh_Quadrangle(self, geom)
+ ## Split quadrangles into triangles.
+ # @param theElems The faces to be splitted
+ # @param the13Diag is used to choose a diagonal for splitting.
+ # @return TRUE in case of success, FALSE otherwise.
+ def SplitQuad (self, IDsOfElements, Diag13):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ return self.editor.SplitQuad(IDsOfElements, Diag13)
- ## Creates a tetrahedron 3D algorithm for solids.
- # The parameter \a algo permits to choice the algorithm: NETGEN or GHS3D
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param algo values are: smesh.NETGEN, smesh.GHS3D, smesh.FULL_NETGEN
- # @param geom If defined, subshape to be meshed
- def Tetrahedron(self, algo=NETGEN, geom=0):
- ## if Tetrahedron(geom) is called by mistake
- if ( isinstance( algo, geompyDC.GEOM._objref_GEOM_Object)):
- algo, geom = geom, algo
- if not algo: algo = NETGEN
- pass
- return Mesh_Tetrahedron(self, algo, geom)
+ ## Split quadrangles into triangles.
+ # @param theObject is object to taking list of elements from, is mesh, submesh or group
+ def SplitQuadObject (self, theObject, Diag13):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ return self.editor.SplitQuadObject(theObject, Diag13)
- ## Creates a hexahedron 3D algorithm for solids.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # \n Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom If defined, subshape to be meshed
- ## def Hexahedron(self, geom=0):
- ## return Mesh_Hexahedron(self, geom)
- def Hexahedron(self, algo=Hexa, geom=0):
- ## if Hexahedron(geom, algo) or Hexahedron(geom) is called by mistake
- if ( isinstance(algo, geompyDC.GEOM._objref_GEOM_Object) ):
- if geom in [Hexa, Hexotic]: algo, geom = geom, algo
- elif geom == 0: algo, geom = Hexa, algo
- return Mesh_Hexahedron(self, algo, geom)
+ ## Find better splitting of the given quadrangle.
+ # @param IDOfQuad ID of the quadrangle to be splitted.
+ # @param theCriterion is FT_...; a criterion to choose a diagonal for splitting.
+ # @return 1 if 1-3 diagonal is better, 2 if 2-4
+ # diagonal is better, 0 if error occurs.
+ def BestSplit (self, IDOfQuad, theCriterion):
+ return self.editor.BestSplit(IDOfQuad, self.smeshpyD.GetFunctor(theCriterion))
- ## Deprecated, only for compatibility!
- def Netgen(self, is3D, geom=0):
- return Mesh_Netgen(self, is3D, geom)
+ ## Split quafrangle faces near triangular facets of volumes
+ #
+ def SplitQuadsNearTriangularFacets(self):
+ faces_array = self.GetElementsByType(SMESH.FACE)
+ for face_id in faces_array:
+ if self.GetElemNbNodes(face_id) == 4: # quadrangle
+ quad_nodes = self.mesh.GetElemNodes(face_id)
+ node1_elems = self.GetNodeInverseElements(quad_nodes[1 -1])
+ isVolumeFound = False
+ for node1_elem in node1_elems:
+ if not isVolumeFound:
+ if self.GetElementType(node1_elem, True) == SMESH.VOLUME:
+ nb_nodes = self.GetElemNbNodes(node1_elem)
+ if 3 < nb_nodes and nb_nodes < 7: # tetra or penta, or prism
+ volume_elem = node1_elem
+ volume_nodes = self.mesh.GetElemNodes(volume_elem)
+ if volume_nodes.count(quad_nodes[2 -1]) > 0: # 1,2
+ if volume_nodes.count(quad_nodes[4 -1]) > 0: # 1,2,4
+ isVolumeFound = True
+ if volume_nodes.count(quad_nodes[3 -1]) == 0: # 1,2,4 & !3
+ self.SplitQuad([face_id], False) # diagonal 2-4
+ elif volume_nodes.count(quad_nodes[3 -1]) > 0: # 1,2,3 & !4
+ isVolumeFound = True
+ self.SplitQuad([face_id], True) # diagonal 1-3
+ elif volume_nodes.count(quad_nodes[4 -1]) > 0: # 1,4 & !2
+ if volume_nodes.count(quad_nodes[3 -1]) > 0: # 1,4,3 & !2
+ isVolumeFound = True
+ self.SplitQuad([face_id], True) # diagonal 1-3
- ## Creates a projection 1D algorithm for edges.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom If defined, subshape to be meshed
- def Projection1D(self, geom=0):
- return Mesh_Projection1D(self, geom)
+ ## @brief Split hexahedrons into tetrahedrons.
+ #
+ # Use pattern mapping functionality for splitting.
+ # @param theObject object to take list of hexahedrons from; is mesh, submesh or group.
+ # @param theNode000,theNode001 is in range [0,7]; give an orientation of the
+ # pattern relatively each hexahedron: the (0,0,0) key-point of pattern
+ # will be mapped into <theNode000>-th node of each volume, the (0,0,1)
+ # key-point will be mapped into <theNode001>-th node of each volume.
+ # The (0,0,0) key-point of used pattern corresponds to not split corner.
+ # @return TRUE in case of success, FALSE otherwise.
+ def SplitHexaToTetras (self, theObject, theNode000, theNode001):
+ # Pattern: 5.---------.6
+ # /|#* /|
+ # / | #* / |
+ # / | # * / |
+ # / | # /* |
+ # (0,0,1) 4.---------.7 * |
+ # |#* |1 | # *|
+ # | # *.----|---#.2
+ # | #/ * | /
+ # | /# * | /
+ # | / # * | /
+ # |/ #*|/
+ # (0,0,0) 0.---------.3
+ pattern_tetra = "!!! Nb of points: \n 8 \n\
+ !!! Points: \n\
+ 0 0 0 !- 0 \n\
+ 0 1 0 !- 1 \n\
+ 1 1 0 !- 2 \n\
+ 1 0 0 !- 3 \n\
+ 0 0 1 !- 4 \n\
+ 0 1 1 !- 5 \n\
+ 1 1 1 !- 6 \n\
+ 1 0 1 !- 7 \n\
+ !!! Indices of points of 6 tetras: \n\
+ 0 3 4 1 \n\
+ 7 4 3 1 \n\
+ 4 7 5 1 \n\
+ 6 2 5 7 \n\
+ 1 5 2 7 \n\
+ 2 3 1 7 \n"
- ## Creates a projection 2D algorithm for faces.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom If defined, subshape to be meshed
- def Projection2D(self, geom=0):
- return Mesh_Projection2D(self, geom)
+ pattern = self.smeshpyD.GetPattern()
+ isDone = pattern.LoadFromFile(pattern_tetra)
+ if not isDone:
+ print 'Pattern.LoadFromFile :', pattern.GetErrorCode()
+ return isDone
- ## Creates a projection 3D algorithm for solids.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom If defined, subshape to be meshed
- def Projection3D(self, geom=0):
- return Mesh_Projection3D(self, geom)
+ pattern.ApplyToHexahedrons(self.mesh, theObject.GetIDs(), theNode000, theNode001)
+ isDone = pattern.MakeMesh(self.mesh, False, False)
+ if not isDone: print 'Pattern.MakeMesh :', pattern.GetErrorCode()
- ## Creates a 3D extrusion (Prism 3D) or RadialPrism 3D algorithm for solids.
- # If the optional \a geom parameter is not sets, this algorithm is global.
- # Otherwise, this algorithm define a submesh based on \a geom subshape.
- # @param geom If defined, subshape to be meshed
- def Prism(self, geom=0):
- shape = geom
- if shape==0:
- shape = self.geom
- nbSolids = len( self.geompyD.SubShapeAll( shape, geompyDC.ShapeType["SOLID"] ))
- nbShells = len( self.geompyD.SubShapeAll( shape, geompyDC.ShapeType["SHELL"] ))
- if nbSolids == 0 or nbSolids == nbShells:
- return Mesh_Prism3D(self, geom)
- return Mesh_RadialPrism3D(self, geom)
+ # split quafrangle faces near triangular facets of volumes
+ self.SplitQuadsNearTriangularFacets()
- ## Compute the mesh and return the status of the computation
- def Compute(self, geom=0):
- if geom == 0 or not isinstance(geom, geompyDC.GEOM._objref_GEOM_Object):
- if self.geom == 0:
- print "Compute impossible: mesh is not constructed on geom shape."
- return 0
- else:
- geom = self.geom
- ok = False
- try:
- ok = self.smeshpyD.Compute(self.mesh, geom)
- except SALOME.SALOME_Exception, ex:
- print "Mesh computation failed, exception caught:"
- print " ", ex.details.text
- except:
- import traceback
- print "Mesh computation failed, exception caught:"
- traceback.print_exc()
- if not ok:
- errors = self.smeshpyD.GetAlgoState( self.mesh, geom )
- allReasons = ""
- for err in errors:
- if err.isGlobalAlgo:
- glob = "global"
- else:
- glob = "local"
- pass
- dim = err.algoDim
- name = err.algoName
- if len(name) == 0:
- reason = '%s %sD algorithm is missing' % (glob, dim)
- elif err.state == HYP_MISSING:
- reason = ('%s %sD algorithm "%s" misses %sD hypothesis'
- % (glob, dim, name, dim))
- elif err.state == HYP_NOTCONFORM:
- reason = 'Global "Not Conform mesh allowed" hypothesis is missing'
- elif err.state == HYP_BAD_PARAMETER:
- reason = ('Hypothesis of %s %sD algorithm "%s" has a bad parameter value'
- % ( glob, dim, name ))
- elif err.state == HYP_BAD_GEOMETRY:
- reason = ('%s %sD algorithm "%s" is assigned to geometry mismatching'
- 'its expectation' % ( glob, dim, name ))
- else:
- reason = "For unknown reason."+\
- " Revise Mesh.Compute() implementation in smeshDC.py!"
- pass
- if allReasons != "":
- allReasons += "\n"
- pass
- allReasons += reason
- pass
- if allReasons != "":
- print '"' + GetName(self.mesh) + '"',"has not been computed:"
- print allReasons
- else:
- print '"' + GetName(self.mesh) + '"',"has not been computed."
- pass
- pass
- if salome.sg.hasDesktop():
- smeshgui = salome.ImportComponentGUI("SMESH")
- smeshgui.Init(salome.myStudyId)
- smeshgui.SetMeshIcon( salome.ObjectToID( self.mesh ), ok, (self.NbNodes()==0) )
- salome.sg.updateObjBrowser(1)
- pass
- return ok
+ return isDone
- ## Compute tetrahedral mesh using AutomaticLength + MEFISTO + NETGEN
- # The parameter \a fineness [0,-1] defines mesh fineness
- def AutomaticTetrahedralization(self, fineness=0):
- dim = self.MeshDimension()
- # assign hypotheses
- self.RemoveGlobalHypotheses()
- self.Segment().AutomaticLength(fineness)
- if dim > 1 :
- self.Triangle().LengthFromEdges()
- pass
- if dim > 2 :
- self.Tetrahedron(NETGEN)
- pass
- return self.Compute()
+ ## @brief Split hexahedrons into prisms.
+ #
+ # Use pattern mapping functionality for splitting.
+ # @param theObject object to take list of hexahedrons from; is mesh, submesh or group.
+ # @param theNode000,theNode001 is in range [0,7]; give an orientation of the
+ # pattern relatively each hexahedron: the (0,0,0) key-point of pattern
+ # will be mapped into <theNode000>-th node of each volume, the (0,0,1)
+ # key-point will be mapped into <theNode001>-th node of each volume.
+ # The edge (0,0,0)-(0,0,1) of used pattern connects two not split corners.
+ # @return TRUE in case of success, FALSE otherwise.
+ def SplitHexaToPrisms (self, theObject, theNode000, theNode001):
+ # Pattern: 5.---------.6
+ # /|# /|
+ # / | # / |
+ # / | # / |
+ # / | # / |
+ # (0,0,1) 4.---------.7 |
+ # | | | |
+ # | 1.----|----.2
+ # | / * | /
+ # | / * | /
+ # | / * | /
+ # |/ *|/
+ # (0,0,0) 0.---------.3
+ pattern_prism = "!!! Nb of points: \n 8 \n\
+ !!! Points: \n\
+ 0 0 0 !- 0 \n\
+ 0 1 0 !- 1 \n\
+ 1 1 0 !- 2 \n\
+ 1 0 0 !- 3 \n\
+ 0 0 1 !- 4 \n\
+ 0 1 1 !- 5 \n\
+ 1 1 1 !- 6 \n\
+ 1 0 1 !- 7 \n\
+ !!! Indices of points of 2 prisms: \n\
+ 0 1 3 4 5 7 \n\
+ 2 3 1 6 7 5 \n"
- ## Compute hexahedral mesh using AutomaticLength + Quadrangle + Hexahedron
- # The parameter \a fineness [0,-1] defines mesh fineness
- def AutomaticHexahedralization(self, fineness=0):
- dim = self.MeshDimension()
- # assign hypotheses
- self.RemoveGlobalHypotheses()
- self.Segment().AutomaticLength(fineness)
- if dim > 1 :
- self.Quadrangle()
- pass
- if dim > 2 :
- self.Hexahedron()
- pass
- return self.Compute()
+ pattern = self.smeshpyD.GetPattern()
+ isDone = pattern.LoadFromFile(pattern_prism)
+ if not isDone:
+ print 'Pattern.LoadFromFile :', pattern.GetErrorCode()
+ return isDone
- ## Assign hypothesis
- # @param hyp is a hypothesis to assign
- # @param geom is subhape of mesh geometry
- def AddHypothesis(self, hyp, geom=0):
- if isinstance( hyp, Mesh_Algorithm ):
- hyp = hyp.GetAlgorithm()
- pass
- if not geom:
- geom = self.geom
- pass
- status = self.mesh.AddHypothesis(geom, hyp)
- isAlgo = hyp._narrow( SMESH_Algo )
- TreatHypoStatus( status, GetName( hyp ), GetName( geom ), isAlgo )
- return status
+ pattern.ApplyToHexahedrons(self.mesh, theObject.GetIDs(), theNode000, theNode001)
+ isDone = pattern.MakeMesh(self.mesh, False, False)
+ if not isDone: print 'Pattern.MakeMesh :', pattern.GetErrorCode()
- ## Unassign hypothesis
- # @param hyp is a hypothesis to unassign
- # @param geom is subhape of mesh geometry
- def RemoveHypothesis(self, hyp, geom=0):
- if isinstance( hyp, Mesh_Algorithm ):
- hyp = hyp.GetAlgorithm()
- pass
- if not geom:
- geom = self.geom
- pass
- status = self.mesh.RemoveHypothesis(geom, hyp)
- return status
+ # split quafrangle faces near triangular facets of volumes
+ self.SplitQuadsNearTriangularFacets()
- ## Get the list of hypothesis added on a geom
- # @param geom is subhape of mesh geometry
- def GetHypothesisList(self, geom):
- return self.mesh.GetHypothesisList( geom )
+ return isDone
- ## Removes all global hypotheses
- def RemoveGlobalHypotheses(self):
- current_hyps = self.mesh.GetHypothesisList( self.geom )
- for hyp in current_hyps:
- self.mesh.RemoveHypothesis( self.geom, hyp )
- pass
- pass
+ ## Smooth elements
+ # @param IDsOfElements list if ids of elements to smooth
+ # @param IDsOfFixedNodes list of ids of fixed nodes.
+ # Note that nodes built on edges and boundary nodes are always fixed.
+ # @param MaxNbOfIterations maximum number of iterations
+ # @param MaxAspectRatio varies in range [1.0, inf]
+ # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
+ def Smooth(self, IDsOfElements, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxAspectRatio, Method):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ return self.editor.Smooth(IDsOfElements, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxAspectRatio, Method)
- ## Create a mesh group based on geometric object \a grp
- # and give a \a name, \n if this parameter is not defined
- # the name is the same as the geometric group name \n
- # Note: Works like GroupOnGeom().
- # @param grp is a geometric group, a vertex, an edge, a face or a solid
- # @param name is the name of the mesh group
- # @return SMESH_GroupOnGeom
- def Group(self, grp, name=""):
- return self.GroupOnGeom(grp, name)
+ ## Smooth elements belong to given object
+ # @param theObject object to smooth
+ # @param IDsOfFixedNodes list of ids of fixed nodes.
+ # Note that nodes built on edges and boundary nodes are always fixed.
+ # @param MaxNbOfIterations maximum number of iterations
+ # @param MaxAspectRatio varies in range [1.0, inf]
+ # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
+ def SmoothObject(self, theObject, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxxAspectRatio, Method):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ return self.editor.SmoothObject(theObject, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxxAspectRatio, Method)
- ## Deprecated, only for compatibility! Please, use ExportMED() method instead.
- # Export the mesh in a file with the MED format and choice the \a version of MED format
- # @param f is the file name
- # @param version values are SMESH.MED_V2_1, SMESH.MED_V2_2
- def ExportToMED(self, f, version, opt=0):
- self.mesh.ExportToMED(f, opt, version)
+ ## Parametric smooth the given elements
+ # @param IDsOfElements list if ids of elements to smooth
+ # @param IDsOfFixedNodes list of ids of fixed nodes.
+ # Note that nodes built on edges and boundary nodes are always fixed.
+ # @param MaxNbOfIterations maximum number of iterations
+ # @param MaxAspectRatio varies in range [1.0, inf]
+ # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
+ def SmoothParametric(self, IDsOfElements, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxAspectRatio, Method):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ return self.editor.SmoothParametric(IDsOfElements, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxAspectRatio, Method)
- ## Export the mesh in a file with the MED format
- # @param f is the file name
- # @param auto_groups boolean parameter for creating/not creating
- # the groups Group_On_All_Nodes, Group_On_All_Faces, ... ;
- # the typical use is auto_groups=false.
- # @param version MED format version(MED_V2_1 or MED_V2_2)
- def ExportMED(self, f, auto_groups=0, version=MED_V2_2):
- self.mesh.ExportToMED(f, auto_groups, version)
+ ## Parametric smooth elements belong to given object
+ # @param theObject object to smooth
+ # @param IDsOfFixedNodes list of ids of fixed nodes.
+ # Note that nodes built on edges and boundary nodes are always fixed.
+ # @param MaxNbOfIterations maximum number of iterations
+ # @param MaxAspectRatio varies in range [1.0, inf]
+ # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
+ def SmoothParametricObject(self, theObject, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxAspectRatio, Method):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ return self.editor.SmoothParametricObject(theObject, IDsOfFixedNodes,
+ MaxNbOfIterations, MaxAspectRatio, Method)
- ## Export the mesh in a file with the DAT format
- # @param f is the file name
- def ExportDAT(self, f):
- self.mesh.ExportDAT(f)
+ ## Converts all mesh to quadratic one, deletes old elements, replacing
+ # them with quadratic ones with the same id.
+ def ConvertToQuadratic(self, theForce3d):
+ self.editor.ConvertToQuadratic(theForce3d)
- ## Export the mesh in a file with the UNV format
- # @param f is the file name
- def ExportUNV(self, f):
- self.mesh.ExportUNV(f)
+ ## Converts all mesh from quadratic to ordinary ones,
+ # deletes old quadratic elements, \n replacing
+ # them with ordinary mesh elements with the same id.
+ def ConvertFromQuadratic(self):
+ return self.editor.ConvertFromQuadratic()
- ## Export the mesh in a file with the STL format
- # @param f is the file name
- # @param ascii defined the kind of file contents
- def ExportSTL(self, f, ascii=1):
- self.mesh.ExportSTL(f, ascii)
+ ## Renumber mesh nodes
+ def RenumberNodes(self):
+ self.editor.RenumberNodes()
+ ## Renumber mesh elements
+ def RenumberElements(self):
+ self.editor.RenumberElements()
- # Operations with groups:
- # ----------------------
+ ## Generate new elements by rotation of the elements around the axis
+ # @param IDsOfElements list of ids of elements to sweep
+ # @param Axix axis of rotation, AxisStruct or line(geom object)
+ # @param AngleInRadians angle of Rotation
+ # @param NbOfSteps number of steps
+ # @param Tolerance tolerance
+ # @param MakeGroups to generate new groups from existing ones
+ def RotationSweep(self, IDsOfElements, Axix, AngleInRadians, NbOfSteps, Tolerance, MakeGroups=False):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Axix, geompyDC.GEOM._objref_GEOM_Object)):
+ Axix = self.smeshpyD.GetAxisStruct(Axix)
+ if MakeGroups:
+ return self.editor.RotationSweepMakeGroups(IDsOfElements, Axix,
+ AngleInRadians, NbOfSteps, Tolerance)
+ self.editor.RotationSweep(IDsOfElements, Axix, AngleInRadians, NbOfSteps, Tolerance)
+ return []
- ## Creates an empty mesh group
- # @param elementType is the type of elements in the group
- # @param name is the name of the mesh group
- # @return SMESH_Group
- def CreateEmptyGroup(self, elementType, name):
- return self.mesh.CreateGroup(elementType, name)
+ ## Generate new elements by rotation of the elements of object around the axis
+ # @param theObject object wich elements should be sweeped
+ # @param Axix axis of rotation, AxisStruct or line(geom object)
+ # @param AngleInRadians angle of Rotation
+ # @param NbOfSteps number of steps
+ # @param Tolerance tolerance
+ # @param MakeGroups to generate new groups from existing ones
+ def RotationSweepObject(self, theObject, Axix, AngleInRadians, NbOfSteps, Tolerance, MakeGroups=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( Axix, geompyDC.GEOM._objref_GEOM_Object)):
+ Axix = self.smeshpyD.GetAxisStruct(Axix)
+ if MakeGroups:
+ return self.editor.RotationSweepObjectMakeGroups(theObject, Axix, AngleInRadians,
+ NbOfSteps, Tolerance)
+ self.editor.RotationSweepObject(theObject, Axix, AngleInRadians, NbOfSteps, Tolerance)
+ return []
- ## Creates a mesh group based on geometric object \a grp
- # and give a \a name, \n if this parameter is not defined
- # the name is the same as the geometric group name
- # @param grp is a geometric group, a vertex, an edge, a face or a solid
- # @param name is the name of the mesh group
- # @return SMESH_GroupOnGeom
- def GroupOnGeom(self, grp, name="", typ=None):
- if name == "":
- name = grp.GetName()
+ ## Generate new elements by extrusion of the elements with given ids
+ # @param IDsOfElements list of elements ids for extrusion
+ # @param StepVector vector, defining the direction and value of extrusion
+ # @param NbOfSteps the number of steps
+ # @param MakeGroups to generate new groups from existing ones
+ def ExtrusionSweep(self, IDsOfElements, StepVector, NbOfSteps, MakeGroups=False):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
+ StepVector = self.smeshpyD.GetDirStruct(StepVector)
+ if MakeGroups:
+ return self.editor.ExtrusionSweepMakeGroups(IDsOfElements, StepVector, NbOfSteps)
+ self.editor.ExtrusionSweep(IDsOfElements, StepVector, NbOfSteps)
+ return []
- if typ == None:
- tgeo = str(grp.GetShapeType())
- if tgeo == "VERTEX":
- typ = NODE
- elif tgeo == "EDGE":
- typ = EDGE
- elif tgeo == "FACE":
- typ = FACE
- elif tgeo == "SOLID":
- typ = VOLUME
- elif tgeo == "SHELL":
- typ = VOLUME
- elif tgeo == "COMPOUND":
- if len( self.geompyD.GetObjectIDs( grp )) == 0:
- print "Mesh.Group: empty geometric group", GetName( grp )
- return 0
- tgeo = self.geompyD.GetType(grp)
- if tgeo == geompyDC.ShapeType["VERTEX"]:
- typ = NODE
- elif tgeo == geompyDC.ShapeType["EDGE"]:
- typ = EDGE
- elif tgeo == geompyDC.ShapeType["FACE"]:
- typ = FACE
- elif tgeo == geompyDC.ShapeType["SOLID"]:
- typ = VOLUME
+ ## Generate new elements by extrusion of the elements with given ids
+ # @param IDsOfElements is ids of elements
+ # @param StepVector vector, defining the direction and value of extrusion
+ # @param NbOfSteps the number of steps
+ # @param ExtrFlags set flags for performing extrusion
+ # @param SewTolerance uses for comparing locations of nodes if flag
+ # EXTRUSION_FLAG_SEW is set
+ # @param MakeGroups to generate new groups from existing ones
+ def AdvancedExtrusion(self, IDsOfElements, StepVector, NbOfSteps, ExtrFlags, SewTolerance, MakeGroups=False):
+ if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
+ StepVector = self.smeshpyD.GetDirStruct(StepVector)
+ if MakeGroups:
+ return self.editor.AdvancedExtrusionMakeGroups(IDsOfElements, StepVector, NbOfSteps,
+ ExtrFlags, SewTolerance)
+ self.editor.AdvancedExtrusion(IDsOfElements, StepVector, NbOfSteps,
+ ExtrFlags, SewTolerance)
+ return []
- if typ == None:
- print "Mesh.Group: bad first argument: expected a group, a vertex, an edge, a face or a solid"
- return 0
- else:
- return self.mesh.CreateGroupFromGEOM(typ, name, grp)
+ ## Generate new elements by extrusion of the elements belong to object
+ # @param theObject object wich elements should be processed
+ # @param StepVector vector, defining the direction and value of extrusion
+ # @param NbOfSteps the number of steps
+ # @param MakeGroups to generate new groups from existing ones
+ def ExtrusionSweepObject(self, theObject, StepVector, NbOfSteps, MakeGroups=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
+ StepVector = self.smeshpyD.GetDirStruct(StepVector)
+ if MakeGroups:
+ return self.editor.ExtrusionSweepObjectMakeGroups(theObject, StepVector, NbOfSteps)
+ self.editor.ExtrusionSweepObject(theObject, StepVector, NbOfSteps)
+ return []
- ## Create a mesh group by the given ids of elements
- # @param groupName is the name of the mesh group
- # @param elementType is the type of elements in the group
- # @param elemIDs is the list of ids
- # @return SMESH_Group
- def MakeGroupByIds(self, groupName, elementType, elemIDs):
- group = self.mesh.CreateGroup(elementType, groupName)
- group.Add(elemIDs)
- return group
+ ## Generate new elements by extrusion of the elements belong to object
+ # @param theObject object wich elements should be processed
+ # @param StepVector vector, defining the direction and value of extrusion
+ # @param NbOfSteps the number of steps
+ # @param MakeGroups to generate new groups from existing ones
+ def ExtrusionSweepObject1D(self, theObject, StepVector, NbOfSteps, MakeGroups=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
+ StepVector = self.smeshpyD.GetDirStruct(StepVector)
+ if MakeGroups:
+ return self.editor.ExtrusionSweepObject1DMakeGroups(theObject, StepVector, NbOfSteps)
+ self.editor.ExtrusionSweepObject1D(theObject, StepVector, NbOfSteps)
+ return []
- ## Create a mesh group by the given conditions
- # @param groupName is the name of the mesh group
- # @param elementType is the type of elements in the group
- # @param CritType is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. )
- # @param Compare belong to {FT_LessThan, FT_MoreThan, FT_EqualTo}
- # @param Treshold is threshold value (range of id ids as string, shape, numeric)
- # @param UnaryOp is FT_LogicalNOT or FT_Undefined
- # @return SMESH_Group
- def MakeGroup(self,
- groupName,
- elementType,
- CritType=FT_Undefined,
- Compare=FT_EqualTo,
- Treshold="",
- UnaryOp=FT_Undefined):
- aCriterion = self.smeshpyD.GetCriterion(elementType, CritType, Compare, Treshold, UnaryOp, FT_Undefined)
- group = self.MakeGroupByCriterion(groupName, aCriterion)
- return group
+ ## Generate new elements by extrusion of the elements belong to object
+ # @param theObject object wich elements should be processed
+ # @param StepVector vector, defining the direction and value of extrusion
+ # @param NbOfSteps the number of steps
+ # @param MakeGroups to generate new groups from existing ones
+ def ExtrusionSweepObject2D(self, theObject, StepVector, NbOfSteps, MakeGroups=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
+ StepVector = self.smeshpyD.GetDirStruct(StepVector)
+ if MakeGroups:
+ return self.editor.ExtrusionSweepObject2DMakeGroups(theObject, StepVector, NbOfSteps)
+ self.editor.ExtrusionSweepObject2D(theObject, StepVector, NbOfSteps)
+ return []
- ## Create a mesh group by the given criterion
- # @param groupName is the name of the mesh group
- # @param Criterion is the instance of Criterion class
- # @return SMESH_Group
- def MakeGroupByCriterion(self, groupName, Criterion):
- aFilterMgr = self.smeshpyD.CreateFilterManager()
- aFilter = aFilterMgr.CreateFilter()
- aCriteria = []
- aCriteria.append(Criterion)
- aFilter.SetCriteria(aCriteria)
- group = self.MakeGroupByFilter(groupName, aFilter)
- return group
+ ## Generate new elements by extrusion of the given elements
+ # A path of extrusion must be a meshed edge.
+ # @param IDsOfElements is ids of elements
+ # @param PathMesh mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion
+ # @param PathShape is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path
+ # @param NodeStart the first or the last node on the edge. It is used to define the direction of extrusion
+ # @param HasAngles allows the shape to be rotated around the path to get the resulting mesh in a helical fashion
+ # @param Angles list of angles
+ # @param HasRefPoint allows to use base point
+ # @param RefPoint point around which the shape is rotated(the mass center of the shape by default).
+ # User can specify any point as the Base Point and the shape will be rotated with respect to this point.
+ # @param MakeGroups to generate new groups from existing ones
+ # @param LinearVariation makes compute rotation angles as linear variation of given Angles along path steps
+ def ExtrusionAlongPath(self, IDsOfElements, PathMesh, PathShape, NodeStart,
+ HasAngles, Angles, HasRefPoint, RefPoint,
+ MakeGroups=False, LinearVariation=False):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( RefPoint, geompyDC.GEOM._objref_GEOM_Object)):
+ RefPoint = self.smeshpyD.GetPointStruct(RefPoint)
+ pass
+ if MakeGroups:
+ return self.editor.ExtrusionAlongPathMakeGroups(IDsOfElements, PathMesh.GetMesh(),
+ PathShape, NodeStart, HasAngles,
+ Angles, HasRefPoint, RefPoint)
+ return self.editor.ExtrusionAlongPath(IDsOfElements, PathMesh.GetMesh(), PathShape,
+ NodeStart, HasAngles, Angles, HasRefPoint, RefPoint)
+
+ ## Generate new elements by extrusion of the elements belong to object
+ # A path of extrusion must be a meshed edge.
+ # @param IDsOfElements is ids of elements
+ # @param PathMesh mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion
+ # @param PathShape is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path
+ # @param NodeStart the first or the last node on the edge. It is used to define the direction of extrusion
+ # @param HasAngles allows the shape to be rotated around the path to get the resulting mesh in a helical fashion
+ # @param Angles list of angles
+ # @param HasRefPoint allows to use base point
+ # @param RefPoint point around which the shape is rotated(the mass center of the shape by default).
+ # User can specify any point as the Base Point and the shape will be rotated with respect to this point.
+ # @param MakeGroups to generate new groups from existing ones
+ # @param LinearVariation makes compute rotation angles as linear variation of given Angles along path steps
+ def ExtrusionAlongPathObject(self, theObject, PathMesh, PathShape, NodeStart,
+ HasAngles, Angles, HasRefPoint, RefPoint,
+ MakeGroups=False, LinearVariation=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( RefPoint, geompyDC.GEOM._objref_GEOM_Object)):
+ RefPoint = self.smeshpyD.GetPointStruct(RefPoint)
+ if MakeGroups:
+ return self.editor.ExtrusionAlongPathObjectMakeGroups(theObject, PathMesh.GetMesh(),
+ PathShape, NodeStart, HasAngles,
+ Angles, HasRefPoint, RefPoint)
+ return self.editor.ExtrusionAlongPathObject(theObject, PathMesh.GetMesh(), PathShape,
+ NodeStart, HasAngles, Angles, HasRefPoint,
+ RefPoint)
+
+ ## Symmetrical copy of mesh elements
+ # @param IDsOfElements list of elements ids
+ # @param Mirror is AxisStruct or geom object(point, line, plane)
+ # @param theMirrorType is POINT, AXIS or PLANE
+ # If the Mirror is geom object this parameter is unnecessary
+ # @param Copy allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0)
+ # @param MakeGroups to generate new groups from existing ones (if Copy)
+ def Mirror(self, IDsOfElements, Mirror, theMirrorType, Copy=0, MakeGroups=False):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Mirror, geompyDC.GEOM._objref_GEOM_Object)):
+ Mirror = self.smeshpyD.GetAxisStruct(Mirror)
+ if Copy and MakeGroups:
+ return self.editor.MirrorMakeGroups(IDsOfElements, Mirror, theMirrorType)
+ self.editor.Mirror(IDsOfElements, Mirror, theMirrorType, Copy)
+ return []
+
+ ## Create a new mesh by symmetrical copy of mesh elements
+ # @param IDsOfElements list of elements ids
+ # @param Mirror is AxisStruct or geom object(point, line, plane)
+ # @param theMirrorType is POINT, AXIS or PLANE
+ # If the Mirror is geom object this parameter is unnecessary
+ # @param MakeGroups to generate new groups from existing ones
+ # @param NewMeshName is a name of new mesh to create
+ def MirrorMakeMesh(self, IDsOfElements, Mirror, theMirrorType, MakeGroups=0, NewMeshName=""):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Mirror, geompyDC.GEOM._objref_GEOM_Object)):
+ Mirror = self.smeshpyD.GetAxisStruct(Mirror)
+ mesh = self.editor.MirrorMakeMesh(IDsOfElements, Mirror, theMirrorType,
+ MakeGroups, NewMeshName)
+ return Mesh(self.smeshpyD,self.geompyD,mesh)
- ## Create a mesh group by the given criteria(list of criterions)
- # @param groupName is the name of the mesh group
- # @param Criteria is the list of criterions
- # @return SMESH_Group
- def MakeGroupByCriteria(self, groupName, theCriteria):
- aFilterMgr = self.smeshpyD.CreateFilterManager()
- aFilter = aFilterMgr.CreateFilter()
- aFilter.SetCriteria(theCriteria)
- group = self.MakeGroupByFilter(groupName, aFilter)
- return group
+ ## Symmetrical copy of object
+ # @param theObject mesh, submesh or group
+ # @param Mirror is AxisStruct or geom object(point, line, plane)
+ # @param theMirrorType is POINT, AXIS or PLANE
+ # If the Mirror is geom object this parameter is unnecessary
+ # @param Copy allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0)
+ # @param MakeGroups to generate new groups from existing ones (if Copy)
+ def MirrorObject (self, theObject, Mirror, theMirrorType, Copy=0, MakeGroups=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( Mirror, geompyDC.GEOM._objref_GEOM_Object)):
+ Mirror = self.smeshpyD.GetAxisStruct(Mirror)
+ if Copy and MakeGroups:
+ return self.editor.MirrorObjectMakeGroups(theObject, Mirror, theMirrorType)
+ self.editor.MirrorObject(theObject, Mirror, theMirrorType, Copy)
+ return []
- ## Create a mesh group by the given filter
- # @param groupName is the name of the mesh group
- # @param Criterion is the instance of Filter class
- # @return SMESH_Group
- def MakeGroupByFilter(self, groupName, theFilter):
- anIds = theFilter.GetElementsId(self.mesh)
- anElemType = theFilter.GetElementType()
- group = self.MakeGroupByIds(groupName, anElemType, anIds)
- return group
+ ## Create a new mesh by symmetrical copy of object
+ # @param theObject mesh, submesh or group
+ # @param Mirror is AxisStruct or geom object(point, line, plane)
+ # @param theMirrorType is POINT, AXIS or PLANE
+ # If the Mirror is geom object this parameter is unnecessary
+ # @param MakeGroups to generate new groups from existing ones
+ # @param NewMeshName is a name of new mesh to create
+ def MirrorObjectMakeMesh (self, theObject, Mirror, theMirrorType,MakeGroups=0, NewMeshName=""):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if (isinstance(Mirror, geompyDC.GEOM._objref_GEOM_Object)):
+ Mirror = self.smeshpyD.GetAxisStruct(Mirror)
+ mesh = self.editor.MirrorObjectMakeMesh(theObject, Mirror, theMirrorType,
+ MakeGroups, NewMeshName)
+ return Mesh( self.smeshpyD,self.geompyD,mesh )
- ## Pass mesh elements through the given filter and return ids
- # @param theFilter is SMESH_Filter
- # @return list of ids
- def GetIdsFromFilter(self, theFilter):
- return theFilter.GetElementsId(self.mesh)
+ ## Translates the elements
+ # @param IDsOfElements list of elements ids
+ # @param Vector direction of translation(DirStruct or vector)
+ # @param Copy allows to copy the translated elements
+ # @param MakeGroups to generate new groups from existing ones (if Copy)
+ def Translate(self, IDsOfElements, Vector, Copy, MakeGroups=False):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Vector, geompyDC.GEOM._objref_GEOM_Object)):
+ Vector = self.smeshpyD.GetDirStruct(Vector)
+ if Copy and MakeGroups:
+ return self.editor.TranslateMakeGroups(IDsOfElements, Vector)
+ self.editor.Translate(IDsOfElements, Vector, Copy)
+ return []
- ## Verify whether 2D mesh element has free edges(edges connected to one face only)\n
- # Returns list of special structures(borders).
- # @return list of SMESH.FreeEdges.Border structure: edge id and two its nodes ids.
- def GetFreeBorders(self):
- aFilterMgr = self.smeshpyD.CreateFilterManager()
- aPredicate = aFilterMgr.CreateFreeEdges()
- aPredicate.SetMesh(self.mesh)
- aBorders = aPredicate.GetBorders()
- return aBorders
+ ## Create a new mesh of translated elements
+ # @param IDsOfElements list of elements ids
+ # @param Vector direction of translation(DirStruct or vector)
+ # @param MakeGroups to generate new groups from existing ones
+ # @param NewMeshName is a name of new mesh to create
+ def TranslateMakeMesh(self, IDsOfElements, Vector, MakeGroups=False, NewMeshName=""):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Vector, geompyDC.GEOM._objref_GEOM_Object)):
+ Vector = self.smeshpyD.GetDirStruct(Vector)
+ mesh = self.editor.TranslateMakeMesh(IDsOfElements, Vector, MakeGroups, NewMeshName)
+ return Mesh ( self.smeshpyD, self.geompyD, mesh )
- ## Remove a group
- def RemoveGroup(self, group):
- self.mesh.RemoveGroup(group)
+ ## Translates the object
+ # @param theObject object to translate(mesh, submesh, or group)
+ # @param Vector direction of translation(DirStruct or geom vector)
+ # @param Copy allows to copy the translated elements
+ # @param MakeGroups to generate new groups from existing ones (if Copy)
+ def TranslateObject(self, theObject, Vector, Copy, MakeGroups=False):
+ if ( isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if ( isinstance( Vector, geompyDC.GEOM._objref_GEOM_Object)):
+ Vector = self.smeshpyD.GetDirStruct(Vector)
+ if Copy and MakeGroups:
+ return self.editor.TranslateObjectMakeGroups(theObject, Vector)
+ self.editor.TranslateObject(theObject, Vector, Copy)
+ return []
- ## Remove group with its contents
- def RemoveGroupWithContents(self, group):
- self.mesh.RemoveGroupWithContents(group)
+ ## Create a new mesh from translated object
+ # @param theObject object to translate(mesh, submesh, or group)
+ # @param Vector direction of translation(DirStruct or geom vector)
+ # @param MakeGroups to generate new groups from existing ones
+ # @param NewMeshName is a name of new mesh to create
+ def TranslateObjectMakeMesh(self, theObject, Vector, MakeGroups=False, NewMeshName=""):
+ if (isinstance(theObject, Mesh)):
+ theObject = theObject.GetMesh()
+ if (isinstance(Vector, geompyDC.GEOM._objref_GEOM_Object)):
+ Vector = self.smeshpyD.GetDirStruct(Vector)
+ mesh = self.editor.TranslateObjectMakeMesh(theObject, Vector, MakeGroups, NewMeshName)
+ return Mesh( self.smeshpyD, self.geompyD, mesh )
- ## Get the list of groups existing in the mesh
- def GetGroups(self):
- return self.mesh.GetGroups()
+ ## Rotates the elements
+ # @param IDsOfElements list of elements ids
+ # @param Axis axis of rotation(AxisStruct or geom line)
+ # @param AngleInRadians angle of rotation(in radians)
+ # @param Copy allows to copy the rotated elements
+ # @param MakeGroups to generate new groups from existing ones (if Copy)
+ def Rotate (self, IDsOfElements, Axis, AngleInRadians, Copy, MakeGroups=False):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Axis, geompyDC.GEOM._objref_GEOM_Object)):
+ Axis = self.smeshpyD.GetAxisStruct(Axis)
+ if Copy and MakeGroups:
+ return self.editor.RotateMakeGroups(IDsOfElements, Axis, AngleInRadians)
+ self.editor.Rotate(IDsOfElements, Axis, AngleInRadians, Copy)
+ return []
- ## Get number of groups existing in the mesh
- def NbGroups(self):
- return self.mesh.NbGroups()
+ ## Create a new mesh of rotated elements
+ # @param IDsOfElements list of element ids
+ # @param Axis axis of rotation(AxisStruct or geom line)
+ # @param AngleInRadians angle of rotation(in radians)
+ # @param MakeGroups to generate new groups from existing ones
+ # @param NewMeshName is a name of new mesh to create
+ def RotateMakeMesh (self, IDsOfElements, Axis, AngleInRadians, MakeGroups=0, NewMeshName=""):
+ if IDsOfElements == []:
+ IDsOfElements = self.GetElementsId()
+ if ( isinstance( Axis, geompyDC.GEOM._objref_GEOM_Object)):
+ Axis = self.smeshpyD.GetAxisStruct(Axis)
+ mesh = self.editor.RotateMakeMesh(IDsOfElements, Axis, AngleInRadians,
+ MakeGroups, NewMeshName)
+ return Mesh( self.smeshpyD, self.geompyD, mesh )
- ## Get the list of names of groups existing in the mesh
- def GetGroupNames(self):
- groups = self.GetGroups()
- names = []
- for group in groups:
- names.append(group.GetName())
- return names
+ ## Rotates the object
+ # @param theObject object to rotate(mesh, submesh, or group)
+ # @param Axis axis of rotation(AxisStruct or geom line)
+ # @param AngleInRadians angle of rotation(in radians)
+ # @param Copy allows to copy the rotated elements
+ # @param MakeGroups to generate new groups from existing ones (if Copy)
+ def RotateObject (self, theObject, Axis, AngleInRadians, Copy, MakeGroups=False):
+ if (isinstance(theObject, Mesh)):
+ theObject = theObject.GetMesh()
+ if (isinstance(Axis, geompyDC.GEOM._objref_GEOM_Object)):
+ Axis = self.smeshpyD.GetAxisStruct(Axis)
+ if Copy and MakeGroups:
+ return self.editor.RotateObjectMakeGroups(theObject, Axis, AngleInRadians)
+ self.editor.RotateObject(theObject, Axis, AngleInRadians, Copy)
+ return []
- ## Union of two groups
- # New group is created. All mesh elements that are
- # present in initial groups are added to the new one
- def UnionGroups(self, group1, group2, name):
- return self.mesh.UnionGroups(group1, group2, name)
+ ## Create a new mesh from a rotated object
+ # @param theObject object to rotate (mesh, submesh, or group)
+ # @param Axis axis of rotation(AxisStruct or geom line)
+ # @param AngleInRadians angle of rotation(in radians)
+ # @param MakeGroups to generate new groups from existing ones
+ # @param NewMeshName is a name of new mesh to create
+ def RotateObjectMakeMesh(self, theObject, Axis, AngleInRadians, MakeGroups=0,NewMeshName=""):
+ if (isinstance( theObject, Mesh )):
+ theObject = theObject.GetMesh()
+ if (isinstance(Axis, geompyDC.GEOM._objref_GEOM_Object)):
+ Axis = self.smeshpyD.GetAxisStruct(Axis)
+ mesh = self.editor.RotateObjectMakeMesh(theObject, Axis, AngleInRadians,
+ MakeGroups, NewMeshName)
+ return Mesh( self.smeshpyD, self.geompyD, mesh )
- ## Intersection of two groups
- # New group is created. All mesh elements that are
- # present in both initial groups are added to the new one.
- def IntersectGroups(self, group1, group2, name):
- return self.mesh.IntersectGroups(group1, group2, name)
+ ## Find group of nodes close to each other within Tolerance.
+ # @param Tolerance tolerance value
+ # @param list of group of nodes
+ def FindCoincidentNodes (self, Tolerance):
+ return self.editor.FindCoincidentNodes(Tolerance)
- ## Cut of two groups
- # New group is created. All mesh elements that are present in
- # main group but do not present in tool group are added to the new one
- def CutGroups(self, mainGroup, toolGroup, name):
- return self.mesh.CutGroups(mainGroup, toolGroup, name)
+ ## Find group of nodes close to each other within Tolerance.
+ # @param Tolerance tolerance value
+ # @param SubMeshOrGroup SubMesh or Group
+ # @param list of group of nodes
+ def FindCoincidentNodesOnPart (self, SubMeshOrGroup, Tolerance):
+ return self.editor.FindCoincidentNodesOnPart(SubMeshOrGroup, Tolerance)
+ ## Merge nodes
+ # @param list of group of nodes
+ def MergeNodes (self, GroupsOfNodes):
+ self.editor.MergeNodes(GroupsOfNodes)
- # Get some info about mesh:
- # ------------------------
+ ## Find elements built on the same nodes.
+ # @param MeshOrSubMeshOrGroup Mesh or SubMesh, or Group of elements for searching
+ # @return a list of groups of equal elements
+ def FindEqualElements (self, MeshOrSubMeshOrGroup):
+ return self.editor.FindEqualElements(MeshOrSubMeshOrGroup)
- ## Get the log of nodes and elements added or removed since previous
- # clear of the log.
- # @param clearAfterGet log is emptied after Get (safe if concurrents access)
- # @return list of log_block structures:
- # commandType
- # number
- # coords
- # indexes
- def GetLog(self, clearAfterGet):
- return self.mesh.GetLog(clearAfterGet)
+ ## Merge elements in each given group.
+ # @param GroupsOfElementsID groups of elements for merging
+ def MergeElements(self, GroupsOfElementsID):
+ self.editor.MergeElements(GroupsOfElementsID)
- ## Clear the log of nodes and elements added or removed since previous
- # clear. Must be used immediately after GetLog if clearAfterGet is false.
- def ClearLog(self):
- self.mesh.ClearLog()
+ ## Remove all but one of elements built on the same nodes.
+ def MergeEqualElements(self):
+ self.editor.MergeEqualElements()
- def SetAutoColor(self, color):
- self.mesh.SetAutoColor(color)
+ ## Sew free borders
+ def SewFreeBorders (self, FirstNodeID1, SecondNodeID1, LastNodeID1,
+ FirstNodeID2, SecondNodeID2, LastNodeID2,
+ CreatePolygons, CreatePolyedrs):
+ return self.editor.SewFreeBorders(FirstNodeID1, SecondNodeID1, LastNodeID1,
+ FirstNodeID2, SecondNodeID2, LastNodeID2,
+ CreatePolygons, CreatePolyedrs)
- def GetAutoColor(self):
- return self.mesh.GetAutoColor()
+ ## Sew conform free borders
+ def SewConformFreeBorders (self, FirstNodeID1, SecondNodeID1, LastNodeID1,
+ FirstNodeID2, SecondNodeID2):
+ return self.editor.SewConformFreeBorders(FirstNodeID1, SecondNodeID1, LastNodeID1,
+ FirstNodeID2, SecondNodeID2)
- ## Get the internal Id
- def GetId(self):
- return self.mesh.GetId()
+ ## Sew border to side
+ def SewBorderToSide (self, FirstNodeIDOnFreeBorder, SecondNodeIDOnFreeBorder, LastNodeIDOnFreeBorder,
+ FirstNodeIDOnSide, LastNodeIDOnSide, CreatePolygons, CreatePolyedrs):
+ return self.editor.SewBorderToSide(FirstNodeIDOnFreeBorder, SecondNodeIDOnFreeBorder, LastNodeIDOnFreeBorder,
+ FirstNodeIDOnSide, LastNodeIDOnSide, CreatePolygons, CreatePolyedrs)
- ## Get the study Id
- def GetStudyId(self):
- return self.mesh.GetStudyId()
+ ## Sew two sides of a mesh. Nodes belonging to Side1 are
+ # merged with nodes of elements of Side2.
+ # Number of elements in theSide1 and in theSide2 must be
+ # equal and they should have similar node connectivity.
+ # The nodes to merge should belong to sides borders and
+ # the first node should be linked to the second.
+ def SewSideElements (self, IDsOfSide1Elements, IDsOfSide2Elements,
+ NodeID1OfSide1ToMerge, NodeID1OfSide2ToMerge,
+ NodeID2OfSide1ToMerge, NodeID2OfSide2ToMerge):
+ return self.editor.SewSideElements(IDsOfSide1Elements, IDsOfSide2Elements,
+ NodeID1OfSide1ToMerge, NodeID1OfSide2ToMerge,
+ NodeID2OfSide1ToMerge, NodeID2OfSide2ToMerge)
- ## Check group names for duplications.
- # Consider maximum group name length stored in MED file.
- def HasDuplicatedGroupNamesMED(self):
- return self.mesh.HasDuplicatedGroupNamesMED()
+ ## Set new nodes for given element.
+ # @param ide the element id
+ # @param newIDs nodes ids
+ # @return If number of nodes is not corresponded to type of element - returns false
+ def ChangeElemNodes(self, ide, newIDs):
+ return self.editor.ChangeElemNodes(ide, newIDs)
- ## Obtain instance of SMESH_MeshEditor
- def GetMeshEditor(self):
- return self.mesh.GetMeshEditor()
+ ## If during last operation of MeshEditor some nodes were
+ # created this method returns list of its IDs, \n
+ # if new nodes not created - returns empty list
+ def GetLastCreatedNodes(self):
+ return self.editor.GetLastCreatedNodes()
- ## Get MED Mesh
- def GetMEDMesh(self):
- return self.mesh.GetMEDMesh()
+ ## If during last operation of MeshEditor some elements were
+ # created this method returns list of its IDs, \n
+ # if new elements not creared - returns empty list
+ def GetLastCreatedElems(self):
+ return self.editor.GetLastCreatedElems()
+## Mother class to define algorithm, recommended to do not use directly.
+#
+# More details.
+class Mesh_Algorithm:
+ # @class Mesh_Algorithm
+ # @brief Class Mesh_Algorithm
- # Get informations about mesh contents:
- # ------------------------------------
+ #def __init__(self,smesh):
+ # self.smesh=smesh
+ def __init__(self):
+ self.mesh = None
+ self.geom = None
+ self.subm = None
+ self.algo = None
- ## Returns number of nodes in mesh
- def NbNodes(self):
- return self.mesh.NbNodes()
+ ## Find hypothesis in study by its type name and parameters.
+ # Find only those hypothesis, which was created in smeshpyD engine.
+ def FindHypothesis (self, hypname, args, CompareMethod, smeshpyD):
+ study = smeshpyD.GetCurrentStudy()
+ #to do: find component by smeshpyD object, not by its data type
+ scomp = study.FindComponent(smeshpyD.ComponentDataType())
+ if scomp is not None:
+ res,hypRoot = scomp.FindSubObject(SMESH.Tag_HypothesisRoot)
+ # is hypotheses root label exists?
+ if res and hypRoot is not None:
+ iter = study.NewChildIterator(hypRoot)
+ # check all published hypotheses
+ while iter.More():
+ hypo_so_i = iter.Value()
+ attr = hypo_so_i.FindAttribute("AttributeIOR")[1]
+ if attr is not None:
+ anIOR = attr.Value()
+ hypo_o_i = salome.orb.string_to_object(anIOR)
+ if hypo_o_i is not None:
+ # is hypothesis?
+ hypo_i = hypo_o_i._narrow(SMESH.SMESH_Hypothesis)
+ if hypo_i is not None:
+ # belongs to this engine?
+ if smeshpyD.GetObjectId(hypo_i) > 0:
+ # is it the needed hypothesis?
+ if hypo_i.GetName() == hypname:
+ # check args
+ if CompareMethod(hypo_i, args):
+ # found!!!
+ return hypo_i
+ pass
+ pass
+ pass
+ pass
+ pass
+ iter.Next()
+ pass
+ pass
+ pass
+ return None
- ## Returns number of elements in mesh
- def NbElements(self):
- return self.mesh.NbElements()
+ ## Find algorithm in study by its type name.
+ # Find only those algorithm, which was created in smeshpyD engine.
+ def FindAlgorithm (self, algoname, smeshpyD):
+ study = smeshpyD.GetCurrentStudy()
+ #to do: find component by smeshpyD object, not by its data type
+ scomp = study.FindComponent(smeshpyD.ComponentDataType())
+ if scomp is not None:
+ res,hypRoot = scomp.FindSubObject(SMESH.Tag_AlgorithmsRoot)
+ # is algorithms root label exists?
+ if res and hypRoot is not None:
+ iter = study.NewChildIterator(hypRoot)
+ # check all published algorithms
+ while iter.More():
+ algo_so_i = iter.Value()
+ attr = algo_so_i.FindAttribute("AttributeIOR")[1]
+ if attr is not None:
+ anIOR = attr.Value()
+ algo_o_i = salome.orb.string_to_object(anIOR)
+ if algo_o_i is not None:
+ # is algorithm?
+ algo_i = algo_o_i._narrow(SMESH.SMESH_Algo)
+ if algo_i is not None:
+ # belongs to this engine?
+ if smeshpyD.GetObjectId(algo_i) > 0:
+ # is it the needed algorithm?
+ if algo_i.GetName() == algoname:
+ # found!!!
+ return algo_i
+ pass
+ pass
+ pass
+ pass
+ iter.Next()
+ pass
+ pass
+ pass
+ return None
- ## Returns number of edges in mesh
- def NbEdges(self):
- return self.mesh.NbEdges()
+ ## If the algorithm is global, return 0; \n
+ # else return the submesh associated to this algorithm.
+ def GetSubMesh(self):
+ return self.subm
- ## Returns number of edges with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbEdgesOfOrder(self, elementOrder):
- return self.mesh.NbEdgesOfOrder(elementOrder)
+ ## Return the wrapped mesher.
+ def GetAlgorithm(self):
+ return self.algo
- ## Returns number of faces in mesh
- def NbFaces(self):
- return self.mesh.NbFaces()
+ ## Get list of hypothesis that can be used with this algorithm
+ def GetCompatibleHypothesis(self):
+ mylist = []
+ if self.algo:
+ mylist = self.algo.GetCompatibleHypothesis()
+ return mylist
- ## Returns number of faces with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbFacesOfOrder(self, elementOrder):
- return self.mesh.NbFacesOfOrder(elementOrder)
+ ## Get name of algo
+ def GetName(self):
+ GetName(self.algo)
- ## Returns number of triangles in mesh
- def NbTriangles(self):
- return self.mesh.NbTriangles()
+ ## Set name to algo
+ def SetName(self, name):
+ SetName(self.algo, name)
- ## Returns number of triangles with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbTrianglesOfOrder(self, elementOrder):
- return self.mesh.NbTrianglesOfOrder(elementOrder)
+ ## Get id of algo
+ def GetId(self):
+ return self.algo.GetId()
- ## Returns number of quadrangles in mesh
- def NbQuadrangles(self):
- return self.mesh.NbQuadrangles()
+ ## Private method.
+ def Create(self, mesh, geom, hypo, so="libStdMeshersEngine.so"):
+ if geom is None:
+ raise RuntimeError, "Attemp to create " + hypo + " algoritm on None shape"
+ algo = self.FindAlgorithm(hypo, mesh.smeshpyD)
+ if algo is None:
+ algo = mesh.smeshpyD.CreateHypothesis(hypo, so)
+ pass
+ self.Assign(algo, mesh, geom)
+ return self.algo
- ## Returns number of quadrangles with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbQuadranglesOfOrder(self, elementOrder):
- return self.mesh.NbQuadranglesOfOrder(elementOrder)
+ ## Private method
+ def Assign(self, algo, mesh, geom):
+ if geom is None:
+ raise RuntimeError, "Attemp to create " + algo + " algoritm on None shape"
+ self.mesh = mesh
+ piece = mesh.geom
+ if not geom:
+ self.geom = piece
+ else:
+ self.geom = geom
+ name = GetName(geom)
+ if name==NO_NAME:
+ name = mesh.geompyD.SubShapeName(geom, piece)
+ mesh.geompyD.addToStudyInFather(piece, geom, name)
+ self.subm = mesh.mesh.GetSubMesh(geom, algo.GetName())
- ## Returns number of polygons in mesh
- def NbPolygons(self):
- return self.mesh.NbPolygons()
+ self.algo = algo
+ status = mesh.mesh.AddHypothesis(self.geom, self.algo)
+ TreatHypoStatus( status, algo.GetName(), GetName(self.geom), True )
- ## Returns number of volumes in mesh
- def NbVolumes(self):
- return self.mesh.NbVolumes()
+ def CompareHyp (self, hyp, args):
+ print "CompareHyp is not implemented for ", self.__class__.__name__, ":", hyp.GetName()
+ return False
+
+ def CompareEqualHyp (self, hyp, args):
+ return True
- ## Returns number of volumes with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbVolumesOfOrder(self, elementOrder):
- return self.mesh.NbVolumesOfOrder(elementOrder)
+ ## Private method
+ def Hypothesis (self, hyp, args=[], so="libStdMeshersEngine.so",
+ UseExisting=0, CompareMethod=""):
+ hypo = None
+ if UseExisting:
+ if CompareMethod == "": CompareMethod = self.CompareHyp
+ hypo = self.FindHypothesis(hyp, args, CompareMethod, self.mesh.smeshpyD)
+ pass
+ if hypo is None:
+ hypo = self.mesh.smeshpyD.CreateHypothesis(hyp, so)
+ a = ""
+ s = "="
+ i = 0
+ n = len(args)
+ while i<n:
+ a = a + s + str(args[i])
+ s = ","
+ i = i + 1
+ pass
+ SetName(hypo, hyp + a)
+ pass
+ status = self.mesh.mesh.AddHypothesis(self.geom, hypo)
+ TreatHypoStatus( status, GetName(hypo), GetName(self.geom), 0 )
+ return hypo
- ## Returns number of tetrahedrons in mesh
- def NbTetras(self):
- return self.mesh.NbTetras()
- ## Returns number of tetrahedrons with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbTetrasOfOrder(self, elementOrder):
- return self.mesh.NbTetrasOfOrder(elementOrder)
+# Public class: Mesh_Segment
+# --------------------------
- ## Returns number of hexahedrons in mesh
- def NbHexas(self):
- return self.mesh.NbHexas()
+## Class to define a segment 1D algorithm for discretization
+#
+# More details.
+class Mesh_Segment(Mesh_Algorithm):
- ## Returns number of hexahedrons with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbHexasOfOrder(self, elementOrder):
- return self.mesh.NbHexasOfOrder(elementOrder)
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "Regular_1D")
- ## Returns number of pyramids in mesh
- def NbPyramids(self):
- return self.mesh.NbPyramids()
+ ## Define "LocalLength" hypothesis to cut an edge in several segments with the same length
+ # @param l for the length of segments that cut an edge
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ # @param p precision, used for number of segments calculation.
+ # It must be pozitive, meaningfull values are in range [0,1].
+ # In general, number of segments is calculated with formula:
+ # nb = ceil((edge_length / l) - p)
+ # Function ceil rounds its argument to the higher integer.
+ # So, p=0 means rounding of (edge_length / l) to the higher integer,
+ # p=0.5 means rounding of (edge_length / l) to the nearest integer,
+ # p=1 means rounding of (edge_length / l) to the lower integer.
+ # Default value is 1e-07.
+ def LocalLength(self, l, UseExisting=0, p=1e-07):
+ hyp = self.Hypothesis("LocalLength", [l,p], UseExisting=UseExisting,
+ CompareMethod=self.CompareLocalLength)
+ hyp.SetLength(l)
+ hyp.SetPrecision(p)
+ return hyp
- ## Returns number of pyramids with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbPyramidsOfOrder(self, elementOrder):
- return self.mesh.NbPyramidsOfOrder(elementOrder)
+ ## Check if the given "LocalLength" hypothesis has the same parameters as given arguments
+ def CompareLocalLength(self, hyp, args):
+ if IsEqual(hyp.GetLength(), args[0]):
+ return IsEqual(hyp.GetPrecision(), args[1])
+ return False
- ## Returns number of prisms in mesh
- def NbPrisms(self):
- return self.mesh.NbPrisms()
+ ## Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments
+ # @param n for the number of segments that cut an edge
+ # @param s for the scale factor (optional)
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def NumberOfSegments(self, n, s=[], UseExisting=0):
+ if s == []:
+ hyp = self.Hypothesis("NumberOfSegments", [n], UseExisting=UseExisting,
+ CompareMethod=self.CompareNumberOfSegments)
+ else:
+ hyp = self.Hypothesis("NumberOfSegments", [n,s], UseExisting=UseExisting,
+ CompareMethod=self.CompareNumberOfSegments)
+ hyp.SetDistrType( 1 )
+ hyp.SetScaleFactor(s)
+ hyp.SetNumberOfSegments(n)
+ return hyp
- ## Returns number of prisms with given order in mesh
- # @param elementOrder is order of elements:
- # ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
- def NbPrismsOfOrder(self, elementOrder):
- return self.mesh.NbPrismsOfOrder(elementOrder)
+ ## Check if the given "NumberOfSegments" hypothesis has the same parameters as given arguments
+ def CompareNumberOfSegments(self, hyp, args):
+ if hyp.GetNumberOfSegments() == args[0]:
+ if len(args) == 1:
+ return True
+ else:
+ if hyp.GetDistrType() == 1:
+ if IsEqual(hyp.GetScaleFactor(), args[1]):
+ return True
+ return False
- ## Returns number of polyhedrons in mesh
- def NbPolyhedrons(self):
- return self.mesh.NbPolyhedrons()
+ ## Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing
+ # @param start for the length of the first segment
+ # @param end for the length of the last segment
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def Arithmetic1D(self, start, end, UseExisting=0):
+ hyp = self.Hypothesis("Arithmetic1D", [start, end], UseExisting=UseExisting,
+ CompareMethod=self.CompareArithmetic1D)
+ hyp.SetLength(start, 1)
+ hyp.SetLength(end , 0)
+ return hyp
- ## Returns number of submeshes in mesh
- def NbSubMesh(self):
- return self.mesh.NbSubMesh()
+ ## Check if the given "Arithmetic1D" hypothesis has the same parameters as given arguments
+ def CompareArithmetic1D(self, hyp, args):
+ if IsEqual(hyp.GetLength(1), args[0]):
+ if IsEqual(hyp.GetLength(0), args[1]):
+ return True
+ return False
- ## Returns list of mesh elements ids
- def GetElementsId(self):
- return self.mesh.GetElementsId()
+ ## Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing
+ # @param start for the length of the first segment
+ # @param end for the length of the last segment
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def StartEndLength(self, start, end, UseExisting=0):
+ hyp = self.Hypothesis("StartEndLength", [start, end], UseExisting=UseExisting,
+ CompareMethod=self.CompareStartEndLength)
+ hyp.SetLength(start, 1)
+ hyp.SetLength(end , 0)
+ return hyp
- ## Returns list of ids of mesh elements with given type
- # @param elementType is required type of elements
- def GetElementsByType(self, elementType):
- return self.mesh.GetElementsByType(elementType)
+ ## Check if the given "StartEndLength" hypothesis has the same parameters as given arguments
+ def CompareStartEndLength(self, hyp, args):
+ if IsEqual(hyp.GetLength(1), args[0]):
+ if IsEqual(hyp.GetLength(0), args[1]):
+ return True
+ return False
- ## Returns list of mesh nodes ids
- def GetNodesId(self):
- return self.mesh.GetNodesId()
+ ## Define "Deflection1D" hypothesis
+ # @param d for the deflection
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def Deflection1D(self, d, UseExisting=0):
+ hyp = self.Hypothesis("Deflection1D", [d], UseExisting=UseExisting,
+ CompareMethod=self.CompareDeflection1D)
+ hyp.SetDeflection(d)
+ return hyp
- # Get informations about mesh elements:
- # ------------------------------------
+ ## Check if the given "Deflection1D" hypothesis has the same parameters as given arguments
+ def CompareDeflection1D(self, hyp, args):
+ return IsEqual(hyp.GetDeflection(), args[0])
- ## Returns type of mesh element
- def GetElementType(self, id, iselem):
- return self.mesh.GetElementType(id, iselem)
+ ## Define "Propagation" hypothesis that propagate all other hypothesis on all others edges that are in
+ # the opposite side in the case of quadrangular faces
+ def Propagation(self):
+ return self.Hypothesis("Propagation", UseExisting=1, CompareMethod=self.CompareEqualHyp)
- ## Returns list of submesh elements ids
- # @param Shape is geom object(subshape) IOR
- # Shape must be subshape of a ShapeToMesh()
- def GetSubMeshElementsId(self, Shape):
- if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
- ShapeID = Shape.GetSubShapeIndices()[0]
- else:
- ShapeID = Shape
- return self.mesh.GetSubMeshElementsId(ShapeID)
+ ## Define "AutomaticLength" hypothesis
+ # @param fineness for the fineness [0-1]
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def AutomaticLength(self, fineness=0, UseExisting=0):
+ hyp = self.Hypothesis("AutomaticLength",[fineness],UseExisting=UseExisting,
+ CompareMethod=self.CompareAutomaticLength)
+ hyp.SetFineness( fineness )
+ return hyp
- ## Returns list of submesh nodes ids
- # @param Shape is geom object(subshape) IOR
- # Shape must be subshape of a ShapeToMesh()
- def GetSubMeshNodesId(self, Shape, all):
- if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
- ShapeID = Shape.GetSubShapeIndices()[0]
- else:
- ShapeID = Shape
- return self.mesh.GetSubMeshNodesId(ShapeID, all)
+ ## Check if the given "AutomaticLength" hypothesis has the same parameters as given arguments
+ def CompareAutomaticLength(self, hyp, args):
+ return IsEqual(hyp.GetFineness(), args[0])
- ## Returns list of ids of submesh elements with given type
- # @param Shape is geom object(subshape) IOR
- # Shape must be subshape of a ShapeToMesh()
- def GetSubMeshElementType(self, Shape):
- if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
- ShapeID = Shape.GetSubShapeIndices()[0]
+ ## Define "SegmentLengthAroundVertex" hypothesis
+ # @param length for the segment length
+ # @param vertex for the length localization: vertex index [0,1] | vertex object.
+ # Any other integer value means what hypo will be set on the
+ # whole 1D shape, where Mesh_Segment algorithm is assigned.
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def LengthNearVertex(self, length, vertex=0, UseExisting=0):
+ import types
+ store_geom = self.geom
+ if type(vertex) is types.IntType:
+ if vertex == 0 or vertex == 1:
+ vertex = self.mesh.geompyD.SubShapeAllSorted(self.geom, geompyDC.ShapeType["VERTEX"])[vertex]
+ self.geom = vertex
+ pass
+ pass
else:
- ShapeID = Shape
- return self.mesh.GetSubMeshElementType(ShapeID)
-
- ## Get mesh description
- def Dump(self):
- return self.mesh.Dump()
+ self.geom = vertex
+ pass
+ ### 0D algorithm
+ if self.geom is None:
+ raise RuntimeError, "Attemp to create SegmentAroundVertex_0D algoritm on None shape"
+ name = GetName(self.geom)
+ if name == NO_NAME:
+ piece = self.mesh.geom
+ name = self.mesh.geompyD.SubShapeName(self.geom, piece)
+ self.mesh.geompyD.addToStudyInFather(piece, self.geom, name)
+ algo = self.FindAlgorithm("SegmentAroundVertex_0D", self.mesh.smeshpyD)
+ if algo is None:
+ algo = self.mesh.smeshpyD.CreateHypothesis("SegmentAroundVertex_0D", "libStdMeshersEngine.so")
+ pass
+ status = self.mesh.mesh.AddHypothesis(self.geom, algo)
+ TreatHypoStatus(status, "SegmentAroundVertex_0D", name, True)
+ ###
+ hyp = self.Hypothesis("SegmentLengthAroundVertex", [length], UseExisting=UseExisting,
+ CompareMethod=self.CompareLengthNearVertex)
+ self.geom = store_geom
+ hyp.SetLength( length )
+ return hyp
+ ## Check if the given "LengthNearVertex" hypothesis has the same parameters as given arguments
+ def CompareLengthNearVertex(self, hyp, args):
+ return IsEqual(hyp.GetLength(), args[0])
- # Get information about nodes and elements of mesh by its ids:
- # -----------------------------------------------------------
+ ## Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges.
+ # If the 2D mesher sees that all boundary edges are quadratic ones,
+ # it generates quadratic faces, else it generates linear faces using
+ # medium nodes as if they were vertex ones.
+ # The 3D mesher generates quadratic volumes only if all boundary faces
+ # are quadratic ones, else it fails.
+ def QuadraticMesh(self):
+ hyp = self.Hypothesis("QuadraticMesh", UseExisting=1, CompareMethod=self.CompareEqualHyp)
+ return hyp
- ## Get XYZ coordinates of node as list of double
- # \n If there is not node for given ID - returns empty list
- def GetNodeXYZ(self, id):
- return self.mesh.GetNodeXYZ(id)
+# Public class: Mesh_CompositeSegment
+# --------------------------
- ## For given node returns list of IDs of inverse elements
- # \n If there is not node for given ID - returns empty list
- def GetNodeInverseElements(self, id):
- return self.mesh.GetNodeInverseElements(id)
+## Class to define a segment 1D algorithm for discretization
+#
+# More details.
+class Mesh_CompositeSegment(Mesh_Segment):
- ## @brief Return position of a node on shape
- # @return SMESH::NodePosition
- def GetNodePosition(self,NodeID):
- return self.mesh.GetNodePosition(NodeID)
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ self.Create(mesh, geom, "CompositeSegment_1D")
- ## If given element is node returns IDs of shape from position
- # \n If there is not node for given ID - returns -1
- def GetShapeID(self, id):
- return self.mesh.GetShapeID(id)
- ## For given element returns ID of result shape after
- # FindShape() from SMESH_MeshEditor
- # \n If there is not element for given ID - returns -1
- def GetShapeIDForElem(self,id):
- return self.mesh.GetShapeIDForElem(id)
+# Public class: Mesh_Segment_Python
+# ---------------------------------
- ## Returns number of nodes for given element
- # \n If there is not element for given ID - returns -1
- def GetElemNbNodes(self, id):
- return self.mesh.GetElemNbNodes(id)
+## Class to define a segment 1D algorithm for discretization with python function
+#
+# More details.
+class Mesh_Segment_Python(Mesh_Segment):
- ## Returns ID of node by given index for given element
- # \n If there is not element for given ID - returns -1
- # \n If there is not node for given index - returns -2
- def GetElemNode(self, id, index):
- return self.mesh.GetElemNode(id, index)
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ import Python1dPlugin
+ self.Create(mesh, geom, "Python_1D", "libPython1dEngine.so")
- ## Returns IDs of nodes of given element
- def GetElemNodes(self, id):
- return self.mesh.GetElemNodes(id)
+ ## Define "PythonSplit1D" hypothesis based on the Erwan Adam patch, awaiting equivalent SALOME functionality
+ # @param n for the number of segments that cut an edge
+ # @param func for the python function that calculate the length of all segments
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def PythonSplit1D(self, n, func, UseExisting=0):
+ hyp = self.Hypothesis("PythonSplit1D", [n], "libPython1dEngine.so",
+ UseExisting=UseExisting, CompareMethod=self.ComparePythonSplit1D)
+ hyp.SetNumberOfSegments(n)
+ hyp.SetPythonLog10RatioFunction(func)
+ return hyp
- ## Returns true if given node is medium node
- # in given quadratic element
- def IsMediumNode(self, elementID, nodeID):
- return self.mesh.IsMediumNode(elementID, nodeID)
+ ## Check if the given "PythonSplit1D" hypothesis has the same parameters as given arguments
+ def ComparePythonSplit1D(self, hyp, args):
+ #if hyp.GetNumberOfSegments() == args[0]:
+ # if hyp.GetPythonLog10RatioFunction() == args[1]:
+ # return True
+ return False
- ## Returns true if given node is medium node
- # in one of quadratic elements
- def IsMediumNodeOfAnyElem(self, nodeID, elementType):
- return self.mesh.IsMediumNodeOfAnyElem(nodeID, elementType)
+# Public class: Mesh_Triangle
+# ---------------------------
- ## Returns number of edges for given element
- def ElemNbEdges(self, id):
- return self.mesh.ElemNbEdges(id)
+## Class to define a triangle 2D algorithm
+#
+# More details.
+class Mesh_Triangle(Mesh_Algorithm):
- ## Returns number of faces for given element
- def ElemNbFaces(self, id):
- return self.mesh.ElemNbFaces(id)
+ # default values
+ algoType = 0
+ params = 0
- ## Returns true if given element is polygon
- def IsPoly(self, id):
- return self.mesh.IsPoly(id)
+ _angleMeshS = 8
+ _gradation = 1.1
- ## Returns true if given element is quadratic
- def IsQuadratic(self, id):
- return self.mesh.IsQuadratic(id)
+ ## Private constructor.
+ def __init__(self, mesh, algoType, geom=0):
+ Mesh_Algorithm.__init__(self)
- ## Returns XYZ coordinates of bary center for given element
- # as list of double
- # \n If there is not element for given ID - returns empty list
- def BaryCenter(self, id):
- return self.mesh.BaryCenter(id)
+ self.algoType = algoType
+ if algoType == MEFISTO:
+ self.Create(mesh, geom, "MEFISTO_2D")
+ pass
+ elif algoType == BLSURF:
+ import BLSURFPlugin
+ self.Create(mesh, geom, "BLSURF", "libBLSURFEngine.so")
+ self.SetPhysicalMesh()
+ elif algoType == NETGEN:
+ if noNETGENPlugin:
+ print "Warning: NETGENPlugin module unavailable"
+ pass
+ self.Create(mesh, geom, "NETGEN_2D", "libNETGENEngine.so")
+ pass
+ elif algoType == NETGEN_2D:
+ if noNETGENPlugin:
+ print "Warning: NETGENPlugin module unavailable"
+ pass
+ self.Create(mesh, geom, "NETGEN_2D_ONLY", "libNETGENEngine.so")
+ pass
+ ## Define "MaxElementArea" hypothesis to give the maximum area of each triangle
+ # @param area for the maximum area of each triangle
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ #
+ # Only for algoType == MEFISTO || NETGEN_2D
+ def MaxElementArea(self, area, UseExisting=0):
+ if self.algoType == MEFISTO or self.algoType == NETGEN_2D:
+ hyp = self.Hypothesis("MaxElementArea", [area], UseExisting=UseExisting,
+ CompareMethod=self.CompareMaxElementArea)
+ hyp.SetMaxElementArea(area)
+ return hyp
+ elif self.algoType == NETGEN:
+ print "Netgen 1D-2D algo doesn't support this hypothesis"
+ return None
- # Mesh edition (SMESH_MeshEditor functionality):
- # ---------------------------------------------
+ ## Check if the given "MaxElementArea" hypothesis has the same parameters as given arguments
+ def CompareMaxElementArea(self, hyp, args):
+ return IsEqual(hyp.GetMaxElementArea(), args[0])
- ## Removes elements from mesh by ids
- # @param IDsOfElements is list of ids of elements to remove
- def RemoveElements(self, IDsOfElements):
- return self.editor.RemoveElements(IDsOfElements)
+ ## Define "LengthFromEdges" hypothesis to build triangles
+ # based on the length of the edges taken from the wire
+ #
+ # Only for algoType == MEFISTO || NETGEN_2D
+ def LengthFromEdges(self):
+ if self.algoType == MEFISTO or self.algoType == NETGEN_2D:
+ hyp = self.Hypothesis("LengthFromEdges", UseExisting=1, CompareMethod=self.CompareEqualHyp)
+ return hyp
+ elif self.algoType == NETGEN:
+ print "Netgen 1D-2D algo doesn't support this hypothesis"
+ return None
- ## Removes nodes from mesh by ids
- # @param IDsOfNodes is list of ids of nodes to remove
- def RemoveNodes(self, IDsOfNodes):
- return self.editor.RemoveNodes(IDsOfNodes)
+ ## Set PhysicalMesh
+ # @param thePhysicalMesh is:
+ # DefaultSize or Custom
+ def SetPhysicalMesh(self, thePhysicalMesh=1):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetPhysicalMesh(thePhysicalMesh)
- ## Add node to mesh by coordinates
- def AddNode(self, x, y, z):
- return self.editor.AddNode( x, y, z)
+ ## Set PhySize flag
+ def SetPhySize(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetPhySize(theVal)
+ ## Set GeometricMesh
+ # @param theGeometricMesh is:
+ # DefaultGeom or Custom
+ def SetGeometricMesh(self, theGeometricMesh=0):
+ if self.params == 0:
+ self.Parameters()
+ if self.params.GetPhysicalMesh() == 0: theGeometricMesh = 1
+ self.params.SetGeometricMesh(theGeometricMesh)
- ## Create edge both similar and quadratic (this is determed
- # by number of given nodes).
- # @param IdsOfNodes List of node IDs for creation of element.
- # Needed order of nodes in this list corresponds to description
- # of MED. \n This description is located by the following link:
- # http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.
- def AddEdge(self, IDsOfNodes):
- return self.editor.AddEdge(IDsOfNodes)
+ ## Set AngleMeshS flag
+ def SetAngleMeshS(self, theVal=_angleMeshS):
+ if self.params == 0:
+ self.Parameters()
+ if self.params.GetGeometricMesh() == 0: theVal = self._angleMeshS
+ self.params.SetAngleMeshS(theVal)
- ## Create face both similar and quadratic (this is determed
- # by number of given nodes).
- # @param IdsOfNodes List of node IDs for creation of element.
- # Needed order of nodes in this list corresponds to description
- # of MED. \n This description is located by the following link:
- # http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.
- def AddFace(self, IDsOfNodes):
- return self.editor.AddFace(IDsOfNodes)
+ ## Set Gradation flag
+ def SetGradation(self, theVal=_gradation):
+ if self.params == 0:
+ self.Parameters()
+ if self.params.GetGeometricMesh() == 0: theVal = self._gradation
+ self.params.SetGradation(theVal)
- ## Add polygonal face to mesh by list of nodes ids
- def AddPolygonalFace(self, IdsOfNodes):
- return self.editor.AddPolygonalFace(IdsOfNodes)
+ ## Set QuadAllowed flag
+ #
+ # Only for algoType == NETGEN || NETGEN_2D
+ def SetQuadAllowed(self, toAllow=True):
+ if self.algoType == NETGEN_2D:
+ if toAllow: # add QuadranglePreference
+ self.Hypothesis("QuadranglePreference", UseExisting=1, CompareMethod=self.CompareEqualHyp)
+ else: # remove QuadranglePreference
+ for hyp in self.mesh.GetHypothesisList( self.geom ):
+ if hyp.GetName() == "QuadranglePreference":
+ self.mesh.RemoveHypothesis( self.geom, hyp )
+ pass
+ pass
+ pass
+ return
+ if self.params == 0:
+ self.Parameters()
+ if self.params:
+ self.params.SetQuadAllowed(toAllow)
+ return
- ## Create volume both similar and quadratic (this is determed
- # by number of given nodes).
- # @param IdsOfNodes List of node IDs for creation of element.
- # Needed order of nodes in this list corresponds to description
- # of MED. \n This description is located by the following link:
- # http://www.salome-platform.org/salome2/web_med_internet/logiciels/medV2.2.2_doc_html/html/modele_de_donnees.html#3.
- def AddVolume(self, IDsOfNodes):
- return self.editor.AddVolume(IDsOfNodes)
+ ## Define "Netgen 2D Parameters" hypothesis
+ #
+ # Only for algoType == NETGEN
+ def Parameters(self):
+ if self.algoType == NETGEN:
+ self.params = self.Hypothesis("NETGEN_Parameters_2D", [],
+ "libNETGENEngine.so", UseExisting=0)
+ return self.params
+ elif self.algoType == MEFISTO:
+ print "Mefisto algo doesn't support NETGEN_Parameters_2D hypothesis"
+ return None
+ elif self.algoType == NETGEN_2D:
+ print "NETGEN_2D_ONLY algo doesn't support 'NETGEN_Parameters_2D' hypothesis"
+ print "NETGEN_2D_ONLY uses 'MaxElementArea' and 'LengthFromEdges' ones"
+ return None
+ elif self.algoType == BLSURF:
+ self.params = self.Hypothesis("BLSURF_Parameters", [],
+ "libBLSURFEngine.so", UseExisting=0)
+ return self.params
+ return None
- ## Create volume of many faces, giving nodes for each face.
- # @param IdsOfNodes List of node IDs for volume creation face by face.
- # @param Quantities List of integer values, Quantities[i]
- # gives quantity of nodes in face number i.
- def AddPolyhedralVolume (self, IdsOfNodes, Quantities):
- return self.editor.AddPolyhedralVolume(IdsOfNodes, Quantities)
+ ## Set MaxSize
+ #
+ # Only for algoType == NETGEN
+ def SetMaxSize(self, theSize):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetMaxSize(theSize)
- ## Create volume of many faces, giving IDs of existing faces.
- # @param IdsOfFaces List of face IDs for volume creation.
+ ## Set SecondOrder flag
#
- # Note: The created volume will refer only to nodes
- # of the given faces, not to the faces itself.
- def AddPolyhedralVolumeByFaces (self, IdsOfFaces):
- return self.editor.AddPolyhedralVolumeByFaces(IdsOfFaces)
+ # Only for algoType == NETGEN
+ def SetSecondOrder(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetSecondOrder(theVal)
+ ## Set Optimize flag
+ #
+ # Only for algoType == NETGEN
+ def SetOptimize(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetOptimize(theVal)
- ## @brief Bind a node to a vertex
- # @param NodeID - node ID
- # @param Vertex - vertex or vertex ID
- # @return True if succeed else raise an exception
- def SetNodeOnVertex(self, NodeID, Vertex):
- if ( isinstance( Vertex, geompyDC.GEOM._objref_GEOM_Object)):
- VertexID = Vertex.GetSubShapeIndices()[0]
- else:
- VertexID = Vertex
- try:
- self.editor.SetNodeOnVertex(NodeID, VertexID)
- except SALOME.SALOME_Exception, inst:
- raise ValueError, inst.details.text
- return True
+ ## Set Fineness
+ # @param theFineness is:
+ # VeryCoarse, Coarse, Moderate, Fine, VeryFine or Custom
+ #
+ # Only for algoType == NETGEN
+ def SetFineness(self, theFineness):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetFineness(theFineness)
+ ## Set GrowthRate
+ #
+ # Only for algoType == NETGEN
+ def SetGrowthRate(self, theRate):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetGrowthRate(theRate)
- ## @brief Store node position on an edge
- # @param NodeID - node ID
- # @param Edge - edge or edge ID
- # @param paramOnEdge - parameter on edge where the node is located
- # @return True if succeed else raise an exception
- def SetNodeOnEdge(self, NodeID, Edge, paramOnEdge):
- if ( isinstance( Edge, geompyDC.GEOM._objref_GEOM_Object)):
- EdgeID = Edge.GetSubShapeIndices()[0]
- else:
- EdgeID = Edge
- try:
- self.editor.SetNodeOnEdge(NodeID, EdgeID, paramOnEdge)
- except SALOME.SALOME_Exception, inst:
- raise ValueError, inst.details.text
- return True
+ ## Set NbSegPerEdge
+ #
+ # Only for algoType == NETGEN
+ def SetNbSegPerEdge(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetNbSegPerEdge(theVal)
- ## @brief Store node position on a face
- # @param NodeID - node ID
- # @param Face - face or face ID
- # @param u - U parameter on face where the node is located
- # @param v - V parameter on face where the node is located
- # @return True if succeed else raise an exception
- def SetNodeOnFace(self, NodeID, Face, u, v):
- if ( isinstance( Face, geompyDC.GEOM._objref_GEOM_Object)):
- FaceID = Face.GetSubShapeIndices()[0]
- else:
- FaceID = Face
- try:
- self.editor.SetNodeOnFace(NodeID, FaceID, u, v)
- except SALOME.SALOME_Exception, inst:
- raise ValueError, inst.details.text
- return True
+ ## Set NbSegPerRadius
+ #
+ # Only for algoType == NETGEN
+ def SetNbSegPerRadius(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ if self.params is not None:
+ self.params.SetNbSegPerRadius(theVal)
- ## @brief Bind a node to a solid
- # @param NodeID - node ID
- # @param Solid - solid or solid ID
- # @return True if succeed else raise an exception
- def SetNodeInVolume(self, NodeID, Solid):
- if ( isinstance( Solid, geompyDC.GEOM._objref_GEOM_Object)):
- SolidID = Solid.GetSubShapeIndices()[0]
- else:
- SolidID = Solid
- try:
- self.editor.SetNodeInVolume(NodeID, SolidID)
- except SALOME.SALOME_Exception, inst:
- raise ValueError, inst.details.text
- return True
+ ## Set Decimesh flag
+ def SetDecimesh(self, toAllow=False):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetDecimesh(toAllow)
- ## @brief Bind an element to a shape
- # @param ElementID - element ID
- # @param Shape - shape or shape ID
- # @return True if succeed else raise an exception
- def SetMeshElementOnShape(self, ElementID, Shape):
- if ( isinstance( Shape, geompyDC.GEOM._objref_GEOM_Object)):
- ShapeID = Shape.GetSubShapeIndices()[0]
- else:
- ShapeID = Shape
- try:
- self.editor.SetMeshElementOnShape(ElementID, ShapeID)
- except SALOME.SALOME_Exception, inst:
- raise ValueError, inst.details.text
- return True
+ pass
- ## Move node with given id
- # @param NodeID id of the node
- # @param x new X coordinate
- # @param y new Y coordinate
- # @param z new Z coordinate
- def MoveNode(self, NodeID, x, y, z):
- return self.editor.MoveNode(NodeID, x, y, z)
+# Public class: Mesh_Quadrangle
+# -----------------------------
- ## Find a node closest to a point
- # @param x X coordinate of a point
- # @param y Y coordinate of a point
- # @param z Z coordinate of a point
- # @return id of a node
- def FindNodeClosestTo(self, x, y, z):
- preview = self.mesh.GetMeshEditPreviewer()
- return preview.MoveClosestNodeToPoint(x, y, z, -1)
+## Class to define a quadrangle 2D algorithm
+#
+# More details.
+class Mesh_Quadrangle(Mesh_Algorithm):
- ## Find a node closest to a point and move it to a point location
- # @param x X coordinate of a point
- # @param y Y coordinate of a point
- # @param z Z coordinate of a point
- # @return id of a moved node
- def MeshToPassThroughAPoint(self, x, y, z):
- return self.editor.MoveClosestNodeToPoint(x, y, z, -1)
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "Quadrangle_2D")
- ## Replace two neighbour triangles sharing Node1-Node2 link
- # with ones built on the same 4 nodes but having other common link.
- # @param NodeID1 first node id
- # @param NodeID2 second node id
- # @return false if proper faces not found
- def InverseDiag(self, NodeID1, NodeID2):
- return self.editor.InverseDiag(NodeID1, NodeID2)
+ ## Define "QuadranglePreference" hypothesis, forcing construction
+ # of quadrangles if the number of nodes on opposite edges is not the same
+ # in the case where the global number of nodes on edges is even
+ def QuadranglePreference(self):
+ hyp = self.Hypothesis("QuadranglePreference", UseExisting=1,
+ CompareMethod=self.CompareEqualHyp)
+ return hyp
- ## Replace two neighbour triangles sharing Node1-Node2 link
- # with a quadrangle built on the same 4 nodes.
- # @param NodeID1 first node id
- # @param NodeID2 second node id
- # @return false if proper faces not found
- def DeleteDiag(self, NodeID1, NodeID2):
- return self.editor.DeleteDiag(NodeID1, NodeID2)
+# Public class: Mesh_Tetrahedron
+# ------------------------------
- ## Reorient elements by ids
- # @param IDsOfElements if undefined reorient all mesh elements
- def Reorient(self, IDsOfElements=None):
- if IDsOfElements == None:
- IDsOfElements = self.GetElementsId()
- return self.editor.Reorient(IDsOfElements)
+## Class to define a tetrahedron 3D algorithm
+#
+# More details.
+class Mesh_Tetrahedron(Mesh_Algorithm):
- ## Reorient all elements of the object
- # @param theObject is mesh, submesh or group
- def ReorientObject(self, theObject):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- return self.editor.ReorientObject(theObject)
+ params = 0
+ algoType = 0
- ## Fuse neighbour triangles into quadrangles.
- # @param IDsOfElements The triangles to be fused,
- # @param theCriterion is FT_...; used to choose a neighbour to fuse with.
- # @param MaxAngle is a max angle between element normals at which fusion
- # is still performed; theMaxAngle is mesured in radians.
- # @return TRUE in case of success, FALSE otherwise.
- def TriToQuad(self, IDsOfElements, theCriterion, MaxAngle):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- return self.editor.TriToQuad(IDsOfElements, self.smeshpyD.GetFunctor(theCriterion), MaxAngle)
+ ## Private constructor.
+ def __init__(self, mesh, algoType, geom=0):
+ Mesh_Algorithm.__init__(self)
- ## Fuse neighbour triangles of the object into quadrangles
- # @param theObject is mesh, submesh or group
- # @param theCriterion is FT_...; used to choose a neighbour to fuse with.
- # @param MaxAngle is a max angle between element normals at which fusion
- # is still performed; theMaxAngle is mesured in radians.
- # @return TRUE in case of success, FALSE otherwise.
- def TriToQuadObject (self, theObject, theCriterion, MaxAngle):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- return self.editor.TriToQuadObject(theObject, self.smeshpyD.GetFunctor(theCriterion), MaxAngle)
+ if algoType == NETGEN:
+ self.Create(mesh, geom, "NETGEN_3D", "libNETGENEngine.so")
+ pass
- ## Split quadrangles into triangles.
- # @param IDsOfElements the faces to be splitted.
- # @param theCriterion is FT_...; used to choose a diagonal for splitting.
- # @return TRUE in case of success, FALSE otherwise.
- def QuadToTri (self, IDsOfElements, theCriterion):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- return self.editor.QuadToTri(IDsOfElements, self.smeshpyD.GetFunctor(theCriterion))
+ elif algoType == GHS3D:
+ import GHS3DPlugin
+ self.Create(mesh, geom, "GHS3D_3D" , "libGHS3DEngine.so")
+ pass
- ## Split quadrangles into triangles.
- # @param theObject object to taking list of elements from, is mesh, submesh or group
- # @param theCriterion is FT_...; used to choose a diagonal for splitting.
- def QuadToTriObject (self, theObject, theCriterion):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- return self.editor.QuadToTriObject(theObject, self.smeshpyD.GetFunctor(theCriterion))
+ elif algoType == FULL_NETGEN:
+ if noNETGENPlugin:
+ print "Warning: NETGENPlugin module has not been imported."
+ self.Create(mesh, geom, "NETGEN_2D3D", "libNETGENEngine.so")
+ pass
- ## Split quadrangles into triangles.
- # @param theElems The faces to be splitted
- # @param the13Diag is used to choose a diagonal for splitting.
- # @return TRUE in case of success, FALSE otherwise.
- def SplitQuad (self, IDsOfElements, Diag13):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- return self.editor.SplitQuad(IDsOfElements, Diag13)
+ self.algoType = algoType
- ## Split quadrangles into triangles.
- # @param theObject is object to taking list of elements from, is mesh, submesh or group
- def SplitQuadObject (self, theObject, Diag13):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- return self.editor.SplitQuadObject(theObject, Diag13)
+ ## Define "MaxElementVolume" hypothesis to give the maximun volume of each tetrahedral
+ # @param vol for the maximum volume of each tetrahedral
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def MaxElementVolume(self, vol, UseExisting=0):
+ hyp = self.Hypothesis("MaxElementVolume", [vol], UseExisting=UseExisting,
+ CompareMethod=self.CompareMaxElementVolume)
+ hyp.SetMaxElementVolume(vol)
+ return hyp
- ## Find better splitting of the given quadrangle.
- # @param IDOfQuad ID of the quadrangle to be splitted.
- # @param theCriterion is FT_...; a criterion to choose a diagonal for splitting.
- # @return 1 if 1-3 diagonal is better, 2 if 2-4
- # diagonal is better, 0 if error occurs.
- def BestSplit (self, IDOfQuad, theCriterion):
- return self.editor.BestSplit(IDOfQuad, self.smeshpyD.GetFunctor(theCriterion))
+ ## Check if the given "MaxElementVolume" hypothesis has the same parameters as given arguments
+ def CompareMaxElementVolume(self, hyp, args):
+ return IsEqual(hyp.GetMaxElementVolume(), args[0])
- ## Split quafrangle faces near triangular facets of volumes
- #
- def SplitQuadsNearTriangularFacets(self):
- faces_array = self.GetElementsByType(SMESH.FACE)
- for face_id in faces_array:
- if self.GetElemNbNodes(face_id) == 4: # quadrangle
- quad_nodes = self.mesh.GetElemNodes(face_id)
- node1_elems = self.GetNodeInverseElements(quad_nodes[1 -1])
- isVolumeFound = False
- for node1_elem in node1_elems:
- if not isVolumeFound:
- if self.GetElementType(node1_elem, True) == SMESH.VOLUME:
- nb_nodes = self.GetElemNbNodes(node1_elem)
- if 3 < nb_nodes and nb_nodes < 7: # tetra or penta, or prism
- volume_elem = node1_elem
- volume_nodes = self.mesh.GetElemNodes(volume_elem)
- if volume_nodes.count(quad_nodes[2 -1]) > 0: # 1,2
- if volume_nodes.count(quad_nodes[4 -1]) > 0: # 1,2,4
- isVolumeFound = True
- if volume_nodes.count(quad_nodes[3 -1]) == 0: # 1,2,4 & !3
- self.SplitQuad([face_id], False) # diagonal 2-4
- elif volume_nodes.count(quad_nodes[3 -1]) > 0: # 1,2,3 & !4
- isVolumeFound = True
- self.SplitQuad([face_id], True) # diagonal 1-3
- elif volume_nodes.count(quad_nodes[4 -1]) > 0: # 1,4 & !2
- if volume_nodes.count(quad_nodes[3 -1]) > 0: # 1,4,3 & !2
- isVolumeFound = True
- self.SplitQuad([face_id], True) # diagonal 1-3
+ ## Define "Netgen 3D Parameters" hypothesis
+ def Parameters(self):
+ if (self.algoType == FULL_NETGEN):
+ self.params = self.Hypothesis("NETGEN_Parameters", [],
+ "libNETGENEngine.so", UseExisting=0)
+ return self.params
+ else:
+ print "Algo doesn't support this hypothesis"
+ return None
- ## @brief Split hexahedrons into tetrahedrons.
- #
- # Use pattern mapping functionality for splitting.
- # @param theObject object to take list of hexahedrons from; is mesh, submesh or group.
- # @param theNode000,theNode001 is in range [0,7]; give an orientation of the
- # pattern relatively each hexahedron: the (0,0,0) key-point of pattern
- # will be mapped into <theNode000>-th node of each volume, the (0,0,1)
- # key-point will be mapped into <theNode001>-th node of each volume.
- # The (0,0,0) key-point of used pattern corresponds to not split corner.
- # @return TRUE in case of success, FALSE otherwise.
- def SplitHexaToTetras (self, theObject, theNode000, theNode001):
- # Pattern: 5.---------.6
- # /|#* /|
- # / | #* / |
- # / | # * / |
- # / | # /* |
- # (0,0,1) 4.---------.7 * |
- # |#* |1 | # *|
- # | # *.----|---#.2
- # | #/ * | /
- # | /# * | /
- # | / # * | /
- # |/ #*|/
- # (0,0,0) 0.---------.3
- pattern_tetra = "!!! Nb of points: \n 8 \n\
- !!! Points: \n\
- 0 0 0 !- 0 \n\
- 0 1 0 !- 1 \n\
- 1 1 0 !- 2 \n\
- 1 0 0 !- 3 \n\
- 0 0 1 !- 4 \n\
- 0 1 1 !- 5 \n\
- 1 1 1 !- 6 \n\
- 1 0 1 !- 7 \n\
- !!! Indices of points of 6 tetras: \n\
- 0 3 4 1 \n\
- 7 4 3 1 \n\
- 4 7 5 1 \n\
- 6 2 5 7 \n\
- 1 5 2 7 \n\
- 2 3 1 7 \n"
+ ## Set MaxSize
+ def SetMaxSize(self, theSize):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetMaxSize(theSize)
- pattern = self.smeshpyD.GetPattern()
- isDone = pattern.LoadFromFile(pattern_tetra)
- if not isDone:
- print 'Pattern.LoadFromFile :', pattern.GetErrorCode()
- return isDone
+ ## Set SecondOrder flag
+ def SetSecondOrder(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetSecondOrder(theVal)
- pattern.ApplyToHexahedrons(self.mesh, theObject.GetIDs(), theNode000, theNode001)
- isDone = pattern.MakeMesh(self.mesh, False, False)
- if not isDone: print 'Pattern.MakeMesh :', pattern.GetErrorCode()
+ ## Set Optimize flag
+ def SetOptimize(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetOptimize(theVal)
- # split quafrangle faces near triangular facets of volumes
- self.SplitQuadsNearTriangularFacets()
+ ## Set Fineness
+ # @param theFineness is:
+ # VeryCoarse, Coarse, Moderate, Fine, VeryFine or Custom
+ def SetFineness(self, theFineness):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetFineness(theFineness)
- return isDone
+ ## Set GrowthRate
+ def SetGrowthRate(self, theRate):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetGrowthRate(theRate)
- ## @brief Split hexahedrons into prisms.
- #
- # Use pattern mapping functionality for splitting.
- # @param theObject object to take list of hexahedrons from; is mesh, submesh or group.
- # @param theNode000,theNode001 is in range [0,7]; give an orientation of the
- # pattern relatively each hexahedron: the (0,0,0) key-point of pattern
- # will be mapped into <theNode000>-th node of each volume, the (0,0,1)
- # key-point will be mapped into <theNode001>-th node of each volume.
- # The edge (0,0,0)-(0,0,1) of used pattern connects two not split corners.
- # @return TRUE in case of success, FALSE otherwise.
- def SplitHexaToPrisms (self, theObject, theNode000, theNode001):
- # Pattern: 5.---------.6
- # /|# /|
- # / | # / |
- # / | # / |
- # / | # / |
- # (0,0,1) 4.---------.7 |
- # | | | |
- # | 1.----|----.2
- # | / * | /
- # | / * | /
- # | / * | /
- # |/ *|/
- # (0,0,0) 0.---------.3
- pattern_prism = "!!! Nb of points: \n 8 \n\
- !!! Points: \n\
- 0 0 0 !- 0 \n\
- 0 1 0 !- 1 \n\
- 1 1 0 !- 2 \n\
- 1 0 0 !- 3 \n\
- 0 0 1 !- 4 \n\
- 0 1 1 !- 5 \n\
- 1 1 1 !- 6 \n\
- 1 0 1 !- 7 \n\
- !!! Indices of points of 2 prisms: \n\
- 0 1 3 4 5 7 \n\
- 2 3 1 6 7 5 \n"
+ ## Set NbSegPerEdge
+ def SetNbSegPerEdge(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetNbSegPerEdge(theVal)
+
+ ## Set NbSegPerRadius
+ def SetNbSegPerRadius(self, theVal):
+ if self.params == 0:
+ self.Parameters()
+ self.params.SetNbSegPerRadius(theVal)
- pattern = self.smeshpyD.GetPattern()
- isDone = pattern.LoadFromFile(pattern_prism)
- if not isDone:
- print 'Pattern.LoadFromFile :', pattern.GetErrorCode()
- return isDone
+# Public class: Mesh_Hexahedron
+# ------------------------------
- pattern.ApplyToHexahedrons(self.mesh, theObject.GetIDs(), theNode000, theNode001)
- isDone = pattern.MakeMesh(self.mesh, False, False)
- if not isDone: print 'Pattern.MakeMesh :', pattern.GetErrorCode()
+## Class to define a hexahedron 3D algorithm
+#
+# More details.
+class Mesh_Hexahedron(Mesh_Algorithm):
- # split quafrangle faces near triangular facets of volumes
- self.SplitQuadsNearTriangularFacets()
+ params = 0
+ algoType = 0
- return isDone
+ ## Private constructor.
+ def __init__(self, mesh, algoType=Hexa, geom=0):
+ Mesh_Algorithm.__init__(self)
- ## Smooth elements
- # @param IDsOfElements list if ids of elements to smooth
- # @param IDsOfFixedNodes list of ids of fixed nodes.
- # Note that nodes built on edges and boundary nodes are always fixed.
- # @param MaxNbOfIterations maximum number of iterations
- # @param MaxAspectRatio varies in range [1.0, inf]
- # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
- def Smooth(self, IDsOfElements, IDsOfFixedNodes,
- MaxNbOfIterations, MaxAspectRatio, Method):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- return self.editor.Smooth(IDsOfElements, IDsOfFixedNodes,
- MaxNbOfIterations, MaxAspectRatio, Method)
+ self.algoType = algoType
- ## Smooth elements belong to given object
- # @param theObject object to smooth
- # @param IDsOfFixedNodes list of ids of fixed nodes.
- # Note that nodes built on edges and boundary nodes are always fixed.
- # @param MaxNbOfIterations maximum number of iterations
- # @param MaxAspectRatio varies in range [1.0, inf]
- # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
- def SmoothObject(self, theObject, IDsOfFixedNodes,
- MaxNbOfIterations, MaxxAspectRatio, Method):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- return self.editor.SmoothObject(theObject, IDsOfFixedNodes,
- MaxNbOfIterations, MaxxAspectRatio, Method)
+ if algoType == Hexa:
+ self.Create(mesh, geom, "Hexa_3D")
+ pass
- ## Parametric smooth the given elements
- # @param IDsOfElements list if ids of elements to smooth
- # @param IDsOfFixedNodes list of ids of fixed nodes.
- # Note that nodes built on edges and boundary nodes are always fixed.
- # @param MaxNbOfIterations maximum number of iterations
- # @param MaxAspectRatio varies in range [1.0, inf]
- # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
- def SmoothParametric(self, IDsOfElements, IDsOfFixedNodes,
- MaxNbOfIterations, MaxAspectRatio, Method):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- return self.editor.SmoothParametric(IDsOfElements, IDsOfFixedNodes,
- MaxNbOfIterations, MaxAspectRatio, Method)
+ elif algoType == Hexotic:
+ import HexoticPlugin
+ self.Create(mesh, geom, "Hexotic_3D", "libHexoticEngine.so")
+ pass
- ## Parametric smooth elements belong to given object
- # @param theObject object to smooth
- # @param IDsOfFixedNodes list of ids of fixed nodes.
- # Note that nodes built on edges and boundary nodes are always fixed.
- # @param MaxNbOfIterations maximum number of iterations
- # @param MaxAspectRatio varies in range [1.0, inf]
- # @param Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
- def SmoothParametricObject(self, theObject, IDsOfFixedNodes,
- MaxNbOfIterations, MaxAspectRatio, Method):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- return self.editor.SmoothParametricObject(theObject, IDsOfFixedNodes,
- MaxNbOfIterations, MaxAspectRatio, Method)
+ ## Define "MinMaxQuad" hypothesis to give the three hexotic parameters
+ def MinMaxQuad(self, min=3, max=8, quad=True):
+ self.params = self.Hypothesis("Hexotic_Parameters", [], "libHexoticEngine.so",
+ UseExisting=0)
+ self.params.SetHexesMinLevel(min)
+ self.params.SetHexesMaxLevel(max)
+ self.params.SetHexoticQuadrangles(quad)
+ return self.params
- ## Converts all mesh to quadratic one, deletes old elements, replacing
- # them with quadratic ones with the same id.
- def ConvertToQuadratic(self, theForce3d):
- self.editor.ConvertToQuadratic(theForce3d)
+# Deprecated, only for compatibility!
+# Public class: Mesh_Netgen
+# ------------------------------
- ## Converts all mesh from quadratic to ordinary ones,
- # deletes old quadratic elements, \n replacing
- # them with ordinary mesh elements with the same id.
- def ConvertFromQuadratic(self):
- return self.editor.ConvertFromQuadratic()
+## Class to define a NETGEN-based 2D or 3D algorithm
+# that need no discrete boundary (i.e. independent)
+#
+# This class is deprecated, only for compatibility!
+#
+# More details.
+class Mesh_Netgen(Mesh_Algorithm):
- ## Renumber mesh nodes
- def RenumberNodes(self):
- self.editor.RenumberNodes()
+ is3D = 0
- ## Renumber mesh elements
- def RenumberElements(self):
- self.editor.RenumberElements()
+ ## Private constructor.
+ def __init__(self, mesh, is3D, geom=0):
+ Mesh_Algorithm.__init__(self)
- ## Generate new elements by rotation of the elements around the axis
- # @param IDsOfElements list of ids of elements to sweep
- # @param Axix axis of rotation, AxisStruct or line(geom object)
- # @param AngleInRadians angle of Rotation
- # @param NbOfSteps number of steps
- # @param Tolerance tolerance
- # @param MakeGroups to generate new groups from existing ones
- def RotationSweep(self, IDsOfElements, Axix, AngleInRadians, NbOfSteps, Tolerance, MakeGroups=False):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Axix, geompyDC.GEOM._objref_GEOM_Object)):
- Axix = self.smeshpyD.GetAxisStruct(Axix)
- if MakeGroups:
- return self.editor.RotationSweepMakeGroups(IDsOfElements, Axix,
- AngleInRadians, NbOfSteps, Tolerance)
- self.editor.RotationSweep(IDsOfElements, Axix, AngleInRadians, NbOfSteps, Tolerance)
- return []
+ if noNETGENPlugin:
+ print "Warning: NETGENPlugin module has not been imported."
- ## Generate new elements by rotation of the elements of object around the axis
- # @param theObject object wich elements should be sweeped
- # @param Axix axis of rotation, AxisStruct or line(geom object)
- # @param AngleInRadians angle of Rotation
- # @param NbOfSteps number of steps
- # @param Tolerance tolerance
- # @param MakeGroups to generate new groups from existing ones
- def RotationSweepObject(self, theObject, Axix, AngleInRadians, NbOfSteps, Tolerance, MakeGroups=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( Axix, geompyDC.GEOM._objref_GEOM_Object)):
- Axix = self.smeshpyD.GetAxisStruct(Axix)
- if MakeGroups:
- return self.editor.RotationSweepObjectMakeGroups(theObject, Axix, AngleInRadians,
- NbOfSteps, Tolerance)
- self.editor.RotationSweepObject(theObject, Axix, AngleInRadians, NbOfSteps, Tolerance)
- return []
+ self.is3D = is3D
+ if is3D:
+ self.Create(mesh, geom, "NETGEN_2D3D", "libNETGENEngine.so")
+ pass
- ## Generate new elements by extrusion of the elements with given ids
- # @param IDsOfElements list of elements ids for extrusion
- # @param StepVector vector, defining the direction and value of extrusion
- # @param NbOfSteps the number of steps
- # @param MakeGroups to generate new groups from existing ones
- def ExtrusionSweep(self, IDsOfElements, StepVector, NbOfSteps, MakeGroups=False):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
- StepVector = self.smeshpyD.GetDirStruct(StepVector)
- if MakeGroups:
- return self.editor.ExtrusionSweepMakeGroups(IDsOfElements, StepVector, NbOfSteps)
- self.editor.ExtrusionSweep(IDsOfElements, StepVector, NbOfSteps)
- return []
+ else:
+ self.Create(mesh, geom, "NETGEN_2D", "libNETGENEngine.so")
+ pass
- ## Generate new elements by extrusion of the elements with given ids
- # @param IDsOfElements is ids of elements
- # @param StepVector vector, defining the direction and value of extrusion
- # @param NbOfSteps the number of steps
- # @param ExtrFlags set flags for performing extrusion
- # @param SewTolerance uses for comparing locations of nodes if flag
- # EXTRUSION_FLAG_SEW is set
- # @param MakeGroups to generate new groups from existing ones
- def AdvancedExtrusion(self, IDsOfElements, StepVector, NbOfSteps, ExtrFlags, SewTolerance, MakeGroups=False):
- if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
- StepVector = self.smeshpyD.GetDirStruct(StepVector)
- if MakeGroups:
- return self.editor.AdvancedExtrusionMakeGroups(IDsOfElements, StepVector, NbOfSteps,
- ExtrFlags, SewTolerance)
- self.editor.AdvancedExtrusion(IDsOfElements, StepVector, NbOfSteps,
- ExtrFlags, SewTolerance)
- return []
+ ## Define hypothesis containing parameters of the algorithm
+ def Parameters(self):
+ if self.is3D:
+ hyp = self.Hypothesis("NETGEN_Parameters", [],
+ "libNETGENEngine.so", UseExisting=0)
+ else:
+ hyp = self.Hypothesis("NETGEN_Parameters_2D", [],
+ "libNETGENEngine.so", UseExisting=0)
+ return hyp
- ## Generate new elements by extrusion of the elements belong to object
- # @param theObject object wich elements should be processed
- # @param StepVector vector, defining the direction and value of extrusion
- # @param NbOfSteps the number of steps
- # @param MakeGroups to generate new groups from existing ones
- def ExtrusionSweepObject(self, theObject, StepVector, NbOfSteps, MakeGroups=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
- StepVector = self.smeshpyD.GetDirStruct(StepVector)
- if MakeGroups:
- return self.editor.ExtrusionSweepObjectMakeGroups(theObject, StepVector, NbOfSteps)
- self.editor.ExtrusionSweepObject(theObject, StepVector, NbOfSteps)
- return []
+# Public class: Mesh_Projection1D
+# ------------------------------
- ## Generate new elements by extrusion of the elements belong to object
- # @param theObject object wich elements should be processed
- # @param StepVector vector, defining the direction and value of extrusion
- # @param NbOfSteps the number of steps
- # @param MakeGroups to generate new groups from existing ones
- def ExtrusionSweepObject1D(self, theObject, StepVector, NbOfSteps, MakeGroups=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
- StepVector = self.smeshpyD.GetDirStruct(StepVector)
- if MakeGroups:
- return self.editor.ExtrusionSweepObject1DMakeGroups(theObject, StepVector, NbOfSteps)
- self.editor.ExtrusionSweepObject1D(theObject, StepVector, NbOfSteps)
- return []
+## Class to define a projection 1D algorithm
+#
+# More details.
+class Mesh_Projection1D(Mesh_Algorithm):
+
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "Projection_1D")
+
+ ## Define "Source Edge" hypothesis, specifying a meshed edge to
+ # take a mesh pattern from, and optionally association of vertices
+ # between the source edge and a target one (where a hipothesis is assigned to)
+ # @param edge to take nodes distribution from
+ # @param mesh to take nodes distribution from (optional)
+ # @param srcV is vertex of \a edge to associate with \a tgtV (optional)
+ # @param tgtV is vertex of \a the edge where the algorithm is assigned,
+ # to associate with \a srcV (optional)
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def SourceEdge(self, edge, mesh=None, srcV=None, tgtV=None, UseExisting=0):
+ hyp = self.Hypothesis("ProjectionSource1D", [edge,mesh,srcV,tgtV],
+ UseExisting=0)
+ #UseExisting=UseExisting, CompareMethod=self.CompareSourceEdge)
+ hyp.SetSourceEdge( edge )
+ if not mesh is None and isinstance(mesh, Mesh):
+ mesh = mesh.GetMesh()
+ hyp.SetSourceMesh( mesh )
+ hyp.SetVertexAssociation( srcV, tgtV )
+ return hyp
- ## Generate new elements by extrusion of the elements belong to object
- # @param theObject object wich elements should be processed
- # @param StepVector vector, defining the direction and value of extrusion
- # @param NbOfSteps the number of steps
- # @param MakeGroups to generate new groups from existing ones
- def ExtrusionSweepObject2D(self, theObject, StepVector, NbOfSteps, MakeGroups=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( StepVector, geompyDC.GEOM._objref_GEOM_Object)):
- StepVector = self.smeshpyD.GetDirStruct(StepVector)
- if MakeGroups:
- return self.editor.ExtrusionSweepObject2DMakeGroups(theObject, StepVector, NbOfSteps)
- self.editor.ExtrusionSweepObject2D(theObject, StepVector, NbOfSteps)
- return []
+ ## Check if the given "SourceEdge" hypothesis has the same parameters as given arguments
+ #def CompareSourceEdge(self, hyp, args):
+ # # seems to be not really useful to reuse existing "SourceEdge" hypothesis
+ # return False
- ## Generate new elements by extrusion of the given elements
- # A path of extrusion must be a meshed edge.
- # @param IDsOfElements is ids of elements
- # @param PathMesh mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion
- # @param PathShape is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path
- # @param NodeStart the first or the last node on the edge. It is used to define the direction of extrusion
- # @param HasAngles allows the shape to be rotated around the path to get the resulting mesh in a helical fashion
- # @param Angles list of angles
- # @param HasRefPoint allows to use base point
- # @param RefPoint point around which the shape is rotated(the mass center of the shape by default).
- # User can specify any point as the Base Point and the shape will be rotated with respect to this point.
- # @param MakeGroups to generate new groups from existing ones
- # @param LinearVariation makes compute rotation angles as linear variation of given Angles along path steps
- def ExtrusionAlongPath(self, IDsOfElements, PathMesh, PathShape, NodeStart,
- HasAngles, Angles, HasRefPoint, RefPoint,
- MakeGroups=False, LinearVariation=False):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( RefPoint, geompyDC.GEOM._objref_GEOM_Object)):
- RefPoint = self.smeshpyD.GetPointStruct(RefPoint)
- pass
- if MakeGroups:
- return self.editor.ExtrusionAlongPathMakeGroups(IDsOfElements, PathMesh.GetMesh(),
- PathShape, NodeStart, HasAngles,
- Angles, HasRefPoint, RefPoint)
- return self.editor.ExtrusionAlongPath(IDsOfElements, PathMesh.GetMesh(), PathShape,
- NodeStart, HasAngles, Angles, HasRefPoint, RefPoint)
- ## Generate new elements by extrusion of the elements belong to object
- # A path of extrusion must be a meshed edge.
- # @param IDsOfElements is ids of elements
- # @param PathMesh mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion
- # @param PathShape is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path
- # @param NodeStart the first or the last node on the edge. It is used to define the direction of extrusion
- # @param HasAngles allows the shape to be rotated around the path to get the resulting mesh in a helical fashion
- # @param Angles list of angles
- # @param HasRefPoint allows to use base point
- # @param RefPoint point around which the shape is rotated(the mass center of the shape by default).
- # User can specify any point as the Base Point and the shape will be rotated with respect to this point.
- # @param MakeGroups to generate new groups from existing ones
- # @param LinearVariation makes compute rotation angles as linear variation of given Angles along path steps
- def ExtrusionAlongPathObject(self, theObject, PathMesh, PathShape, NodeStart,
- HasAngles, Angles, HasRefPoint, RefPoint,
- MakeGroups=False, LinearVariation=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( RefPoint, geompyDC.GEOM._objref_GEOM_Object)):
- RefPoint = self.smeshpyD.GetPointStruct(RefPoint)
- if MakeGroups:
- return self.editor.ExtrusionAlongPathObjectMakeGroups(theObject, PathMesh.GetMesh(),
- PathShape, NodeStart, HasAngles,
- Angles, HasRefPoint, RefPoint)
- return self.editor.ExtrusionAlongPathObject(theObject, PathMesh.GetMesh(), PathShape,
- NodeStart, HasAngles, Angles, HasRefPoint,
- RefPoint)
+# Public class: Mesh_Projection2D
+# ------------------------------
- ## Symmetrical copy of mesh elements
- # @param IDsOfElements list of elements ids
- # @param Mirror is AxisStruct or geom object(point, line, plane)
- # @param theMirrorType is POINT, AXIS or PLANE
- # If the Mirror is geom object this parameter is unnecessary
- # @param Copy allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0)
- # @param MakeGroups to generate new groups from existing ones (if Copy)
- def Mirror(self, IDsOfElements, Mirror, theMirrorType, Copy=0, MakeGroups=False):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Mirror, geompyDC.GEOM._objref_GEOM_Object)):
- Mirror = self.smeshpyD.GetAxisStruct(Mirror)
- if Copy and MakeGroups:
- return self.editor.MirrorMakeGroups(IDsOfElements, Mirror, theMirrorType)
- self.editor.Mirror(IDsOfElements, Mirror, theMirrorType, Copy)
- return []
+## Class to define a projection 2D algorithm
+#
+# More details.
+class Mesh_Projection2D(Mesh_Algorithm):
- ## Create a new mesh by symmetrical copy of mesh elements
- # @param IDsOfElements list of elements ids
- # @param Mirror is AxisStruct or geom object(point, line, plane)
- # @param theMirrorType is POINT, AXIS or PLANE
- # If the Mirror is geom object this parameter is unnecessary
- # @param MakeGroups to generate new groups from existing ones
- # @param NewMeshName is a name of new mesh to create
- def MirrorMakeMesh(self, IDsOfElements, Mirror, theMirrorType, MakeGroups=0, NewMeshName=""):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Mirror, geompyDC.GEOM._objref_GEOM_Object)):
- Mirror = self.smeshpyD.GetAxisStruct(Mirror)
- mesh = self.editor.MirrorMakeMesh(IDsOfElements, Mirror, theMirrorType,
- MakeGroups, NewMeshName)
- return Mesh(self.smeshpyD,self.geompyD,mesh)
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "Projection_2D")
- ## Symmetrical copy of object
- # @param theObject mesh, submesh or group
- # @param Mirror is AxisStruct or geom object(point, line, plane)
- # @param theMirrorType is POINT, AXIS or PLANE
- # If the Mirror is geom object this parameter is unnecessary
- # @param Copy allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0)
- # @param MakeGroups to generate new groups from existing ones (if Copy)
- def MirrorObject (self, theObject, Mirror, theMirrorType, Copy=0, MakeGroups=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( Mirror, geompyDC.GEOM._objref_GEOM_Object)):
- Mirror = self.smeshpyD.GetAxisStruct(Mirror)
- if Copy and MakeGroups:
- return self.editor.MirrorObjectMakeGroups(theObject, Mirror, theMirrorType)
- self.editor.MirrorObject(theObject, Mirror, theMirrorType, Copy)
- return []
+ ## Define "Source Face" hypothesis, specifying a meshed face to
+ # take a mesh pattern from, and optionally association of vertices
+ # between the source face and a target one (where a hipothesis is assigned to)
+ # @param face to take mesh pattern from
+ # @param mesh to take mesh pattern from (optional)
+ # @param srcV1 is vertex of \a face to associate with \a tgtV1 (optional)
+ # @param tgtV1 is vertex of \a the face where the algorithm is assigned,
+ # to associate with \a srcV1 (optional)
+ # @param srcV2 is vertex of \a face to associate with \a tgtV1 (optional)
+ # @param tgtV2 is vertex of \a the face where the algorithm is assigned,
+ # to associate with \a srcV2 (optional)
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ #
+ # Note: association vertices must belong to one edge of a face
+ def SourceFace(self, face, mesh=None, srcV1=None, tgtV1=None,
+ srcV2=None, tgtV2=None, UseExisting=0):
+ hyp = self.Hypothesis("ProjectionSource2D", [face,mesh,srcV1,tgtV1,srcV2,tgtV2],
+ UseExisting=0)
+ #UseExisting=UseExisting, CompareMethod=self.CompareSourceFace)
+ hyp.SetSourceFace( face )
+ if not mesh is None and isinstance(mesh, Mesh):
+ mesh = mesh.GetMesh()
+ hyp.SetSourceMesh( mesh )
+ hyp.SetVertexAssociation( srcV1, srcV2, tgtV1, tgtV2 )
+ return hyp
- ## Create a new mesh by symmetrical copy of object
- # @param theObject mesh, submesh or group
- # @param Mirror is AxisStruct or geom object(point, line, plane)
- # @param theMirrorType is POINT, AXIS or PLANE
- # If the Mirror is geom object this parameter is unnecessary
- # @param MakeGroups to generate new groups from existing ones
- # @param NewMeshName is a name of new mesh to create
- def MirrorObjectMakeMesh (self, theObject, Mirror, theMirrorType,MakeGroups=0, NewMeshName=""):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if (isinstance(Mirror, geompyDC.GEOM._objref_GEOM_Object)):
- Mirror = self.smeshpyD.GetAxisStruct(Mirror)
- mesh = self.editor.MirrorObjectMakeMesh(theObject, Mirror, theMirrorType,
- MakeGroups, NewMeshName)
- return Mesh( self.smeshpyD,self.geompyD,mesh )
+ ## Check if the given "SourceFace" hypothesis has the same parameters as given arguments
+ #def CompareSourceFace(self, hyp, args):
+ # # seems to be not really useful to reuse existing "SourceFace" hypothesis
+ # return False
- ## Translates the elements
- # @param IDsOfElements list of elements ids
- # @param Vector direction of translation(DirStruct or vector)
- # @param Copy allows to copy the translated elements
- # @param MakeGroups to generate new groups from existing ones (if Copy)
- def Translate(self, IDsOfElements, Vector, Copy, MakeGroups=False):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Vector, geompyDC.GEOM._objref_GEOM_Object)):
- Vector = self.smeshpyD.GetDirStruct(Vector)
- if Copy and MakeGroups:
- return self.editor.TranslateMakeGroups(IDsOfElements, Vector)
- self.editor.Translate(IDsOfElements, Vector, Copy)
- return []
+# Public class: Mesh_Projection3D
+# ------------------------------
- ## Create a new mesh of translated elements
- # @param IDsOfElements list of elements ids
- # @param Vector direction of translation(DirStruct or vector)
- # @param MakeGroups to generate new groups from existing ones
- # @param NewMeshName is a name of new mesh to create
- def TranslateMakeMesh(self, IDsOfElements, Vector, MakeGroups=False, NewMeshName=""):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Vector, geompyDC.GEOM._objref_GEOM_Object)):
- Vector = self.smeshpyD.GetDirStruct(Vector)
- mesh = self.editor.TranslateMakeMesh(IDsOfElements, Vector, MakeGroups, NewMeshName)
- return Mesh ( self.smeshpyD, self.geompyD, mesh )
+## Class to define a projection 3D algorithm
+#
+# More details.
+class Mesh_Projection3D(Mesh_Algorithm):
- ## Translates the object
- # @param theObject object to translate(mesh, submesh, or group)
- # @param Vector direction of translation(DirStruct or geom vector)
- # @param Copy allows to copy the translated elements
- # @param MakeGroups to generate new groups from existing ones (if Copy)
- def TranslateObject(self, theObject, Vector, Copy, MakeGroups=False):
- if ( isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if ( isinstance( Vector, geompyDC.GEOM._objref_GEOM_Object)):
- Vector = self.smeshpyD.GetDirStruct(Vector)
- if Copy and MakeGroups:
- return self.editor.TranslateObjectMakeGroups(theObject, Vector)
- self.editor.TranslateObject(theObject, Vector, Copy)
- return []
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "Projection_3D")
+
+ ## Define "Source Shape 3D" hypothesis, specifying a meshed solid to
+ # take a mesh pattern from, and optionally association of vertices
+ # between the source solid and a target one (where a hipothesis is assigned to)
+ # @param solid to take mesh pattern from
+ # @param mesh to take mesh pattern from (optional)
+ # @param srcV1 is vertex of \a solid to associate with \a tgtV1 (optional)
+ # @param tgtV1 is vertex of \a the solid where the algorithm is assigned,
+ # to associate with \a srcV1 (optional)
+ # @param srcV2 is vertex of \a solid to associate with \a tgtV1 (optional)
+ # @param tgtV2 is vertex of \a the solid where the algorithm is assigned,
+ # to associate with \a srcV2 (optional)
+ # @param UseExisting - if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ #
+ # Note: association vertices must belong to one edge of a solid
+ def SourceShape3D(self, solid, mesh=0, srcV1=0, tgtV1=0,
+ srcV2=0, tgtV2=0, UseExisting=0):
+ hyp = self.Hypothesis("ProjectionSource3D",
+ [solid,mesh,srcV1,tgtV1,srcV2,tgtV2],
+ UseExisting=0)
+ #UseExisting=UseExisting, CompareMethod=self.CompareSourceShape3D)
+ hyp.SetSource3DShape( solid )
+ if not mesh is None and isinstance(mesh, Mesh):
+ mesh = mesh.GetMesh()
+ hyp.SetSourceMesh( mesh )
+ hyp.SetVertexAssociation( srcV1, srcV2, tgtV1, tgtV2 )
+ return hyp
- ## Create a new mesh from translated object
- # @param theObject object to translate(mesh, submesh, or group)
- # @param Vector direction of translation(DirStruct or geom vector)
- # @param MakeGroups to generate new groups from existing ones
- # @param NewMeshName is a name of new mesh to create
- def TranslateObjectMakeMesh(self, theObject, Vector, MakeGroups=False, NewMeshName=""):
- if (isinstance(theObject, Mesh)):
- theObject = theObject.GetMesh()
- if (isinstance(Vector, geompyDC.GEOM._objref_GEOM_Object)):
- Vector = self.smeshpyD.GetDirStruct(Vector)
- mesh = self.editor.TranslateObjectMakeMesh(theObject, Vector, MakeGroups, NewMeshName)
- return Mesh( self.smeshpyD, self.geompyD, mesh )
+ ## Check if the given "SourceShape3D" hypothesis has the same parameters as given arguments
+ #def CompareSourceShape3D(self, hyp, args):
+ # # seems to be not really useful to reuse existing "SourceShape3D" hypothesis
+ # return False
- ## Rotates the elements
- # @param IDsOfElements list of elements ids
- # @param Axis axis of rotation(AxisStruct or geom line)
- # @param AngleInRadians angle of rotation(in radians)
- # @param Copy allows to copy the rotated elements
- # @param MakeGroups to generate new groups from existing ones (if Copy)
- def Rotate (self, IDsOfElements, Axis, AngleInRadians, Copy, MakeGroups=False):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Axis, geompyDC.GEOM._objref_GEOM_Object)):
- Axis = self.smeshpyD.GetAxisStruct(Axis)
- if Copy and MakeGroups:
- return self.editor.RotateMakeGroups(IDsOfElements, Axis, AngleInRadians)
- self.editor.Rotate(IDsOfElements, Axis, AngleInRadians, Copy)
- return []
- ## Create a new mesh of rotated elements
- # @param IDsOfElements list of element ids
- # @param Axis axis of rotation(AxisStruct or geom line)
- # @param AngleInRadians angle of rotation(in radians)
- # @param MakeGroups to generate new groups from existing ones
- # @param NewMeshName is a name of new mesh to create
- def RotateMakeMesh (self, IDsOfElements, Axis, AngleInRadians, MakeGroups=0, NewMeshName=""):
- if IDsOfElements == []:
- IDsOfElements = self.GetElementsId()
- if ( isinstance( Axis, geompyDC.GEOM._objref_GEOM_Object)):
- Axis = self.smeshpyD.GetAxisStruct(Axis)
- mesh = self.editor.RotateMakeMesh(IDsOfElements, Axis, AngleInRadians,
- MakeGroups, NewMeshName)
- return Mesh( self.smeshpyD, self.geompyD, mesh )
+# Public class: Mesh_Prism
+# ------------------------
- ## Rotates the object
- # @param theObject object to rotate(mesh, submesh, or group)
- # @param Axis axis of rotation(AxisStruct or geom line)
- # @param AngleInRadians angle of rotation(in radians)
- # @param Copy allows to copy the rotated elements
- # @param MakeGroups to generate new groups from existing ones (if Copy)
- def RotateObject (self, theObject, Axis, AngleInRadians, Copy, MakeGroups=False):
- if (isinstance(theObject, Mesh)):
- theObject = theObject.GetMesh()
- if (isinstance(Axis, geompyDC.GEOM._objref_GEOM_Object)):
- Axis = self.smeshpyD.GetAxisStruct(Axis)
- if Copy and MakeGroups:
- return self.editor.RotateObjectMakeGroups(theObject, Axis, AngleInRadians)
- self.editor.RotateObject(theObject, Axis, AngleInRadians, Copy)
- return []
+## Class to define a 3D extrusion algorithm
+#
+# More details.
+class Mesh_Prism3D(Mesh_Algorithm):
- ## Create a new mesh from a rotated object
- # @param theObject object to rotate (mesh, submesh, or group)
- # @param Axis axis of rotation(AxisStruct or geom line)
- # @param AngleInRadians angle of rotation(in radians)
- # @param MakeGroups to generate new groups from existing ones
- # @param NewMeshName is a name of new mesh to create
- def RotateObjectMakeMesh(self, theObject, Axis, AngleInRadians, MakeGroups=0,NewMeshName=""):
- if (isinstance( theObject, Mesh )):
- theObject = theObject.GetMesh()
- if (isinstance(Axis, geompyDC.GEOM._objref_GEOM_Object)):
- Axis = self.smeshpyD.GetAxisStruct(Axis)
- mesh = self.editor.RotateObjectMakeMesh(theObject, Axis, AngleInRadians,
- MakeGroups, NewMeshName)
- return Mesh( self.smeshpyD, self.geompyD, mesh )
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "Prism_3D")
- ## Find group of nodes close to each other within Tolerance.
- # @param Tolerance tolerance value
- # @param list of group of nodes
- def FindCoincidentNodes (self, Tolerance):
- return self.editor.FindCoincidentNodes(Tolerance)
+# Public class: Mesh_RadialPrism
+# -------------------------------
- ## Find group of nodes close to each other within Tolerance.
- # @param Tolerance tolerance value
- # @param SubMeshOrGroup SubMesh or Group
- # @param list of group of nodes
- def FindCoincidentNodesOnPart (self, SubMeshOrGroup, Tolerance):
- return self.editor.FindCoincidentNodesOnPart(SubMeshOrGroup, Tolerance)
+## Class to define a Radial Prism 3D algorithm
+#
+# More details.
+class Mesh_RadialPrism3D(Mesh_Algorithm):
- ## Merge nodes
- # @param list of group of nodes
- def MergeNodes (self, GroupsOfNodes):
- self.editor.MergeNodes(GroupsOfNodes)
+ ## Private constructor.
+ def __init__(self, mesh, geom=0):
+ Mesh_Algorithm.__init__(self)
+ self.Create(mesh, geom, "RadialPrism_3D")
- ## Find elements built on the same nodes.
- # @param MeshOrSubMeshOrGroup Mesh or SubMesh, or Group of elements for searching
- # @return a list of groups of equal elements
- def FindEqualElements (self, MeshOrSubMeshOrGroup):
- return self.editor.FindEqualElements(MeshOrSubMeshOrGroup)
+ self.distribHyp = self.Hypothesis("LayerDistribution", UseExisting=0)
+ self.nbLayers = None
- ## Merge elements in each given group.
- # @param GroupsOfElementsID groups of elements for merging
- def MergeElements(self, GroupsOfElementsID):
- self.editor.MergeElements(GroupsOfElementsID)
+ ## Return 3D hypothesis holding the 1D one
+ def Get3DHypothesis(self):
+ return self.distribHyp
- ## Remove all but one of elements built on the same nodes.
- def MergeEqualElements(self):
- self.editor.MergeEqualElements()
+ ## Private method creating 1D hypothes and storing it in the LayerDistribution
+ # hypothes. Returns the created hypothes
+ def OwnHypothesis(self, hypType, args=[], so="libStdMeshersEngine.so"):
+ #print "OwnHypothesis",hypType
+ if not self.nbLayers is None:
+ self.mesh.GetMesh().RemoveHypothesis( self.geom, self.nbLayers )
+ self.mesh.GetMesh().AddHypothesis( self.geom, self.distribHyp )
+ study = self.mesh.smeshpyD.GetCurrentStudy() # prevent publishing of own 1D hypothesis
+ hyp = self.mesh.smeshpyD.CreateHypothesis(hypType, so)
+ self.mesh.smeshpyD.SetCurrentStudy( study ) # anable publishing
+ self.distribHyp.SetLayerDistribution( hyp )
+ return hyp
- ## Sew free borders
- def SewFreeBorders (self, FirstNodeID1, SecondNodeID1, LastNodeID1,
- FirstNodeID2, SecondNodeID2, LastNodeID2,
- CreatePolygons, CreatePolyedrs):
- return self.editor.SewFreeBorders(FirstNodeID1, SecondNodeID1, LastNodeID1,
- FirstNodeID2, SecondNodeID2, LastNodeID2,
- CreatePolygons, CreatePolyedrs)
+ ## Define "NumberOfLayers" hypothesis, specifying a number of layers of
+ # prisms to build between the inner and outer shells
+ # @param UseExisting if ==true - search existing hypothesis created with
+ # same parameters, else (default) - create new
+ def NumberOfLayers(self, n, UseExisting=0):
+ self.mesh.GetMesh().RemoveHypothesis( self.geom, self.distribHyp )
+ self.nbLayers = self.Hypothesis("NumberOfLayers", [n], UseExisting=UseExisting,
+ CompareMethod=self.CompareNumberOfLayers)
+ self.nbLayers.SetNumberOfLayers( n )
+ return self.nbLayers
- ## Sew conform free borders
- def SewConformFreeBorders (self, FirstNodeID1, SecondNodeID1, LastNodeID1,
- FirstNodeID2, SecondNodeID2):
- return self.editor.SewConformFreeBorders(FirstNodeID1, SecondNodeID1, LastNodeID1,
- FirstNodeID2, SecondNodeID2)
+ ## Check if the given "NumberOfLayers" hypothesis has the same parameters as given arguments
+ def CompareNumberOfLayers(self, hyp, args):
+ return IsEqual(hyp.GetNumberOfLayers(), args[0])
- ## Sew border to side
- def SewBorderToSide (self, FirstNodeIDOnFreeBorder, SecondNodeIDOnFreeBorder, LastNodeIDOnFreeBorder,
- FirstNodeIDOnSide, LastNodeIDOnSide, CreatePolygons, CreatePolyedrs):
- return self.editor.SewBorderToSide(FirstNodeIDOnFreeBorder, SecondNodeIDOnFreeBorder, LastNodeIDOnFreeBorder,
- FirstNodeIDOnSide, LastNodeIDOnSide, CreatePolygons, CreatePolyedrs)
+ ## Define "LocalLength" hypothesis, specifying segment length
+ # to build between the inner and outer shells
+ # @param l for the length of segments
+ # @param p for the precision of rounding
+ def LocalLength(self, l, p=1e-07):
+ hyp = self.OwnHypothesis("LocalLength", [l,p])
+ hyp.SetLength(l)
+ hyp.SetPrecision(p)
+ return hyp
- ## Sew two sides of a mesh. Nodes belonging to Side1 are
- # merged with nodes of elements of Side2.
- # Number of elements in theSide1 and in theSide2 must be
- # equal and they should have similar node connectivity.
- # The nodes to merge should belong to sides borders and
- # the first node should be linked to the second.
- def SewSideElements (self, IDsOfSide1Elements, IDsOfSide2Elements,
- NodeID1OfSide1ToMerge, NodeID1OfSide2ToMerge,
- NodeID2OfSide1ToMerge, NodeID2OfSide2ToMerge):
- return self.editor.SewSideElements(IDsOfSide1Elements, IDsOfSide2Elements,
- NodeID1OfSide1ToMerge, NodeID1OfSide2ToMerge,
- NodeID2OfSide1ToMerge, NodeID2OfSide2ToMerge)
+ ## Define "NumberOfSegments" hypothesis, specifying a number of layers of
+ # prisms to build between the inner and outer shells
+ # @param n for the number of segments
+ # @param s for the scale factor (optional)
+ def NumberOfSegments(self, n, s=[]):
+ if s == []:
+ hyp = self.OwnHypothesis("NumberOfSegments", [n])
+ else:
+ hyp = self.OwnHypothesis("NumberOfSegments", [n,s])
+ hyp.SetDistrType( 1 )
+ hyp.SetScaleFactor(s)
+ hyp.SetNumberOfSegments(n)
+ return hyp
- ## Set new nodes for given element.
- # @param ide the element id
- # @param newIDs nodes ids
- # @return If number of nodes is not corresponded to type of element - returns false
- def ChangeElemNodes(self, ide, newIDs):
- return self.editor.ChangeElemNodes(ide, newIDs)
+ ## Define "Arithmetic1D" hypothesis, specifying distribution of segments
+ # to build between the inner and outer shells as arithmetic length increasing
+ # @param start for the length of the first segment
+ # @param end for the length of the last segment
+ def Arithmetic1D(self, start, end ):
+ hyp = self.OwnHypothesis("Arithmetic1D", [start, end])
+ hyp.SetLength(start, 1)
+ hyp.SetLength(end , 0)
+ return hyp
- ## If during last operation of MeshEditor some nodes were
- # created this method returns list of its IDs, \n
- # if new nodes not created - returns empty list
- def GetLastCreatedNodes(self):
- return self.editor.GetLastCreatedNodes()
+ ## Define "StartEndLength" hypothesis, specifying distribution of segments
+ # to build between the inner and outer shells as geometric length increasing
+ # @param start for the length of the first segment
+ # @param end for the length of the last segment
+ def StartEndLength(self, start, end):
+ hyp = self.OwnHypothesis("StartEndLength", [start, end])
+ hyp.SetLength(start, 1)
+ hyp.SetLength(end , 0)
+ return hyp
- ## If during last operation of MeshEditor some elements were
- # created this method returns list of its IDs, \n
- # if new elements not creared - returns empty list
- def GetLastCreatedElems(self):
- return self.editor.GetLastCreatedElems()
+ ## Define "AutomaticLength" hypothesis, specifying number of segments
+ # to build between the inner and outer shells
+ # @param fineness for the fineness [0-1]
+ def AutomaticLength(self, fineness=0):
+ hyp = self.OwnHypothesis("AutomaticLength")
+ hyp.SetFineness( fineness )
+ return hyp
+
+# Private class: Mesh_UseExisting
+# -------------------------------
+class Mesh_UseExisting(Mesh_Algorithm):
+
+ def __init__(self, dim, mesh, geom=0):
+ if dim == 1:
+ self.Create(mesh, geom, "UseExisting_1D")
+ else:
+ self.Create(mesh, geom, "UseExisting_2D")