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PAL12557: SMESH Documentation for scripts is not up to date.
[modules/smesh.git] / doc / salome / gui / SMESH / transforming_meshes.htm
index 6d2ada4f1d772a5f4f8ed17eceaebb9f5cbb6a9e..f70f20b44b33aae9b04949a0ec8e588303e252eb 100755 (executable)
 h3.whs1 { margin-top:0pt; margin-bottom:0pt; }\r
 h4.whs2 { margin-top:0pt; margin-bottom:0pt; }\r
 p.whs3 { font-family:'Lucida Console' , monospace; margin-top:0pt; margin-bottom:0pt; }\r
-p.whs4 { margin-top:0pt; margin-bottom:0pt; }\r
+p.whs4 { margin-top:0pt; margin-bottom:0pt; font-weight:bold; color:#ff0000; }\r
 p.whs5 { margin-top:0pt; margin-bottom:0pt; font-family:'Lucida Console' , monospace; }\r
+p.whs6 { margin-top:0pt; margin-bottom:0pt; font-family:'Times New Roman' , serif; }\r
+p.whs7 { margin-top:0pt; margin-bottom:0pt; }\r
 -->\r
 </style><script type="text/javascript" language="JavaScript">\r
 <!--\r
@@ -23,6 +25,8 @@ if ((navigator.appName == "Netscape") && (parseInt(navigator.appVersion) == 4))
   strNSS += "p.whs3 {margin-top:1pt;margin-bottom:1pt; }";\r
   strNSS += "p.whs4 {margin-top:1pt;margin-bottom:1pt; }";\r
   strNSS += "p.whs5 {margin-top:1pt;margin-bottom:1pt; }";\r
+  strNSS += "p.whs6 {margin-top:1pt;margin-bottom:1pt; }";\r
+  strNSS += "p.whs7 {margin-top:1pt;margin-bottom:1pt; }";\r
   strNSS +="</style>";\r
   document.write(strNSS);\r
 }\r
@@ -45,43 +49,48 @@ onerror = null;
 <style type="text/css">\r
 <!--\r
 div.WebHelpPopupMenu { position:absolute; left:0px; top:0px; z-index:4; visibility:hidden; }\r
+p.WebHelpNavBar { text-align:right; }\r
 -->\r
 </style><script type="text/javascript" language="javascript1.2" src="whmsg.js"></script>\r
 <script type="text/javascript" language="javascript" src="whver.js"></script>\r
 <script type="text/javascript" language="javascript1.2" src="whproxy.js"></script>\r
 <script type="text/javascript" language="javascript1.2" src="whutils.js"></script>\r
 <script type="text/javascript" language="javascript1.2" src="whtopic.js"></script>\r
-</head>\r
-<body><script type="text/javascript" language="javascript1.2">\r
+<script type="text/javascript" language="javascript1.2">\r
 <!--\r
 if (window.gbWhTopic)\r
 {\r
-       if (window.addTocInfo)\r
+       if (window.setRelStartPage)\r
        {\r
        addTocInfo("MESH module\nTUI Scripts\nTransforming Meshes");\r
-addButton("show",BTN_TEXT,"Show","","","","",0,0,"","","");\r
+addButton("show",BTN_IMG,"Show","","","","",0,0,"whd_show0.gif","whd_show2.gif","whd_show1.gif");\r
+addButton("hide",BTN_IMG,"Hide","","","","",0,0,"whd_hide0.gif","whd_hide2.gif","whd_hide1.gif");\r
 \r
        }\r
-       if (window.writeBtnStyle)\r
-               writeBtnStyle();\r
 \r
-       if (window.writeIntopicBar)\r
-               writeIntopicBar(1);\r
 \r
        if (window.setRelStartPage)\r
        {\r
-       setRelStartPage("smesh.htm");\r
+       setRelStartPage("index.htm");\r
 \r
                autoSync(1);\r
                sendSyncInfo();\r
                sendAveInfoOut();\r
        }\r
+\r
 }\r
 else\r
        if (window.gbIE4)\r
                document.location.reload();\r
 //-->\r
 </script>\r
+</head>\r
+<body><script type="text/javascript" language="javascript1.2">\r
+<!--\r
+if (window.writeIntopicBar)\r
+       writeIntopicBar(4);\r
+//-->\r
+</script>\r
 <h1>Transforming Meshes</h1>\r
 \r
 <h3 class="whs1">Transforming Meshes</h3>\r
@@ -92,156 +101,191 @@ else
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs3">import SMESH</p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
 \r
-<p class="whs3">import SMESH_mechanic</p>\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to translate meshes. </p>\r
 \r
-<p class="whs3">&nbsp;</p>\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs3">mesh &nbsp;&nbsp;= \r
- SMESH_mechanic.mesh</p>\r
+<p class="whs5">import SMESH</p>\r
 \r
-<p class="whs3">salome = SMESH_mechanic.salome</p>\r
+<p class="whs5">import SMESH_mechanic</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># translate a mesh</p>\r
+<p class="whs5">mesh = SMESH_mechanic.mesh</p>\r
 \r
-<p class="whs3">anEditor = mesh.GetMeshEditor()</p>\r
+<p class="whs5">anEditor = mesh.GetMeshEditor()</p>\r
 \r
-<p class="whs3">point = SMESH.PointStruct(-150, -150, \r
- 0)</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs3">vector = SMESH.DirStruct(point) </p>\r
+<p class="whs6"># define translation \r
+ vector</p>\r
 \r
-<p class="whs3">anEditor.TranslateObject(mesh, vector\r
1)</p>\r
+<p class="whs5">point = SMESH.PointStruct(-150.\r
-150., 0.)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">vector = SMESH.DirStruct(point)</p>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
- </p>\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs6"># translate a mesh</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">doCopy = 1</p>\r
+\r
+<p class="whs5">anEditor.TranslateObject(mesh, \r
+ vector, doCopy) </p>\r
+\r
+<p class="whs7">&nbsp;</p>\r
 \r
 <h4 class="whs2"><a name=bookmark1>Rotation</a></h4>\r
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs3">import SMESH</p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
 \r
-<p class="whs3">import SMESH_mechanic</p>\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to rotate meshes. </p>\r
+\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs3">mport math</p>\r
+<p class="whs3">import math</p>\r
 \r
-<p class="whs3">mesh &nbsp;&nbsp;= \r
- SMESH_mechanic.mesh</p>\r
+<p class="whs3">import SMESH</p>\r
 \r
-<p class="whs3">salome = SMESH_mechanic.salome</p>\r
+<p class="whs3">import SMESH_mechanic</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs4"># rotate a mesh </p>\r
+<p class="whs3">mesh = SMESH_mechanic.mesh</p>\r
 \r
 <p class="whs3">anEditor = mesh.GetMeshEditor()</p>\r
 \r
-<p class="whs3">axisXYZ = SMESH.AxisStruct(0, 0, 0, 5, \r
- 5, 20)</p>\r
+<p class="whs3">&nbsp;</p>\r
+\r
+<p class="whs6"># define rotation axis \r
+ and angle</p>\r
 \r
-<p class="whs3">angle180 = &nbsp;1.5*math.pi</p>\r
+<p class="whs3">axisXYZ = SMESH.AxisStruct(0., 0., 0., \r
+ 5., 5., 20.)</p>\r
 \r
-<p class="whs3">anEditor.RotateObject(mesh, axisXYZ, angle180, \r
- 1)</p>\r
+<p class="whs3">angle270 = 1.5 * math.pi</p>\r
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs5">salome.sg.updateObjBrowser(1)</p>\r
+<p class="whs6"># rotate a mesh</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs3">anEditor.RotateObject(mesh, axisXYZ, angle270, \r
+ 1) </p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs7">&nbsp;</p>\r
 \r
 <h4 class="whs2"><a name=bookmark2>Symmetry</a></h4>\r
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs3">import SMESH</p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
 \r
-<p class="whs3">import SMESH_mechanic</p>\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to create symmetrical copies of meshes. </p>\r
+\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
 <p class="whs3">import math</p>\r
 \r
-<p class="whs3">mesh &nbsp;&nbsp;= \r
- SMESH_mechanic.mesh</p>\r
+<p class="whs3">import SMESH</p>\r
 \r
-<p class="whs3">salome = SMESH_mechanic.salome</p>\r
+<p class="whs3">import SMESH_mechanic</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs4"># create a symmetrical \r
- copy of the mesh mirrored through a point</p>\r
+<p class="whs3">mesh = SMESH_mechanic.mesh</p>\r
 \r
 <p class="whs3">anEditor = mesh.GetMeshEditor()</p>\r
 \r
-<p class="whs3">anEditor.MirrorObject(mesh, SMESH.AxisStruct(0, \r
- 0, 0, 0, 0, 0), SMESH.SMESH_MeshEditor.POINT, 1) </p>\r
-\r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
- </p>\r
+<p class="whs6"># create a symmetrical \r
+ copy of the mesh mirrored through a point</p>\r
+\r
+<p class="whs3">axis = SMESH.AxisStruct(0, 0, 0, 0, 0, \r
+ 0)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs3">anEditor.MirrorObject(mesh, axis, SMESH.SMESH_MeshEditor.POINT, \r
+ 1) </p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs7">&nbsp;</p>\r
 \r
 <h4 class="whs2"><a name=bookmark3>Merging \r
  Nodes</a></h4>\r
 \r
 <p class="whs3">&nbsp;</p>\r
 \r
-<p class="whs3">import SMESH</p>\r
-\r
-<p class="whs3">import SMESH_mechanic</p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
 \r
-<p class="whs3">&nbsp;</p>\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to merge nodes. </p>\r
 \r
-<p class="whs3">smesh &nbsp;= \r
SMESH_mechanic.smesh</p>\r
+<p class="whs4"># In the next SALOME version the scripts will \r
be updated to use only the commands from smesh package.</p>\r
 \r
-<p class="whs3">mesh &nbsp;&nbsp;= \r
- SMESH_mechanic.mesh</p>\r
+<p class="whs6">&nbsp;</p>\r
 \r
-<p class="whs3">salome = SMESH_mechanic.salome</p>\r
+<p class="whs5">import SMESH_mechanic</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">mesh = SMESH_mechanic.mesh</p>\r
 \r
-<p class="whs4"># merge nodes</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs3">aMeshEditor = mesh.GetMeshEditor()</p>\r
+<p class="whs5">aMeshEditor = mesh.GetMeshEditor()</p>\r
 \r
-<p class="whs3">Tolerance = 25.0</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs3">&nbsp;</p>\r
+<p class="whs6"># merge nodes</p>\r
 \r
-<p class="whs3">GroupsOfNodes = aMeshEditor.FindCoincidentNodes(Tolerance)</p>\r
+<p class="whs5">Tolerance = 25.0</p>\r
 \r
-<p class="whs3">aMeshEditor.MergeNodes(GroupsOfNodes)</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs3">&nbsp;&nbsp;&nbsp;&nbsp;</p>\r
+<p class="whs5">GroupsOfNodes = \r
+ aMeshEditor.FindCoincidentNodes(Tolerance)</p>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
+<p class="whs7"><span style="font-family: 'Lucida Console', monospace;">aMeshEditor.MergeNodes(GroupsOfNodes)</span> \r
  </p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs7">&nbsp;</p>\r
 \r
-<h3>Sewing Meshes</h3>\r
+<h4><a name=bookmark8>Merging Elements</a></h4>\r
 \r
-<h4><a name=bookmark4>Sew Meshes Border to Border</a></h4>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
+\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to merge elements. </p>\r
+\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
+\r
+<p class="whs6">&nbsp;</p>\r
 \r
 <p class="whs5">import salome</p>\r
 \r
@@ -249,319 +293,512 @@ else
 \r
 <p class="whs5">import smesh</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">import SMESH</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create two faces of a \r
- box</p>\r
+<p class="whs6"># create a face to \r
+ be meshed</p>\r
 \r
-<p class="whs5">box1 = geompy.MakeBox(0., \r
- 0., -10., 30., 20., 25.)</p>\r
+<p class="whs5">px = geompy.MakeVertex(100., \r
+ 0. &nbsp;, 0. \r
+ &nbsp;)</p>\r
+\r
+<p class="whs5">py = geompy.MakeVertex(0. \r
+ &nbsp;, 100., \r
+ 0. &nbsp;)</p>\r
 \r
-<p class="whs5">subShapeList1 = \r
- geompy.SubShapeAll(box1, geompy.ShapeType[&quot;FACE&quot;])</p>\r
+<p class="whs5">pz = geompy.MakeVertex(0. \r
+ &nbsp;, 0. &nbsp;, \r
+ 100.)</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">box2 = geompy.MakeBox(0.\r
5., 0., 20., 20., 15.)</p>\r
+<p class="whs5">vxy = geompy.MakeVector(px\r
py)</p>\r
 \r
-<p class="whs5">subShapeList2 = \r
- geompy.SubShapeAll(box2, geompy.ShapeType[&quot;FACE&quot;])</p>\r
+<p class="whs5">arc = geompy.MakeArc(py, \r
+ pz, px)</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">EdgesList = geompy.SubShapeAll(subShapeList2[ \r
- 1 ], geompy.ShapeType[&quot;EDGE&quot;])</p>\r
+<p class="whs5">wire = geompy.MakeWire([vxy, \r
+ arc])</p>\r
+\r
+<p class="whs5">isPlanarFace = 1</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">aComp = geompy.MakeCompound( \r
- [subShapeList1[ 2 ], subShapeList2[ 1 ]] )</p>\r
+<p class="whs5">face1 = geompy.MakeFace(wire, \r
+ isPlanarFace)</p>\r
+\r
+<p class="whs5">id_face1 = geompy.addToStudy(face1, \r
+ &quot;Face1&quot;)</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">idComp = geompy.addToStudy( \r
aComp, &quot;Two faces&quot; )</p>\r
+<p class="whs6"># create a circle to \r
be an extrusion path</p>\r
 \r
-<p class="whs5">aCompobj &nbsp;= \r
- salome.IDToObject( idComp )</p>\r
+<p class="whs5">px1 = geompy.MakeVertex( \r
+ 100., &nbsp;100., \r
+ &nbsp;0.)</p>\r
+\r
+<p class="whs5">py1 = geompy.MakeVertex(-100., \r
+ -100., &nbsp;0.)</p>\r
+\r
+<p class="whs5">pz1 = geompy.MakeVertex( \r
+ &nbsp;&nbsp;0., \r
+ &nbsp;&nbsp;&nbsp;0., \r
+ 50.)</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create a mesh on two \r
faces</p>\r
+<p class="whs5">circle = geompy.MakeCircleThreePnt(py1, \r
pz1, px1)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">id_circle = geompy.addToStudy(circle, \r
+ &quot;Path&quot;)</p>\r
 \r
-<p class="whs5">mesh = smesh.Mesh(aCompobj, \r
- &quot;Two faces : quadrangle mesh&quot;)</p>\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs6"># create a 2D mesh \r
+ on the face</p>\r
 \r
-<p class="whs5">algo = mesh.Segment()</p>\r
+<p class="whs5">trias = smesh.Mesh(face1, \r
+ &quot;Face : 2D mesh&quot;)</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># define &quot;NumberOfSegments&quot; \r
- hypothesis to cut an edge in a fixed number of segments</p>\r
+<p class="whs5">algo1D = trias.Segment()</p>\r
 \r
-<p class="whs5">algo.NumberOfSegments(9)</p>\r
+<p class="whs5">algo1D.NumberOfSegments(6)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo2D = trias.Triangle()</p>\r
 \r
-<p class="whs4"># create a quadrangle 2D \r
- algorithm for faces</p>\r
+<p class="whs5">algo2D.LengthFromEdges()</p>\r
 \r
-<p class="whs5">mesh.Quadrangle()</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">trias.Compute()</p>\r
 \r
-<p class="whs4"># create a local hypothesis</p>\r
+<p class="whs5">tri_mesh = trias.GetMesh()</p>\r
 \r
-<p class="whs5">algo = mesh.Segment(EdgesList[2])</p>\r
+<p class="whs6">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs6"># create a path mesh</p>\r
 \r
-<p class="whs4"># define &quot;Arithmetic1D&quot; \r
- hypothesis to cut an edge in several segments with increasing arithmetic \r
- length </p>\r
+<p class="whs5">circlemesh = smesh.Mesh(circle, \r
+ &quot;Path mesh&quot;)</p>\r
 \r
-<p class="whs5">algo.Arithmetic1D(1, \r
- 4)</p>\r
+<p class="whs5">algo = circlemesh.Segment()</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo.NumberOfSegments(10)</p>\r
 \r
-<p class="whs4"># define &quot;Propagation&quot; \r
- hypothesis that propagates all other hypothesis on all edges on the opposite \r
- side in case of quadrangular faces</p>\r
+<p class="whs5">circlemesh.Compute()</p>\r
 \r
-<p class="whs5">algo.Propagation()</p>\r
+<p class="whs6">&nbsp;</p>\r
 \r
-<p class="whs5">mesh.Compute()</p>\r
+<p class="whs6"># extrusion of the \r
+ mesh</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">aMeshEditor = tri_mesh.GetMeshEditor()</p>\r
 \r
-<p class="whs4"># sew free borders</p>\r
+<p class="whs5">aMeshEditor.ExtrusionAlongPathObject(tri_mesh, \r
+ circlemesh.GetMesh(), circle,</p>\r
 \r
-<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
+<p class="whs5">&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;1, \r
+ 0, [], 0, SMESH.PointStruct(0, 0, 0))</p>\r
 \r
-<p class="whs5">anEditor.SewBorderToSide(5, \r
- 45, 6, 113, 109, 0, 0)</p>\r
+<p class="whs6"># merge nodes</p>\r
+\r
+<p class="whs5">print &quot;Number \r
+ of nodes before MergeNodes:&quot;, tri_mesh.NbNodes()</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">tolerance = 0.001</p>\r
+\r
+<p class="whs5">array_of_nodes_groups \r
+ = aMeshEditor.FindCoincidentNodes(tolerance)</p>\r
+\r
+<p class="whs5">aMeshEditor.MergeNodes(array_of_nodes_groups)</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">print &quot;Number \r
+ of nodes after MergeNodes:&quot;, tri_mesh.NbNodes()</p>\r
+\r
+<p class="whs5">print &quot;&quot;</p>\r
+\r
+<p class="whs5">print &quot;Number \r
+ of elements before MergeEqualElements:&quot;</p>\r
+\r
+<p class="whs5">print &quot;Edges \r
+ &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;: \r
+ &quot;, tri_mesh.NbEdges()</p>\r
+\r
+<p class="whs5">print &quot;Triangles \r
+ &nbsp;: &quot;, \r
+ tri_mesh.NbTriangles()</p>\r
+\r
+<p class="whs5">print &quot;Quadrangles: \r
+ &quot;, tri_mesh.NbQuadrangles()</p>\r
+\r
+<p class="whs5">print &quot;Volumes \r
+ &nbsp;&nbsp;&nbsp;: \r
+ &quot;, tri_mesh.NbVolumes()</p>\r
+\r
+<p class="whs6">&nbsp;</p>\r
+\r
+<p class="whs6"># merge elements</p>\r
+\r
+<p class="whs5">aMeshEditor.MergeEqualElements()</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">print &quot;Number \r
+ of elements after MergeEqualElements:&quot;</p>\r
+\r
+<p class="whs5">print &quot;Edges \r
+ &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;: \r
+ &quot;, tri_mesh.NbEdges()</p>\r
+\r
+<p class="whs5">print &quot;Triangles \r
+ &nbsp;: &quot;, \r
+ tri_mesh.NbTriangles()</p>\r
+\r
+<p class="whs5">print &quot;Quadrangles: \r
+ &quot;, tri_mesh.NbQuadrangles()</p>\r
+\r
+<p class="whs5">print &quot;Volumes \r
+ &nbsp;&nbsp;&nbsp;: \r
+ &quot;, tri_mesh.NbVolumes()</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
+<p class="whs5">salome.sg.updateObjBrowser(1) \r
  </p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<h4><a name=bookmark5>Sew Conform Free Borders</a></h4>\r
+<h3>Sewing Meshes</h3>\r
 \r
-<p class="whs5">import salome</p>\r
+<h4><a name=bookmark4>Sew Meshes Border to Border</a></h4>\r
+\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
+\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to sew meshes border to border. </p>\r
+\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
+\r
+<p class="whs7">&nbsp;</p>\r
 \r
 <p class="whs5">import geompy</p>\r
 \r
 <p class="whs5">import smesh</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create two faces of the \r
- box</p>\r
+<p class="whs6"># create two faces \r
of a box</p>\r
 \r
 <p class="whs5">box1 = geompy.MakeBox(0., \r
- 0., -10., 20., 20., 15.)</p>\r
+ 0., -10., 30., 20., 25.)</p>\r
+\r
+<p class="whs5">facesList1 = geompy.SubShapeAll(box1, \r
+ geompy.ShapeType[&quot;FACE&quot;])</p>\r
 \r
-<p class="whs5">subShapeList1 = \r
- geompy.SubShapeAll(box1, geompy.ShapeType[&quot;FACE&quot;])</p>\r
+<p class="whs5">face1 = facesList1[2]</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
 <p class="whs5">box2 = geompy.MakeBox(0., \r
  5., 0., 20., 20., 15.)</p>\r
 \r
-<p class="whs5">subShapeList2 = \r
- geompy.SubShapeAll(box2, geompy.ShapeType[&quot;FACE&quot;])</p>\r
+<p class="whs5">facesList2 = geompy.SubShapeAll(box2, \r
+ geompy.ShapeType[&quot;FACE&quot;])</p>\r
 \r
-<p class="whs5">EdgesList = geompy.SubShapeAll(subShapeList2[ \r
- 1 ], geompy.ShapeType[&quot;EDGE&quot;])</p>\r
+<p class="whs5">face2 = facesList2[1]</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">aComp = geompy.MakeCompound( \r
[subShapeList1[ 2 ], subShapeList2[ 1 ]] )</p>\r
+<p class="whs5">edgesList = geompy.SubShapeAll(face2, \r
geompy.ShapeType[&quot;EDGE&quot;])</p>\r
 \r
-<p class="whs5">idComp = geompy.addToStudy( \r
- aComp, &quot;Two faces&quot; )</p>\r
+<p class="whs5">edge1 = edgesList[2]</p>\r
 \r
-<p class="whs5">aCompobj &nbsp;= \r
- salome.IDToObject( idComp )</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">aComp = geompy.MakeCompound([face1, \r
+ face2])</p>\r
 \r
-<p class="whs4"># create a mesh on two \r
faces</p>\r
+<p class="whs5">geompy.addToStudy(aComp, \r
&quot;Two faces&quot;)</p>\r
 \r
-<p class="whs5">mesh = smesh.Mesh(aCompobj, \r
- &quot;Two faces : quadrangle mesh&quot;)</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">algo = mesh.Segment()</p>\r
+<p class="whs6"># create a mesh on \r
+ two faces</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">mesh = smesh.Mesh(aComp, \r
+ &quot;Two faces : quadrangle mesh&quot;)</p>\r
 \r
-<p class="whs4"># define &quot;NumberOfSegments&quot; \r
- hypothesis to cut an edge in a fixed number of segments</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">algo.NumberOfSegments(9)</p>\r
+<p class="whs5">algo1D = mesh.Segment()</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo1D.NumberOfSegments(9)</p>\r
 \r
-<p class="whs4"># create a quadrangle 2D \r
- algorithm for faces</p>\r
+<p class="whs5">algo2D = mesh.Quadrangle()</p>\r
 \r
-<p class="whs5">mesh.Quadrangle()</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo_local = mesh.Segment(edge1)</p>\r
 \r
-<p class="whs4"># create a local hypothesis</p>\r
+<p class="whs5">algo_local.Arithmetic1D(1, \r
+ 4)</p>\r
 \r
-<p class="whs5">algo = mesh.Segment(EdgesList[2])</p>\r
+<p class="whs5">algo_local.Propagation()</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># define &quot;Arithmetic1D&quot; \r
- hypothesis to cut an edge in several segments with increasing arithmetic \r
- length </p>\r
+<p class="whs5">mesh.Compute()</p>\r
 \r
-<p class="whs5">algo.Arithmetic1D(1, \r
- 4)</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
 \r
-<p class="whs4"># define &quot;Propagation&quot; \r
- hypothesis that propagate all other hypothesis on all edges on<span style="margin-top: 0pt; margin-bottom: 0pt;"> \r
- the opposite side in case of quadrangular faces</span></p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">algo.Propagation()</p>\r
+<p class="whs6"># sew border to side</p>\r
 \r
-<p class="whs5">mesh.Compute()</p>\r
+<p class="whs6"># FirstNodeIDOnFreeBorder, \r
+ SecondNodeIDOnFreeBorder, LastNodeIDOnFreeBorder,</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs6"># FirstNodeIDOnSide, \r
+ LastNodeIDOnSide,</p>\r
 \r
-<p class="whs4"># sew free borders</p>\r
+<p class="whs6"># CreatePolygons, CreatePolyedrs</p>\r
 \r
-<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
+<p class="whs5">anEditor.SewBorderToSide(5, \r
+ 45, 6, 113, 109, 0, 0) </p>\r
 \r
-<p class="whs5">anEditor.SewConformFreeBorders(5, \r
- 45, 6, 3, 24)</p>\r
+<h4><a name=bookmark5>Sew Conform Free Borders</a></h4>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
- </p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to sew conform free borders. </p>\r
 \r
-<h4><a name=bookmark6>Sew Free Borders</a></h4>\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
 \r
-<p class="whs5">import salome</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
 <p class="whs5">import geompy</p>\r
 \r
 <p class="whs5">import smesh</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create two faces of the \r
- box</p>\r
+<p class="whs6"># create two faces \r
of the box</p>\r
 \r
 <p class="whs5">box1 = geompy.MakeBox(0., \r
- 0., 0., 20., 20., 15.)</p>\r
+ 0., -10., 20., 20., 15.)</p>\r
 \r
-<p class="whs5">subShapeList1 = \r
- geompy.SubShapeAll(box1, geompy.ShapeType[&quot;FACE&quot;])</p>\r
+<p class="whs5">facesList1 = geompy.SubShapeAll(box1, \r
+ geompy.ShapeType[&quot;FACE&quot;])</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">face1 = facesList1[2]</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
 \r
 <p class="whs5">box2 = geompy.MakeBox(0., \r
  5., 0., 20., 20., 15.)</p>\r
 \r
-<p class="whs5">subShapeList2 = \r
- geompy.SubShapeAll(box2, geompy.ShapeType[&quot;FACE&quot;])</p>\r
+<p class="whs5">facesList2 = geompy.SubShapeAll(box2, \r
+ geompy.ShapeType[&quot;FACE&quot;])</p>\r
 \r
-<p class="whs5">EdgesList = geompy.SubShapeAll(subShapeList2[ \r
- 1 ], geompy.ShapeType[&quot;EDGE&quot;])</p>\r
+<p class="whs5">face2 = facesList2[1]</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">aComp = geompy.MakeCompound( \r
- [subShapeList1[ 2 ], subShapeList2[ 1 ]] )</p>\r
+<p class="whs5">edgesList = geompy.SubShapeAll(face2, \r
+ geompy.ShapeType[&quot;EDGE&quot;])</p>\r
+\r
+<p class="whs5">edge1 = edgesList[2]</p>\r
 \r
-<p class="whs5">idComp = geompy.addToStudy( \r
- aComp, &quot;Two faces&quot; )</p>\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">aComp = geompy.MakeCompound([face1, \r
+ face2])</p>\r
 \r
-<p class="whs5">aCompobj &nbsp;= \r
salome.IDToObject( idComp )</p>\r
+<p class="whs5">geompy.addToStudy(aComp, \r
&quot;Two faces&quot;)</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create a mesh on two \r
- faces</p>\r
+<p class="whs6"># create a mesh on \r
two faces</p>\r
 \r
-<p class="whs5">mesh = smesh.Mesh(aCompobj\r
+<p class="whs5">mesh = smesh.Mesh(aComp, \r
  &quot;Two faces : quadrangle mesh&quot;)</p>\r
 \r
-<p class="whs5">algo = mesh.Segment()</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo1D = mesh.Segment()</p>\r
 \r
-<p class="whs4"># define &quot;NumberOfSegments&quot; \r
- hypothesis to cut an edge in a fixed number of segments</p>\r
+<p class="whs5">algo1D.NumberOfSegments(9)</p>\r
 \r
-<p class="whs5">algo.NumberOfSegments(4)</p>\r
+<p class="whs5">algo2D = mesh.Quadrangle()</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># creates a quadrangle \r
- 2D algorithm for faces</p>\r
+<p class="whs5">algo_local = mesh.Segment(edge1)</p>\r
 \r
-<p class="whs5">mesh.Quadrangle()</p>\r
+<p class="whs5">algo_local.Arithmetic1D(1, \r
+ 4)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo_local.Propagation()</p>\r
 \r
-<p class="whs4"># create a local hypothesis</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">algo = mesh.Segment(EdgesList[2])</p>\r
+<p class="whs5">mesh.Compute()</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># define &quot;Arithmetic1D&quot; \r
- hypothesis to cut an edge in several segments with &nbsp;increasing \r
- arithmetic length</p>\r
+<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
 \r
-<p class="whs5">algo.Arithmetic1D(1, \r
- 4)</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs6"># sew conform free \r
+ borders</p>\r
 \r
-<p class="whs4"># define &quot;Propagation&quot; \r
- hypothesis that propagate all other hypothesis on all edges on<span style="margin-top: 0pt; margin-bottom: 0pt;"> \r
- the opposite side in case of quadrangular faces</span></p>\r
+<p class="whs6"># FirstNodeID1, SecondNodeID1, \r
+ LastNodeID1, FirstNodeID2, SecondNodeID2</p>\r
 \r
-<p class="whs5">algo.Propagation()</p>\r
+<p class="whs5">anEditor.SewConformFreeBorders(5, \r
+ 45, 6, 3, 24) </p>\r
 \r
-<p class="whs5">mesh.Compute()</p>\r
+<h4><a name=bookmark6>Sew Free Borders</a></h4>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
 \r
-<p class="whs4"># sew free borders</p>\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to sew free borders. </p>\r
 \r
-<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
 \r
-<p class="whs5">anEditor.SewFreeBorders(6, \r
- 21, 5, 1, 12, 3, 0, 0)</p>\r
+<p class="whs7">&nbsp;</p>\r
+\r
+<p class="whs5">import geompy</p>\r
+\r
+<p class="whs5">import smesh</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
- </p>\r
+<p class="whs6"># create two faces \r
+ of the box</p>\r
+\r
+<p class="whs5">box1 = geompy.MakeBox(0., \r
+ 0., 0., 20., 20., 15.)</p>\r
+\r
+<p class="whs5">facesList1 = geompy.SubShapeAll(box1, \r
+ geompy.ShapeType[&quot;FACE&quot;])</p>\r
+\r
+<p class="whs5">face1 = facesList1[2]</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">box2 = geompy.MakeBox(0., \r
+ 5., 0., 20., 20., 15.)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">facesList2 = geompy.SubShapeAll(box2, \r
+ geompy.ShapeType[&quot;FACE&quot;])</p>\r
+\r
+<p class="whs5">face2 = facesList2[1]</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">edgesList = geompy.SubShapeAll(face2, \r
+ geompy.ShapeType[&quot;EDGE&quot;])</p>\r
+\r
+<p class="whs5">edge1 = edgesList[2]</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">aComp = geompy.MakeCompound([face1, \r
+ face2])</p>\r
+\r
+<p class="whs5">geompy.addToStudy(aComp, \r
+ &quot;Two faces&quot;)</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs6"># create a mesh on \r
+ two faces</p>\r
+\r
+<p class="whs5">mesh = smesh.Mesh(aComp, \r
+ &quot;Two faces : quadrangle mesh&quot;)</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">algo1D = mesh.Segment()</p>\r
+\r
+<p class="whs5">algo1D.NumberOfSegments(4)</p>\r
+\r
+<p class="whs5">algo2D = mesh.Quadrangle()</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">algo_local = mesh.Segment(edge1)</p>\r
+\r
+<p class="whs5">algo_local.Arithmetic1D(1, \r
+ 4)</p>\r
+\r
+<p class="whs5">algo_local.Propagation()</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs5">mesh.Compute()</p>\r
+\r
+<p class="whs5">&nbsp;</p>\r
+\r
+<p class="whs6"># sew free borders</p>\r
+\r
+<p class="whs6"># FirstNodeID1, SecondNodeID1, \r
+ LastNodeID1,</p>\r
+\r
+<p class="whs6"># FirstNodeID2, SecondNodeID2, \r
+ LastNodeID2, CreatePolygons, CreatePolyedrs</p>\r
+\r
+<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
+\r
+<p class="whs7"><span style="font-family: 'Lucida Console', monospace;">anEditor.SewFreeBorders(6, \r
+ 21, 5, 1, 12, 3, 0, 0)</span> </p>\r
 \r
 <h4><a name=bookmark7>Sew Side Elements</a></h4>\r
 \r
-<p class="whs5">import salome</p>\r
+<p class="whs4"><span style="font-weight: bold; color: #ff0000;"><font color=red ><B># \r
+ Attention! This script has been written using the old approach basing \r
+ on direct usage of SMESH idl interface.</B></font></span></p>\r
+\r
+<p class="whs4"># For the moment smesh package doesn't provide \r
+ methods to sew side elements. </p>\r
+\r
+<p class="whs4"># In the next SALOME version the scripts will \r
+ be updated to use only the commands from smesh package.</p>\r
 \r
 <p class="whs5">import geompy</p>\r
 \r
@@ -569,8 +806,7 @@ else
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create two faces of the \r
- box</p>\r
+<p class="whs6"># create two boxes</p>\r
 \r
 <p class="whs5">box1 = geompy.MakeBox(0., \r
  &nbsp;0., 0., \r
@@ -579,81 +815,64 @@ else
 <p class="whs5">box2 = geompy.MakeBox(0., \r
  15., 0., 20., 25., 10.)</p>\r
 \r
+<p class="whs5">&nbsp;</p>\r
+\r
 <p class="whs5">EdgesList = geompy.SubShapeAll(box2, \r
  geompy.ShapeType[&quot;EDGE&quot;])</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
-\r
-<p class="whs5">aComp = geompy.MakeCompound( \r
- [box1, box2] )</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">idComp = geompy.addToStudy( \r
aComp, &quot;Two faces&quot; )</p>\r
+<p class="whs5">aComp = geompy.MakeCompound([box1, \r
box2])</p>\r
 \r
-<p class="whs5">aCompobj &nbsp;= \r
salome.IDToObject( idComp )</p>\r
+<p class="whs5">geompy.addToStudy(aComp, \r
&quot;Two boxes&quot;)</p>\r
 \r
 <p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create a mesh on two \r
faces</p>\r
+<p class="whs6"># create a mesh on \r
two boxes</p>\r
 \r
-<p class="whs5">mesh = smesh.Mesh(aCompobj\r
+<p class="whs5">mesh = smesh.Mesh(aComp, \r
  &quot;Two faces : quadrangle mesh&quot;)</p>\r
 \r
-<p class="whs5">algo = mesh.Segment()</p>\r
-\r
-<p class="whs4">&nbsp;</p>\r
-\r
-<p class="whs4"># define &quot;NumberOfSegments&quot; \r
- hypothesis to cut an edge in a fixed number of segments</p>\r
-\r
-<p class="whs5">algo.NumberOfSegments(2)</p>\r
-\r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4"># create a quadrangle 2D \r
- algorithm for faces</p>\r
+<p class="whs5">algo1D = mesh.Segment()</p>\r
 \r
-<p class="whs5">mesh.Quadrangle()</p>\r
+<p class="whs5">algo1D.NumberOfSegments(2)</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo2D = mesh.Quadrangle()</p>\r
 \r
-<p class="whs4"># create a local hypothesis</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">algo = mesh.Segment(EdgesList[8])</p>\r
+<p class="whs5">algo_local = mesh.Segment(EdgesList[8])</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">algo_local.NumberOfSegments(4)</p>\r
 \r
-<p class="whs4"># define &quot;Arithmetic1D&quot; \r
- hypothesis to cut an edge in several segments with increasing arithmetic \r
- length </p>\r
+<p class="whs5">algo_local.Propagation()</p>\r
 \r
-<p class="whs5">algo.NumberOfSegments(4)</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs5">mesh.Compute()</p>\r
 \r
-<p class="whs4"># define &quot;Propagation&quot; \r
- hypothesis that propagates all other hypothesis on all edges on <span \r
- style="margin-top: 0pt; margin-bottom: 0pt;">the opposite side in case \r
- of quadrangular faces</span></p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs5">algo.Propagation()</p>\r
+<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
 \r
-<p class="whs5">mesh.Compute()</p>\r
+<p class="whs5">&nbsp;</p>\r
 \r
-<p class="whs4">&nbsp;</p>\r
+<p class="whs6"># sew side elements</p>\r
 \r
-<p class="whs4"># sew free borders</p>\r
+<p class="whs6"># IDsOfSide1Elements, \r
+ IDsOfSide2Elements,</p>\r
 \r
-<p class="whs5">anEditor = mesh.GetMesh().GetMeshEditor()</p>\r
+<p class="whs6"># NodeID1OfSide1ToMerge, \r
+ NodeID1OfSide2ToMerge, NodeID2OfSide1ToMerge, NodeID2OfSide2ToMerge</p>\r
 \r
 <p class="whs5">anEditor.SewSideElements([69, \r
  70, 71, 72], [91, 92, 89, 90], 8, 38, 23, 58)</p>\r
 \r
-<p class="whs4"><span style="font-family: 'Lucida Console', monospace;">salome.sg.updateObjBrowser(1)</span> \r
- </p>\r
-\r
 <script type="text/javascript" language="javascript1.2">\r
 <!--\r
 if (window.writeIntopicBar)\r