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smeshDC.Mesh Class Reference

Class to define a mesh. -More... -

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Public Member Functions

def __init__
 Constructor.
def SetMesh
 Method that inits the Mesh object from SMESH_Mesh interface.
def GetMesh
 Method that returns the mesh.
def GetName
 Get mesh name.
def SetName
 Set name to mesh.
def GetSubMesh
 Get the subMesh object associated to a subShape.
def GetShape
 Method that returns the shape associated to the mesh.
def SetShape
 Method that associates given shape to the mesh(entails the mesh recreation).
def IsReadyToCompute
 Return true if hypotheses are defined well.
def GetAlgoState
 Return errors of hypotheses definintion error list is empty if everything is OK.
def GetGeometryByMeshElement
 Return geometrical object the given element is built on.
def MeshDimension
 Returns mesh dimension depending on shape one.
def Segment
 Creates a segment discretization 1D algorithm.
def Triangle
 Creates a triangle 2D algorithm for faces.
def Quadrangle
 Creates a quadrangle 2D algorithm for faces.
def Tetrahedron
 Creates a tetrahedron 3D algorithm for solids.
def Hexahedron
 Creates a hexahedron 3D algorithm for solids.
def Netgen
 Deprecated, only for compatibility!
def Projection1D
 Creates a projection 1D algorithm for edges.
def Projection2D
 Creates a projection 2D algorithm for faces.
def Projection3D
 Creates a projection 3D algorithm for solids.
def Prism
 Creates a 3D extrusion (Prism 3D) or RadialPrism 3D algorithm for solids.
def Compute
 Compute the mesh and return the status of the computation.
def AutomaticTetrahedralization
 Compute tetrahedral mesh using AutomaticLength + MEFISTO + NETGEN The parameter fineness [0,-1] defines mesh fineness.
def AutomaticHexahedralization
 Compute hexahedral mesh using AutomaticLength + Quadrangle + Hexahedron The parameter fineness [0,-1] defines mesh fineness.
def AddHypothesis
 Assign hypothesis.
def GetHypothesisList
 Get the list of hypothesis added on a geom.
def RemoveGlobalHypotheses
 Removes all global hypotheses.
def Group
 Create a mesh group based on geometric object grp and give a name,
- if this parameter is not defined the name is the same as the geometric group name
- Note: Works like GroupOnGeom().
def ExportToMED
 Deprecated, only for compatibility! Please, use ExportMED() method instead.
def ExportMED
 Export the mesh in a file with the MED format.
def ExportDAT
 Export the mesh in a file with the DAT format.
def ExportUNV
 Export the mesh in a file with the UNV format.
def ExportSTL
 Export the mesh in a file with the STL format.
def CreateEmptyGroup
 Creates an empty mesh group.
def GroupOnGeom
 Creates a mesh group based on geometric object grp and give a name,
- if this parameter is not defined the name is the same as the geometric group name.
def MakeGroupByIds
 Create a mesh group by the given ids of elements.
def MakeGroup
 Create a mesh group by the given conditions.
def MakeGroupByCriterion
 Create a mesh group by the given criterion.
def MakeGroupByCriteria
 Create a mesh group by the given criteria(list of criterions).
def MakeGroupByFilter
 Create a mesh group by the given filter.
def GetIdsFromFilter
 Pass mesh elements through the given filter and return ids.
def GetFreeBorders
 Verify whether 2D mesh element has free edges(edges connected to one face only)
- Returns list of special structures(borders).
def RemoveGroup
 Remove a group.
def RemoveGroupWithContents
 Remove group with its contents.
def GetGroups
 Get the list of groups existing in the mesh.
def GetGroupNames
 Get the list of names of groups existing in the mesh.
def UnionGroups
 Union of two groups New group is created.
def IntersectGroups
 Intersection of two groups New group is created.
def CutGroups
 Cut of two groups New group is created.
def GetLog
 Get the log of nodes and elements added or removed since previous clear of the log.
def ClearLog
 Clear the log of nodes and elements added or removed since previous clear.
def GetId
 Get the internal Id.
def GetStudyId
 Get the study Id.
def HasDuplicatedGroupNamesMED
 Check group names for duplications.
def GetMeshEditor
 Obtain instance of SMESH_MeshEditor.
def GetMEDMesh
 Get MED Mesh.
def NbNodes
 Returns number of nodes in mesh.
def NbElements
 Returns number of elements in mesh.
def NbEdges
 Returns number of edges in mesh.
def NbEdgesOfOrder
 Returns number of edges with given order in mesh.
def NbFaces
 Returns number of faces in mesh.
def NbFacesOfOrder
 Returns number of faces with given order in mesh.
def NbTriangles
 Returns number of triangles in mesh.
def NbTrianglesOfOrder
 Returns number of triangles with given order in mesh.
def NbQuadrangles
 Returns number of quadrangles in mesh.
def NbQuadranglesOfOrder
 Returns number of quadrangles with given order in mesh.
def NbPolygons
 Returns number of polygons in mesh.
def NbVolumes
 Returns number of volumes in mesh.
def NbVolumesOfOrder
 Returns number of volumes with given order in mesh.
def NbTetras
 Returns number of tetrahedrons in mesh.
def NbTetrasOfOrder
 Returns number of tetrahedrons with given order in mesh.
def NbHexas
 Returns number of hexahedrons in mesh.
def NbHexasOfOrder
 Returns number of hexahedrons with given order in mesh.
def NbPyramids
 Returns number of pyramids in mesh.
def NbPyramidsOfOrder
 Returns number of pyramids with given order in mesh.
def NbPrisms
 Returns number of prisms in mesh.
def NbPrismsOfOrder
 Returns number of prisms with given order in mesh.
def NbPolyhedrons
 Returns number of polyhedrons in mesh.
def NbSubMesh
 Returns number of submeshes in mesh.
def GetElementsId
 Returns list of mesh elements ids.
def GetElementsByType
 Returns list of ids of mesh elements with given type.
def GetNodesId
 Returns list of mesh nodes ids.
def GetElementType
 Returns type of mesh element.
def GetSubMeshElementsId
 Returns list of submesh elements ids.
def GetSubMeshNodesId
 Returns list of submesh nodes ids.
def GetSubMeshElementType
 Returns list of ids of submesh elements with given type.
def Dump
 Get mesh description.
def GetNodeXYZ
 Get XYZ coordinates of node as list of double
- If there is not node for given ID - returns empty list.
def GetNodeInverseElements
 For given node returns list of IDs of inverse elements
- If there is not node for given ID - returns empty list.
def GetShapeID
 If given element is node returns IDs of shape from position
- If there is not node for given ID - returns -1.
def GetShapeIDForElem
 For given element returns ID of result shape after FindShape() from SMESH_MeshEditor
- If there is not element for given ID - returns -1.
def GetElemNbNodes
 Returns number of nodes for given element
- If there is not element for given ID - returns -1.
def GetElemNode
 Returns ID of node by given index for given element
- If there is not element for given ID - returns -1
- If there is not node for given index - returns -2.
def IsMediumNode
 Returns true if given node is medium node in given quadratic element.
def IsMediumNodeOfAnyElem
 Returns true if given node is medium node in one of quadratic elements.
def ElemNbEdges
 Returns number of edges for given element.
def ElemNbFaces
 Returns number of faces for given element.
def IsPoly
 Returns true if given element is polygon.
def IsQuadratic
 Returns true if given element is quadratic.
def BaryCenter
 Returns XYZ coordinates of bary center for given element as list of double
- If there is not element for given ID - returns empty list.
def RemoveElements
 Removes elements from mesh by ids.
def RemoveNodes
 Removes nodes from mesh by ids.
def AddNode
 Add node to mesh by coordinates.
def AddEdge
 Create edge both similar and quadratic (this is determed by number of given nodes).
def AddFace
 Create face both similar and quadratic (this is determed by number of given nodes).
def AddPolygonalFace
 Add polygonal face to mesh by list of nodes ids.
def AddVolume
 Create volume both similar and quadratic (this is determed by number of given nodes).
def AddPolyhedralVolume
 Create volume of many faces, giving nodes for each face.
def AddPolyhedralVolumeByFaces
 Create volume of many faces, giving IDs of existing faces.
def MoveNode
 Move node with given id.
def FindNodeClosestTo
 Find a node closest to a point.
def MeshToPassThroughAPoint
 Find a node closest to a point and move it to a point location.
def InverseDiag
 Replace two neighbour triangles sharing Node1-Node2 link with ones built on the same 4 nodes but having other common link.
def DeleteDiag
 Replace two neighbour triangles sharing Node1-Node2 link with a quadrangle built on the same 4 nodes.
def Reorient
 Reorient elements by ids.
def ReorientObject
 Reorient all elements of the object.
def TriToQuad
 Fuse neighbour triangles into quadrangles.
def TriToQuadObject
 Fuse neighbour triangles of the object into quadrangles.
def QuadToTri
 Split quadrangles into triangles.
def QuadToTriObject
 Split quadrangles into triangles.
def SplitQuad
 Split quadrangles into triangles.
def SplitQuadObject
 Split quadrangles into triangles.
def BestSplit
 Find better splitting of the given quadrangle.
def SplitQuadsNearTriangularFacets
 Split quafrangle faces near triangular facets of volumes.
def SplitHexaToTetras
 Split hexahedrons into tetrahedrons.
def SplitHexaToPrisms
 Split hexahedrons into prisms.
def Smooth
 Smooth elements.
def SmoothObject
 Smooth elements belong to given object.
def SmoothParametric
 Parametric smooth the given elements.
def SmoothParametricObject
 Parametric smooth elements belong to given object.
def ConvertToQuadratic
 Converts all mesh to quadratic one, deletes old elements, replacing them with quadratic ones with the same id.
def ConvertFromQuadratic
 Converts all mesh from quadratic to ordinary ones, deletes old quadratic elements,
- replacing them with ordinary mesh elements with the same id.
def RenumberNodes
 Renumber mesh nodes.
def RenumberElements
 Renumber mesh elements.
def RotationSweep
 Generate new elements by rotation of the elements around the axis.
def RotationSweepObject
 Generate new elements by rotation of the elements of object around the axis.
def ExtrusionSweep
 Generate new elements by extrusion of the elements with given ids.
def AdvancedExtrusion
 Generate new elements by extrusion of the elements with given ids.
def ExtrusionSweepObject
 Generate new elements by extrusion of the elements belong to object.
def ExtrusionSweepObject1D
 Generate new elements by extrusion of the elements belong to object.
def ExtrusionSweepObject2D
 Generate new elements by extrusion of the elements belong to object.
def ExtrusionAlongPath
 Generate new elements by extrusion of the given elements A path of extrusion must be a meshed edge.
def ExtrusionAlongPathObject
 Generate new elements by extrusion of the elements belong to object A path of extrusion must be a meshed edge.
def Mirror
 Symmetrical copy of mesh elements.
def MirrorObject
 Symmetrical copy of object.
def Translate
 Translates the elements.
def TranslateObject
 Translates the object.
def Rotate
 Rotates the elements.
def RotateObject
 Rotates the object.
def FindCoincidentNodes
 Find group of nodes close to each other within Tolerance.
def FindCoincidentNodesOnPart
 Find group of nodes close to each other within Tolerance.
def MergeNodes
 Merge nodes.
def FindEqualElements
 Find elements built on the same nodes.
def MergeElements
 Merge elements in each given group.
def MergeEqualElements
 Remove all but one of elements built on the same nodes.
def SewFreeBorders
 Sew free borders.
def SewConformFreeBorders
 Sew conform free borders.
def SewBorderToSide
 Sew border to side.
def SewSideElements
 Sew two sides of a mesh.
def ChangeElemNodes
 Set new nodes for given element.
def GetLastCreatedNodes
 If during last operation of MeshEditor some nodes were created this method returns list of it's IDs,
- if new nodes not created - returns empty list.
def GetLastCreatedElems
 If during last operation of MeshEditor some elements were created this method returns list of it's IDs,
- if new elements not creared - returns empty list.

Data Fields

 smeshpyD
 geompyD
 geom
 mesh
 editor

Static Public Attributes

int geom = 0
int mesh = 0
int editor = 0
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Detailed Description

-The class contains mesh shape, SMESH_Mesh, SMESH_MeshEditor More details. -

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Member Function Documentation

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def smeshDC.Mesh.__init__ (  self,
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  geompyD,
  obj = 0,
  name = 0 
)
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-Creates mesh on the shape geom(or the empty mesh if geom equal to 0), sets GUI name of this mesh to name.

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obj Shape to be meshed or SMESH_Mesh object
name Study name of the mesh
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def smeshDC.Mesh.SetMesh (  self,
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def smeshDC.Mesh.GetMesh (  self  ) 
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def smeshDC.Mesh.GetName (  self  ) 
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def smeshDC.Mesh.SetName (  self,
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def smeshDC.Mesh.GetSubMesh (  self,
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def smeshDC.Mesh.GetShape (  self  ) 
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def smeshDC.Mesh.SetShape (  self,
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def smeshDC.Mesh.IsReadyToCompute (  self,
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theSubObject subshape of a mesh shape
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def smeshDC.Mesh.GetAlgoState (  self,
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theSubObject subshape of a mesh shape
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a list of errors
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def smeshDC.Mesh.GetGeometryByMeshElement (  self,
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-The returned geometrical object, if not nil, is either found in the study or is published by this method with the given name

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theMesh is an instance of Mesh class
theElementID an id of the mesh element
theGeomName user defined name of geometrical object
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GEOM.GEOM_Object instance
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def smeshDC.Mesh.MeshDimension (  self  ) 
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def smeshDC.Mesh.Segment (  self,
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  geom = 0 
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-If the optional algo parameter is not sets, this algorithm is REGULAR. If the optional geom parameter is not sets, this algorithm is global.
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algo values are smesh.REGULAR or smesh.PYTHON for discretization via python function
geom If defined, subshape to be meshed
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def smeshDC.Mesh.Triangle (  self,
  algo = MEFISTO,
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)
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-If the optional geom parameter is not sets, this algorithm is global.
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algo values are: smesh.MEFISTO or smesh.NETGEN
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def smeshDC.Mesh.Quadrangle (  self,
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-If the optional geom parameter is not sets, this algorithm is global.
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Parameters:
- - -
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Tetrahedron (  self,
  algo = NETGEN,
  geom = 0 
)
-
-
- -

-The parameter algo permits to choice the algorithm: NETGEN or GHS3D If the optional geom parameter is not sets, this algorithm is global.
- Otherwise, this algorithm define a submesh based on geom subshape.

Parameters:
- - - -
algo values are: smesh.NETGEN, smesh.GHS3D, smesh.FULL_NETGEN
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Hexahedron (  self,
  geom = 0 
)
-
-
- -

-If the optional geom parameter is not sets, this algorithm is global.
- Otherwise, this algorithm define a submesh based on geom subshape.

Parameters:
- - -
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Netgen (  self,
  is3D,
  geom = 0 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Projection1D (  self,
  geom = 0 
)
-
-
- -

-If the optional geom parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on geom subshape.

Parameters:
- - -
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Projection2D (  self,
  geom = 0 
)
-
-
- -

-If the optional geom parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on geom subshape.

Parameters:
- - -
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Projection3D (  self,
  geom = 0 
)
-
-
- -

-If the optional geom parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on geom subshape.

Parameters:
- - -
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Prism (  self,
  geom = 0 
)
-
-
- -

-If the optional geom parameter is not sets, this algorithm is global. Otherwise, this algorithm define a submesh based on geom subshape.

Parameters:
- - -
geom If defined, subshape to be meshed
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Compute (  self,
  geom = 0 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AutomaticTetrahedralization (  self,
  fineness = 0 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AutomaticHexahedralization (  self,
  fineness = 0 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AddHypothesis (  self,
  hyp,
  geom = 0 
)
-
-
- -

-

Parameters:
- - - -
hyp is a hypothesis to assign
geom is subhape of mesh geometry
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetHypothesisList (  self,
  geom 
)
-
-
- -

-

Parameters:
- - -
geom is subhape of mesh geometry
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.RemoveGlobalHypotheses (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Group (  self,
  grp,
  name = "" 
)
-
-
- -

-

Parameters:
- - - -
grp is a geometric group, a vertex, an edge, a face or a solid
name is the name of the mesh group
-
-
Returns:
SMESH_GroupOnGeom
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExportToMED (  self,
  f,
  version,
  opt = 0 
)
-
-
- -

-Export the mesh in a file with the MED format and choice the version of MED format

Parameters:
- - - -
f is the file name
version values are SMESH.MED_V2_1, SMESH.MED_V2_2
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExportMED (  self,
  f,
  auto_groups = 0,
  version = MED_V2_2 
)
-
-
- -

-

Parameters:
- - - - -
f is the file name
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.
version MED format version(MED_V2_1 or MED_V2_2)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExportDAT (  self,
  f 
)
-
-
- -

-

Parameters:
- - -
f is the file name
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExportUNV (  self,
  f 
)
-
-
- -

-

Parameters:
- - -
f is the file name
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExportSTL (  self,
  f,
  ascii = 1 
)
-
-
- -

-

Parameters:
- - - -
f is the file name
ascii defined the kind of file contents
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.CreateEmptyGroup (  self,
  elementType,
  name 
)
-
-
- -

-

Parameters:
- - - -
elementType is the type of elements in the group
name is the name of the mesh group
-
-
Returns:
SMESH_Group
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GroupOnGeom (  self,
  grp,
  name = "",
  typ = None 
)
-
-
- -

-

Parameters:
- - - -
grp is a geometric group, a vertex, an edge, a face or a solid
name is the name of the mesh group
-
-
Returns:
SMESH_GroupOnGeom
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MakeGroupByIds (  self,
  groupName,
  elementType,
  elemIDs 
)
-
-
- -

-

Parameters:
- - - - -
groupName is the name of the mesh group
elementType is the type of elements in the group
elemIDs is the list of ids
-
-
Returns:
SMESH_Group
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MakeGroup (  self,
  groupName,
  elementType,
  CritType = FT_Undefined,
  Compare = FT_EqualTo,
  Treshold = "",
  UnaryOp = FT_Undefined 
)
-
-
- -

-

Parameters:
- - - - - - - -
groupName is the name of the mesh group
elementType is the type of elements in the group
CritType is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. )
Compare belong to {FT_LessThan, FT_MoreThan, FT_EqualTo}
Treshold is threshold value (range of id ids as string, shape, numeric)
UnaryOp is FT_LogicalNOT or FT_Undefined
-
-
Returns:
SMESH_Group
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MakeGroupByCriterion (  self,
  groupName,
  Criterion 
)
-
-
- -

-

Parameters:
- - - -
groupName is the name of the mesh group
Criterion is the instance of Criterion class
-
-
Returns:
SMESH_Group
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MakeGroupByCriteria (  self,
  groupName,
  theCriteria 
)
-
-
- -

-

Parameters:
- - - -
groupName is the name of the mesh group
Criteria is the list of criterions
-
-
Returns:
SMESH_Group
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MakeGroupByFilter (  self,
  groupName,
  theFilter 
)
-
-
- -

-

Parameters:
- - - -
groupName is the name of the mesh group
Criterion is the instance of Filter class
-
-
Returns:
SMESH_Group
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetIdsFromFilter (  self,
  theFilter 
)
-
-
- -

-

Parameters:
- - -
theFilter is SMESH_Filter
-
-
Returns:
list of ids
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetFreeBorders (  self  ) 
-
-
- -

-

Returns:
list of SMESH.FreeEdges.Border structure: edge id and two its nodes ids.
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RemoveGroup (  self,
  group 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RemoveGroupWithContents (  self,
  group 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetGroups (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetGroupNames (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.UnionGroups (  self,
  group1,
  group2,
  name 
)
-
-
- -

-All mesh elements that are present in initial groups are added to the new one -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.IntersectGroups (  self,
  group1,
  group2,
  name 
)
-
-
- -

-All mesh elements that are present in both initial groups are added to the new one. -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.CutGroups (  self,
  mainGroup,
  toolGroup,
  name 
)
-
-
- -

-All mesh elements that are present in main group but do not present in tool group are added to the new one -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetLog (  self,
  clearAfterGet 
)
-
-
- -

-

Parameters:
- - -
clearAfterGet log is emptied after Get (safe if concurrents access)
-
-
Returns:
list of log_block structures: commandType number coords indexes
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.ClearLog (  self  ) 
-
-
- -

-Must be used immediately after GetLog if clearAfterGet is false. -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetId (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetStudyId (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.HasDuplicatedGroupNamesMED (  self  ) 
-
-
- -

-Consider maximum group name length stored in MED file. -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetMeshEditor (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetMEDMesh (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbNodes (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbElements (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbEdges (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbEdgesOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbFaces (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbFacesOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbTriangles (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbTrianglesOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbQuadrangles (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbQuadranglesOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbPolygons (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbVolumes (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbVolumesOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbTetras (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbTetrasOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbHexas (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbHexasOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbPyramids (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbPyramidsOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbPrisms (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.NbPrismsOfOrder (  self,
  elementOrder 
)
-
-
- -

-

Parameters:
- - -
elementOrder is order of elements: ORDER_ANY, ORDER_LINEAR or ORDER_QUADRATIC
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbPolyhedrons (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.NbSubMesh (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetElementsId (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetElementsByType (  self,
  elementType 
)
-
-
- -

-

Parameters:
- - -
elementType is required type of elements
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.GetNodesId (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetElementType (  self,
  id,
  iselem 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetSubMeshElementsId (  self,
  shapeID 
)
-
-
- -

-

Parameters:
- - -
shapeID is geom object(subshape) IOR
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetSubMeshNodesId (  self,
  shapeID,
  all 
)
-
-
- -

-

Parameters:
- - -
shapeID is geom object(subshape) IOR
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetSubMeshElementType (  self,
  shapeID 
)
-
-
- -

-

Parameters:
- - -
shapeID is geom object(subshape) IOR
-
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.Dump (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetNodeXYZ (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetNodeInverseElements (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetShapeID (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetShapeIDForElem (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetElemNbNodes (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.GetElemNode (  self,
  id,
  index 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.IsMediumNode (  self,
  elementID,
  nodeID 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.IsMediumNodeOfAnyElem (  self,
  nodeID,
  elementType 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ElemNbEdges (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ElemNbFaces (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.IsPoly (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.IsQuadratic (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.BaryCenter (  self,
  id 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RemoveElements (  self,
  IDsOfElements 
)
-
-
- -

-

Parameters:
- - -
IDsOfElements is list of ids of elements to remove
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RemoveNodes (  self,
  IDsOfNodes 
)
-
-
- -

-

Parameters:
- - -
IDsOfNodes is list of ids of nodes to remove
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AddNode (  self,
  x,
  y,
  z 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AddEdge (  self,
  IDsOfNodes 
)
-
-
- -

-

Parameters:
- - -
IdsOfNodes List of node IDs for creation of element. Needed order of nodes in this list corresponds to description of MED.
- 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 smeshDC.Mesh.AddFace (  self,
  IDsOfNodes 
)
-
-
- -

-

Parameters:
- - -
IdsOfNodes List of node IDs for creation of element. Needed order of nodes in this list corresponds to description of MED.
- 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 smeshDC.Mesh.AddPolygonalFace (  self,
  IdsOfNodes 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AddVolume (  self,
  IDsOfNodes 
)
-
-
- -

-

Parameters:
- - -
IdsOfNodes List of node IDs for creation of element. Needed order of nodes in this list corresponds to description of MED.
- 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 smeshDC.Mesh.AddPolyhedralVolume (  self,
  IdsOfNodes,
  Quantities 
)
-
-
- -

-

Parameters:
- - - -
IdsOfNodes List of node IDs for volume creation face by face.
Quantities List of integer values, Quantities[i] gives quantity of nodes in face number i.
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AddPolyhedralVolumeByFaces (  self,
  IdsOfFaces 
)
-
-
- -

-

Parameters:
- - -
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 smeshDC.Mesh.MoveNode (  self,
  NodeID,
  x,
  y,
  z 
)
-
-
- -

-

Parameters:
- - - - - -
NodeID id of the node
x new X coordinate
y new Y coordinate
z new Z coordinate
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.FindNodeClosestTo (  self,
  x,
  y,
  z 
)
-
-
- -

-

Parameters:
- - - - -
x X coordinate of a point
y Y coordinate of a point
z Z coordinate of a point
-
-
Returns:
id of a node
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MeshToPassThroughAPoint (  self,
  x,
  y,
  z 
)
-
-
- -

-

Parameters:
- - - - -
x X coordinate of a point
y Y coordinate of a point
z Z coordinate of a point
-
-
Returns:
id of a moved node
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.InverseDiag (  self,
  NodeID1,
  NodeID2 
)
-
-
- -

-

Parameters:
- - - -
NodeID1 first node id
NodeID2 second node id
-
-
Returns:
false if proper faces not found
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.DeleteDiag (  self,
  NodeID1,
  NodeID2 
)
-
-
- -

-

Parameters:
- - - -
NodeID1 first node id
NodeID2 second node id
-
-
Returns:
false if proper faces not found
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Reorient (  self,
  IDsOfElements = None 
)
-
-
- -

-

Parameters:
- - -
IDsOfElements if undefined reorient all mesh elements
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ReorientObject (  self,
  theObject 
)
-
-
- -

-

Parameters:
- - -
theObject is mesh, submesh or group
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.TriToQuad (  self,
  IDsOfElements,
  theCriterion,
  MaxAngle 
)
-
-
- -

-

Parameters:
- - - - -
IDsOfElements The triangles to be fused,
theCriterion is FT_...; used to choose a neighbour to fuse with.
MaxAngle is a max angle between element normals at which fusion is still performed; theMaxAngle is mesured in radians.
-
-
Returns:
TRUE in case of success, FALSE otherwise.
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.TriToQuadObject (  self,
  theObject,
  theCriterion,
  MaxAngle 
)
-
-
- -

-

Parameters:
- - - - -
theObject is mesh, submesh or group
theCriterion is FT_...; used to choose a neighbour to fuse with.
MaxAngle is a max angle between element normals at which fusion is still performed; theMaxAngle is mesured in radians.
-
-
Returns:
TRUE in case of success, FALSE otherwise.
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.QuadToTri (  self,
  IDsOfElements,
  theCriterion 
)
-
-
- -

-

Parameters:
- - - - -
IDsOfElements the faces to be splitted.
theCriterion is FT_...; used to choose a diagonal for splitting.
 TRUE in case of success, FALSE otherwise.
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.QuadToTriObject (  self,
  theObject,
  theCriterion 
)
-
-
- -

-

Parameters:
- - - -
theObject object to taking list of elements from, is mesh, submesh or group
theCriterion is FT_...; used to choose a diagonal for splitting.
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SplitQuad (  self,
  IDsOfElements,
  Diag13 
)
-
-
- -

-

Parameters:
- - - -
theElems The faces to be splitted
the13Diag is used to choose a diagonal for splitting.
-
-
Returns:
TRUE in case of success, FALSE otherwise.
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SplitQuadObject (  self,
  theObject,
  Diag13 
)
-
-
- -

-

Parameters:
- - -
theObject is object to taking list of elements from, is mesh, submesh or group
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.BestSplit (  self,
  IDOfQuad,
  theCriterion 
)
-
-
- -

-

Parameters:
- - - -
IDOfQuad ID of the quadrangle to be splitted.
theCriterion is FT_...; a criterion to choose a diagonal for splitting.
-
-
Returns:
1 if 1-3 diagonal is better, 2 if 2-4 diagonal is better, 0 if error occurs.
- -
-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.SplitQuadsNearTriangularFacets (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SplitHexaToTetras (  self,
  theObject,
  theNode000,
  theNode001 
)
-
-
- -

-Use pattern mapping functionality for splitting.

Parameters:
- - - - -
theObject object to take list of hexahedrons from; is mesh, submesh or group.
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.
 TRUE in case of success, FALSE otherwise.
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SplitHexaToPrisms (  self,
  theObject,
  theNode000,
  theNode001 
)
-
-
- -

-Use pattern mapping functionality for splitting.

Parameters:
- - - - -
theObject object to take list of hexahedrons from; is mesh, submesh or group.
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.
 TRUE in case of success, FALSE otherwise.
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Smooth (  self,
  IDsOfElements,
  IDsOfFixedNodes,
  MaxNbOfIterations,
  MaxAspectRatio,
  Method 
)
-
-
- -

-

Parameters:
- - - - - - -
IDsOfElements list if ids of elements to smooth
IDsOfFixedNodes list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed.
MaxNbOfIterations maximum number of iterations
MaxAspectRatio varies in range [1.0, inf]
Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SmoothObject (  self,
  theObject,
  IDsOfFixedNodes,
  MaxNbOfIterations,
  MaxxAspectRatio,
  Method 
)
-
-
- -

-

Parameters:
- - - - - - -
theObject object to smooth
IDsOfFixedNodes list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed.
MaxNbOfIterations maximum number of iterations
MaxAspectRatio varies in range [1.0, inf]
Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SmoothParametric (  self,
  IDsOfElements,
  IDsOfFixedNodes,
  MaxNbOfIterations,
  MaxAspectRatio,
  Method 
)
-
-
- -

-

Parameters:
- - - - - - -
IDsOfElements list if ids of elements to smooth
IDsOfFixedNodes list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed.
MaxNbOfIterations maximum number of iterations
MaxAspectRatio varies in range [1.0, inf]
Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.SmoothParametricObject (  self,
  theObject,
  IDsOfFixedNodes,
  MaxNbOfIterations,
  MaxAspectRatio,
  Method 
)
-
-
- -

-

Parameters:
- - - - - - -
theObject object to smooth
IDsOfFixedNodes list of ids of fixed nodes. Note that nodes built on edges and boundary nodes are always fixed.
MaxNbOfIterations maximum number of iterations
MaxAspectRatio varies in range [1.0, inf]
Method is Laplacian(LAPLACIAN_SMOOTH) or Centroidal(CENTROIDAL_SMOOTH)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ConvertToQuadratic (  self,
  theForce3d 
)
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.ConvertFromQuadratic (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.RenumberNodes (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - -
def smeshDC.Mesh.RenumberElements (  self  ) 
-
-
- -

- -

-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RotationSweep (  self,
  IDsOfElements,
  Axix,
  AngleInRadians,
  NbOfSteps,
  Tolerance 
)
-
-
- -

-

Parameters:
- - - - - - -
IDsOfElements list of ids of elements to sweep
Axix axis of rotation, AxisStruct or line(geom object)
AngleInRadians angle of Rotation
NbOfSteps number of steps
Tolerance tolerance
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RotationSweepObject (  self,
  theObject,
  Axix,
  AngleInRadians,
  NbOfSteps,
  Tolerance 
)
-
-
- -

-

Parameters:
- - - - - - -
theObject object wich elements should be sweeped
Axix axis of rotation, AxisStruct or line(geom object)
AngleInRadians angle of Rotation
NbOfSteps number of steps
Tolerance tolerance
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExtrusionSweep (  self,
  IDsOfElements,
  StepVector,
  NbOfSteps 
)
-
-
- -

-

Parameters:
- - - - -
IDsOfElements list of elements ids for extrusion
StepVector vector, defining the direction and value of extrusion
NbOfSteps the number of steps
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.AdvancedExtrusion (  self,
  IDsOfElements,
  StepVector,
  NbOfSteps,
  ExtrFlags,
  SewTolerance 
)
-
-
- -

-

Parameters:
- - - - - - -
IDsOfElements is ids of elements
StepVector vector, defining the direction and value of extrusion
NbOfSteps the number of steps
ExtrFlags set flags for performing extrusion
SewTolerance uses for comparing locations of nodes if flag EXTRUSION_FLAG_SEW is set
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExtrusionSweepObject (  self,
  theObject,
  StepVector,
  NbOfSteps 
)
-
-
- -

-

Parameters:
- - - - -
theObject object wich elements should be processed
StepVector vector, defining the direction and value of extrusion
NbOfSteps the number of steps
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExtrusionSweepObject1D (  self,
  theObject,
  StepVector,
  NbOfSteps 
)
-
-
- -

-

Parameters:
- - - - -
theObject object wich elements should be processed
StepVector vector, defining the direction and value of extrusion
NbOfSteps the number of steps
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExtrusionSweepObject2D (  self,
  theObject,
  StepVector,
  NbOfSteps 
)
-
-
- -

-

Parameters:
- - - - -
theObject object wich elements should be processed
StepVector vector, defining the direction and value of extrusion
NbOfSteps the number of steps
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExtrusionAlongPath (  self,
  IDsOfElements,
  PathMesh,
  PathShape,
  NodeStart,
  HasAngles,
  Angles,
  HasRefPoint,
  RefPoint,
  LinearVariation = False 
)
-
-
- -

-

Parameters:
- - - - - - - - - - -
IDsOfElements is ids of elements
PathMesh mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion
PathShape is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path
NodeStart the first or the last node on the edge. It is used to define the direction of extrusion
HasAngles allows the shape to be rotated around the path to get the resulting mesh in a helical fashion
Angles list of angles
HasRefPoint allows to use base point
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.
LinearVariation makes compute rotation angles as linear variation of given Angles along path steps
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.ExtrusionAlongPathObject (  self,
  theObject,
  PathMesh,
  PathShape,
  NodeStart,
  HasAngles,
  Angles,
  HasRefPoint,
  RefPoint,
  LinearVariation = False 
)
-
-
- -

-

Parameters:
- - - - - - - - - - -
IDsOfElements is ids of elements
PathMesh mesh containing a 1D sub-mesh on the edge, along which proceeds the extrusion
PathShape is shape(edge); as the mesh can be complex, the edge is used to define the sub-mesh for the path
NodeStart the first or the last node on the edge. It is used to define the direction of extrusion
HasAngles allows the shape to be rotated around the path to get the resulting mesh in a helical fashion
Angles list of angles
HasRefPoint allows to use base point
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.
LinearVariation makes compute rotation angles as linear variation of given Angles along path steps
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Mirror (  self,
  IDsOfElements,
  Mirror,
  theMirrorType,
  Copy = 0 
)
-
-
- -

-

Parameters:
- - - - - -
IDsOfElements list of elements ids
Mirror is AxisStruct or geom object(point, line, plane)
theMirrorType is POINT, AXIS or PLANE If the Mirror is geom object this parameter is unnecessary
Copy allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MirrorObject (  self,
  theObject,
  Mirror,
  theMirrorType,
  Copy = 0 
)
-
-
- -

-

Parameters:
- - - - - -
theObject mesh, submesh or group
Mirror is AxisStruct or geom object(point, line, plane)
theMirrorType is POINT, AXIS or PLANE If the Mirror is geom object this parameter is unnecessary
Copy allows to copy element(Copy is 1) or to replace with its mirroring(Copy is 0)
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Translate (  self,
  IDsOfElements,
  Vector,
  Copy 
)
-
-
- -

-

Parameters:
- - - - -
IDsOfElements list of elements ids
Vector direction of translation(DirStruct or vector)
Copy allows to copy the translated elements
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.TranslateObject (  self,
  theObject,
  Vector,
  Copy 
)
-
-
- -

-

Parameters:
- - - - -
theObject object to translate(mesh, submesh, or group)
Vector direction of translation(DirStruct or geom vector)
Copy allows to copy the translated elements
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.Rotate (  self,
  IDsOfElements,
  Axis,
  AngleInRadians,
  Copy 
)
-
-
- -

-

Parameters:
- - - - - -
IDsOfElements list of elements ids
Axis axis of rotation(AxisStruct or geom line)
AngleInRadians angle of rotation(in radians)
Copy allows to copy the rotated elements
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.RotateObject (  self,
  theObject,
  Axis,
  AngleInRadians,
  Copy 
)
-
-
- -

-

Parameters:
- - - - - -
theObject object to rotate(mesh, submesh, or group)
Axis axis of rotation(AxisStruct or geom line)
AngleInRadians angle of rotation(in radians)
Copy allows to copy the rotated elements
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.FindCoincidentNodes (  self,
  Tolerance 
)
-
-
- -

-

Parameters:
- - - -
Tolerance tolerance value
list of group of nodes
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.FindCoincidentNodesOnPart (  self,
  SubMeshOrGroup,
  Tolerance 
)
-
-
- -

-

Parameters:
- - - - -
Tolerance tolerance value
SubMeshOrGroup SubMesh or Group
list of group of nodes
-
- -
-

- -

-
- - - - - - - - - - - - - - - - - - -
def smeshDC.Mesh.MergeNodes (  self,
  GroupsOfNodes 
)
-
-
- -

-

Parameters:
- - -
list of group of nodes
-
- -
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def smeshDC.Mesh.SewFreeBorders (  self,
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def smeshDC.Mesh.SewConformFreeBorders (  self,
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def smeshDC.Mesh.SewBorderToSide (  self,
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def smeshDC.Mesh.SewSideElements (  self,
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int smeshDC.Mesh.geom = 0 [static]
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int smeshDC.Mesh.mesh = 0 [static]
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- - diff --git a/doc/salome/gui/SMESH/smeshpy_doc/classsmeshDC_1_1Mesh__Algorithm.html b/doc/salome/gui/SMESH/smeshpy_doc/classsmeshDC_1_1Mesh__Algorithm.html deleted file mode 100644 index eb602f62b..000000000 --- a/doc/salome/gui/SMESH/smeshpy_doc/classsmeshDC_1_1Mesh__Algorithm.html +++ /dev/null @@ -1,408 +0,0 @@ - - - - - - Main Page - - - - -  - - - - -

smeshDC.Mesh_Algorithm Class Reference

Mother class to define algorithm, recommended to don't use directly. -More... -

-Inheritance diagram for smeshDC.Mesh_Algorithm:

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Public Member Functions

def __init__
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetSubMesh (  self  ) 
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def smeshDC.Mesh_Algorithm.GetAlgorithm (  self  ) 
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def smeshDC.Mesh_Algorithm.GetName (  self  ) 
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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  so = "libStdMeshersEngine.so" 
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smeshDC.Mesh_CompositeSegment Class Reference

Class to define a segment 1D algorithm for discretization. -More... -

-Inheritance diagram for smeshDC.Mesh_CompositeSegment:

Inheritance graph
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Public Member Functions

def __init__
 Private constructor.
def __init__
def LocalLength
 Define "LocalLength" hypothesis to cut an edge in several segments with the same length.
def NumberOfSegments
 Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments.
def Arithmetic1D
 Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing.
def StartEndLength
 Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing.
def Deflection1D
 Define "Deflection1D" hypothesis.
def Propagation
 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 AutomaticLength
 Define "AutomaticLength" hypothesis.
def LengthNearVertex
 Define "SegmentLengthAroundVertex" hypothesis.
def QuadraticMesh
 Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges.
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 geom
 smesh
 mesh
 subm
 algo
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Detailed Description

-More details. -

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Member Function Documentation

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def smeshDC.Mesh_CompositeSegment.__init__ (  self,
  mesh,
  geom = 0 
)
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def smeshDC.Mesh_Algorithm.__init__ (  self,
  smesh 
) [inherited]
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def smeshDC.Mesh_Segment.LocalLength (  self,
  l 
) [inherited]
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Parameters:
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l for the length of segments that cut an edge
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def smeshDC.Mesh_Segment.NumberOfSegments (  self,
  n,
  s = [] 
) [inherited]
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Parameters:
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n for the number of segments that cut an edge
s for the scale factor (optional)
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def smeshDC.Mesh_Segment.Arithmetic1D (  self,
  start,
  end 
) [inherited]
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Parameters:
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start for the length of the first segment
end for the length of the last segment
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def smeshDC.Mesh_Segment.StartEndLength (  self,
  start,
  end 
) [inherited]
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def smeshDC.Mesh_Algorithm.Create (  self,
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  so = "libStdMeshersEngine.so" 
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) [inherited]
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smeshDC.Mesh_Segment.geom [inherited]
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- - diff --git a/doc/salome/gui/SMESH/smeshpy_doc/classsmeshDC_1_1Mesh__CompositeSegment__inherit__graph.jpg b/doc/salome/gui/SMESH/smeshpy_doc/classsmeshDC_1_1Mesh__CompositeSegment__inherit__graph.jpg deleted file mode 100644 index 7d2fc4773e0658181367ec0cf22f098f5005ecd6..0000000000000000000000000000000000000000 GIT binary patch literal 0 HcmV?d00001 literal 9319 zcmeHrby$>L*Y7>l01}eYAT6EJQW66q(jX})-9w`cA|)L@APoZ2BQ?Z;0)nJ;hqRQE z(lK+!_dW6Gdwt*YyyuVaI_F&Ho@-C+Sv!7ft-aQ7FZ2|85xB0Q3Q+|>AOHYiUH}>e z+)>t5QPkJgm1ePf%wvW7> zy;wZFA2~aC`4ggN0c8Lm4-broiw_2a2?+2Bi71JQu3aOdC8r>zWTazeVx(hWU||>F zVqxWDV_@KxxWy+VEG8z#%q1l!DIzN%Dkk!C5)c6a0ns%g8e(D^k(&%RMgHvv-3pN5 z11%s@Y!EAeMFzqq1ED(rW(-bT&_5pFzds->Y#dxXFg^j{HH-k_I)DYj#>T?I#>K_K z!AL*D{14!e;ga7JR>Y&wc?4$lpcHwYn1|1%RMkeMJG{p(YV8?9KuCRqhL(Q?BOG>M2Y7uqy4UNc;?H!*wySjUNM@GlSCnl$+XO@;%R==*TZ)|Su zAN)8xIzBl)JO7Cb1YrLY7Uun*z<$F;hQWn}gM*C&{)r2O<%?<9WH`7th4IK0b-<52 zC|E_F<5Man=2f*3u!-vKQCWKq6H>E_EphDsg!T_)e-Bv5{}!_U3G9F2ngNKgK^Ws< zlL7L;$vO9%V8VYiIP=FK`r5He`n-jCOQ$4rbBE&}_t3y>>I-PCqw%8V^CWEzV22wH zLtXzOhzddsUNX(2f&DG{CE^h@u>Q>q4YY0Vq5-B{l8~r%H1Kq8tU=Q19?8GJO8A~BPsMsIH-wR~`G;gbh9 z57qJw&jMY*6T7pV3=J$QjHb3DbvO5ouUQ`2!%;IY*CZ(XKlprKm;Xlc-D^9>LxG|H zB*t5dP|k5yCvIZrpxfm26GVuL+Qq$Cx))6AHi%bAlu7M0z-aEicBJjdkqurN$9R9f zf>ncy!1C}DHD{^oeLrecLF~MY3j#v-d5ao`yqX%{6*knGFrjD`8|OMA?(#jbk;J)S zjo;RDOobCfGiqI(J^b*pOW4r%nd(vjZh%X|hp$~1><_>k9`J7xCrtFz(iP?Px{k@S zebJB#9R);Uloqzsv)&+=f|#WM@3(VXMlly-Iulle0iXdsGr_)|~K1lpQF*~Gh6m)&q?Xmyk z`YaBont&%EJN9PxY{;mI;_!Qc1~Ajy5Lm8sOCp=RdEDjjBD!qKW@vqkHGIo3D=&o= zEBL!+!fZTFPJ@SOx?KcYoQ&pZh2x}=C40QPTV|I$tvqrtg>pSt=evsKs28Jz21SOc zkH~!>-Q=r(!7GyISv|JcTp@wurf&H5b*W^UxXl|?l1bcmCWS+8GZKEZ?4#KZTMm{Q zq}iei&sllKx;1~WEF(jIEqb=eDN)+j%v;VxQN>Ez7GXC$#UxR*wK46)vnx*wBzWV)5qm!^ZP{pQNz z6#yCrJv31595n0i=Q95GeHcrFfF=Q()~tTX3bV}dy6g~`v0n8b(!5TP z^=$VVtF)!uad3-hJbkff$XeyO%eU1!0{SPy2_1zPRps=w=1ml2kY1 z#oO}y4E@P>WK7HIO?e$w-J=(sQz0I7+#9G_a>UQ9UE46`8tQT16+TZT z{Pv*XCUb(>eyyEH&mv*?%*S25=8#>>k#g4bp6KZer%eICR<~TE)+5-XRnoPn$eo0> ztHX^eB0S9nE`E4!8ChOIyy|OVGiM6%pj8?uTI&^7J>r?JfRXvto7dFrtL7EH&E)rD z{_-0B#>ap4AVq2RMR2L?r`EPFFS_CByX|yxJGp}E)p)D^^3qKLPfKLG4?w_nkUvv? 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smeshDC.Mesh_Hexahedron Class Reference

Class to define a hexahedron 3D algorithm. -More... -

-Inheritance diagram for smeshDC.Mesh_Hexahedron:

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Public Member Functions

def __init__
 Private constructor.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Hexahedron.__init__ (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetAlgorithm (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.Create (  self,
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  so = "libStdMeshersEngine.so" 
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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  so = "libStdMeshersEngine.so" 
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Netgen Class Reference

Class to define a NETGEN-based 2D or 3D algorithm that need no discrete boundary (i.e. -More... -

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Public Member Functions

def __init__
 Private constructor.
def Parameters
 Define hypothesis containing parameters of the algorithm.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
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def Hypothesis
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Data Fields

 is3D
 smesh
 mesh
 geom
 subm
 algo

Static Public Attributes

int is3D = 0
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Netgen.__init__ (  self,
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def smeshDC.Mesh_Netgen.Parameters (  self  ) 
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetSubMesh (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetAlgorithm (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetName (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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int smeshDC.Mesh_Netgen.is3D = 0 [static]
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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Prism3D Class Reference

Class to define a 3D extrusion algorithm. -More... -

-Inheritance diagram for smeshDC.Mesh_Prism3D:

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Public Member Functions

def __init__
 Private constructor.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Prism3D.__init__ (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetSubMesh (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetAlgorithm (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetName (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.GetId (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.Create (  self,
  mesh,
  geom,
  hypo,
  so = "libStdMeshersEngine.so" 
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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  args = [],
  so = "libStdMeshersEngine.so" 
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.geom [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Projection1D Class Reference

Class to define a projection 1D algorithm. -More... -

-Inheritance diagram for smeshDC.Mesh_Projection1D:

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Public Member Functions

def __init__
 Private constructor.
def SourceEdge
 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).
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
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Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Member Function Documentation

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def smeshDC.Mesh_Projection1D.__init__ (  self,
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def smeshDC.Mesh_Projection1D.SourceEdge (  self,
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edge to take nodes distribution from
mesh to take nodes distribution from (optional)
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def smeshDC.Mesh_Algorithm.Create (  self,
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Projection2D Class Reference

Class to define a projection 2D algorithm. -More... -

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Public Member Functions

def __init__
 Private constructor.
def SourceFace
 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).
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Member Function Documentation

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def smeshDC.Mesh_Projection2D.__init__ (  self,
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def smeshDC.Mesh_Projection2D.SourceFace (  self,
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face to take mesh pattern from
mesh to take mesh pattern from (optional)
srcV1 is vertex of face to associate with tgtV1 (optional)
tgtV1 is vertex of the face where the algorithm is assigned, to associate with srcV1 (optional)
srcV2 is vertex of face to associate with tgtV1 (optional)
tgtV2 is vertex of the face where the algorithm is assigned, to associate with srcV2 (optional)
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Projection3D Class Reference

Class to define a projection 3D algorithm. -More... -

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Public Member Functions

def __init__
 Private constructor.
def SourceShape3D
 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).
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Projection3D.__init__ (  self,
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def smeshDC.Mesh_Projection3D.SourceShape3D (  self,
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  srcV1 = 0,
  tgtV1 = 0,
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solid to take mesh pattern from
mesh to take mesh pattern from (optional)
srcV1 is vertex of solid to associate with tgtV1 (optional)
tgtV1 is vertex of the solid where the algorithm is assigned, to associate with srcV1 (optional)
srcV2 is vertex of solid to associate with tgtV1 (optional)
tgtV2 is vertex of the solid where the algorithm is assigned, to associate with srcV2 (optional)
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetSubMesh (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetAlgorithm (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetName (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.GetId (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.Create (  self,
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  so = "libStdMeshersEngine.so" 
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.geom [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Quadrangle Class Reference

Class to define a quadrangle 2D algorithm. -More... -

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Public Member Functions

def __init__
 Private constructor.
def QuadranglePreference
 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 __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
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def Hypothesis
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Data Fields

 smesh
 mesh
 geom
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Quadrangle.__init__ (  self,
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def smeshDC.Mesh_Quadrangle.QuadranglePreference (  self  ) 
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetAlgorithm (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.GetId (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.Create (  self,
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.geom [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_RadialPrism3D Class Reference

Class to define a Radial Prism 3D algorithm. -More... -

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Public Member Functions

def __init__
 Private constructor.
def Get3DHypothesis
 Return 3D hypothesis holding the 1D one.
def OwnHypothesis
 Private method creating 1D hypothes and storing it in the LayerDistribution hypothes.
def NumberOfLayers
 Define "NumberOfLayers" hypothesis, specifying a number of layers of prisms to build between the inner and outer shells.
def LocalLength
 Define "LocalLength" hypothesis, specifying segment length to build between the inner and outer shells.
def NumberOfSegments
 Define "NumberOfSegments" hypothesis, specifying a number of layers of prisms to build between the inner and outer shells.
def Arithmetic1D
 Define "Arithmetic1D" hypothesis, specifying distribution of segments to build between the inner and outer shells as arithmetic length increasing.
def StartEndLength
 Define "StartEndLength" hypothesis, specifying distribution of segments to build between the inner and outer shells as geometric length increasing.
def AutomaticLength
 Define "AutomaticLength" hypothesis, specifying number of segments to build between the inner and outer shells.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
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def Hypothesis
 Private method.

Data Fields

 distribHyp
 nbLayers
 smesh
 mesh
 geom
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_RadialPrism3D.__init__ (  self,
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def smeshDC.Mesh_RadialPrism3D.Get3DHypothesis (  self  ) 
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def smeshDC.Mesh_RadialPrism3D.OwnHypothesis (  self,
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def smeshDC.Mesh_RadialPrism3D.NumberOfLayers (  self,
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def smeshDC.Mesh_RadialPrism3D.LocalLength (  self,
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def smeshDC.Mesh_RadialPrism3D.NumberOfSegments (  self,
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def smeshDC.Mesh_RadialPrism3D.Arithmetic1D (  self,
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def smeshDC.Mesh_RadialPrism3D.StartEndLength (  self,
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def smeshDC.Mesh_RadialPrism3D.AutomaticLength (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Segment Class Reference

Class to define a segment 1D algorithm for discretization. -More... -

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Public Member Functions

def __init__
 Private constructor.
def LocalLength
 Define "LocalLength" hypothesis to cut an edge in several segments with the same length.
def NumberOfSegments
 Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments.
def Arithmetic1D
 Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing.
def StartEndLength
 Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing.
def Deflection1D
 Define "Deflection1D" hypothesis.
def Propagation
 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 AutomaticLength
 Define "AutomaticLength" hypothesis.
def LengthNearVertex
 Define "SegmentLengthAroundVertex" hypothesis.
def QuadraticMesh
 Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 geom
 smesh
 mesh
 subm
 algo
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Detailed Description

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def smeshDC.Mesh_Segment.__init__ (  self,
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def smeshDC.Mesh_Segment.LocalLength (  self,
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def smeshDC.Mesh_Segment.NumberOfSegments (  self,
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def smeshDC.Mesh_Segment.Arithmetic1D (  self,
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def smeshDC.Mesh_Segment.StartEndLength (  self,
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def smeshDC.Mesh_Segment.AutomaticLength (  self,
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def smeshDC.Mesh_Segment.LengthNearVertex (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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  so = "libStdMeshersEngine.so" 
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Segment_Python Class Reference

Class to define a segment 1D algorithm for discretization with python function. -More... -

-Inheritance diagram for smeshDC.Mesh_Segment_Python:

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Public Member Functions

def __init__
 Private constructor.
def PythonSplit1D
 Define "PythonSplit1D" hypothesis based on the Erwan Adam patch, awaiting equivalent SALOME functionality.
def __init__
def LocalLength
 Define "LocalLength" hypothesis to cut an edge in several segments with the same length.
def NumberOfSegments
 Define "NumberOfSegments" hypothesis to cut an edge in several fixed number of segments.
def Arithmetic1D
 Define "Arithmetic1D" hypothesis to cut an edge in several segments with arithmetic length increasing.
def StartEndLength
 Define "StartEndLength" hypothesis to cut an edge in several segments with geometric length increasing.
def Deflection1D
 Define "Deflection1D" hypothesis.
def Propagation
 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 AutomaticLength
 Define "AutomaticLength" hypothesis.
def LengthNearVertex
 Define "SegmentLengthAroundVertex" hypothesis.
def QuadraticMesh
 Define "QuadraticMesh" hypothesis, forcing construction of quadratic edges.
def GetSubMesh
 If the algorithm is global, return 0;
- else return the submesh associated to this algorithm.
def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 geom
 smesh
 mesh
 subm
 algo
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Segment_Python.__init__ (  self,
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def smeshDC.Mesh_Segment_Python.PythonSplit1D (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Segment.LocalLength (  self,
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def smeshDC.Mesh_Segment.NumberOfSegments (  self,
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def smeshDC.Mesh_Segment.StartEndLength (  self,
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def smeshDC.Mesh_Segment.AutomaticLength (  self,
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def smeshDC.Mesh_Segment.LengthNearVertex (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
  hyp,
  args = [],
  so = "libStdMeshersEngine.so" 
) [inherited]
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Field Documentation

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smeshDC.Mesh_Segment.geom [inherited]
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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Tetrahedron Class Reference

Class to define a tetrahedron 3D algorithm. -More... -

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Public Member Functions

def __init__
 Private constructor.
def MaxElementVolume
 Define "MaxElementVolume" hypothesis to give the maximun volume of each tetrahedral.
def Parameters
 Define "Netgen 3D Parameters" hypothesis.
def SetMaxSize
 Set MaxSize.
def SetSecondOrder
 Set SecondOrder flag.
def SetOptimize
 Set Optimize flag.
def SetFineness
 Set Fineness.
def SetGrowthRate
 Set GrowthRate.
def SetNbSegPerEdge
 Set NbSegPerEdge.
def SetNbSegPerRadius
 Set NbSegPerRadius.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 algoType
 params
 smesh
 mesh
 geom
 subm
 algo

Static Public Attributes

int params = 0
int algoType = 0
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Tetrahedron.__init__ (  self,
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def smeshDC.Mesh_Tetrahedron.MaxElementVolume (  self,
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def smeshDC.Mesh_Tetrahedron.Parameters (  self  ) 
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def smeshDC.Mesh_Tetrahedron.SetMaxSize (  self,
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def smeshDC.Mesh_Tetrahedron.SetSecondOrder (  self,
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def smeshDC.Mesh_Tetrahedron.SetOptimize (  self,
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def smeshDC.Mesh_Tetrahedron.SetFineness (  self,
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def smeshDC.Mesh_Tetrahedron.SetGrowthRate (  self,
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def smeshDC.Mesh_Tetrahedron.SetNbSegPerEdge (  self,
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def smeshDC.Mesh_Tetrahedron.SetNbSegPerRadius (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetSubMesh (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetName (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.GetId (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.Create (  self,
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  so = "libStdMeshersEngine.so" 
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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int smeshDC.Mesh_Tetrahedron.params = 0 [static]
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int smeshDC.Mesh_Tetrahedron.algoType = 0 [static]
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smeshDC.Mesh_Algorithm.smesh [inherited]
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smeshDC.Mesh_Algorithm.mesh [inherited]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.Mesh_Triangle Class Reference

Class to define a triangle 2D algorithm. -More... -

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Public Member Functions

def __init__
 Private constructor.
def MaxElementArea
 Define "MaxElementArea" hypothesis to give the maximun area of each triangles.
def LengthFromEdges
 Define "LengthFromEdges" hypothesis to build triangles based on the length of the edges taken from the wire.
def Parameters
 Define "Netgen 2D Parameters" hypothesis.
def SetMaxSize
 Set MaxSize.
def SetSecondOrder
 Set SecondOrder flag.
def SetOptimize
 Set Optimize flag.
def SetFineness
 Set Fineness.
def SetGrowthRate
 Set GrowthRate.
def SetNbSegPerEdge
 Set NbSegPerEdge.
def SetNbSegPerRadius
 Set NbSegPerRadius.
def SetQuadAllowed
 Set QuadAllowed flag.
def __init__
def GetSubMesh
 If the algorithm is global, return 0;
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def GetAlgorithm
 Return the wrapped mesher.
def GetCompatibleHypothesis
 Get list of hypothesis that can be used with this algorithm.
def GetName
 Get name of algo.
def SetName
 Set name to algo.
def GetId
 Get id of algo.
def Create
 Private method.
def Hypothesis
 Private method.

Data Fields

 algoType
 params
 smesh
 mesh
 geom
 subm
 algo

Static Public Attributes

int algoType = 0
int params = 0
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Detailed Description

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Member Function Documentation

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def smeshDC.Mesh_Triangle.__init__ (  self,
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  geom = 0 
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def smeshDC.Mesh_Triangle.MaxElementArea (  self,
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def smeshDC.Mesh_Triangle.LengthFromEdges (  self  ) 
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def smeshDC.Mesh_Triangle.Parameters (  self  ) 
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def smeshDC.Mesh_Triangle.SetMaxSize (  self,
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def smeshDC.Mesh_Triangle.SetSecondOrder (  self,
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def smeshDC.Mesh_Triangle.SetOptimize (  self,
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def smeshDC.Mesh_Triangle.SetFineness (  self,
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def smeshDC.Mesh_Triangle.SetGrowthRate (  self,
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def smeshDC.Mesh_Triangle.SetNbSegPerEdge (  self,
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def smeshDC.Mesh_Triangle.SetNbSegPerRadius (  self,
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def smeshDC.Mesh_Algorithm.__init__ (  self,
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def smeshDC.Mesh_Algorithm.GetCompatibleHypothesis (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.GetName (  self  )  [inherited]
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def smeshDC.Mesh_Algorithm.SetName (  self,
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def smeshDC.Mesh_Algorithm.Create (  self,
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  so = "libStdMeshersEngine.so" 
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def smeshDC.Mesh_Algorithm.Hypothesis (  self,
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Field Documentation

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int smeshDC.Mesh_Triangle.algoType = 0 [static]
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int smeshDC.Mesh_Triangle.params = 0 [static]
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smeshDC.Mesh_Algorithm.subm [inherited]
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smeshDC.Mesh_Algorithm.algo [inherited]
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smeshDC.smeshDC Class Reference

Inheritance diagram for smeshDC.smeshDC:

Inheritance graph
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Public Member Functions

def init_smesh
def Mesh
def EnumToLong
 Returns long value from enumeration Uses for SMESH.FunctorType enumeration.
def GetPointStruct
 Get PointStruct from vertex.
def GetDirStruct
 Get DirStruct from vector.
def GetAxisStruct
 Get AxisStruct from object.
def SetEmbeddedMode
 Set the current mode.
def IsEmbeddedMode
 Get the current mode.
def SetCurrentStudy
 Set the current study.
def GetCurrentStudy
 Get the current study.
def CreateMeshesFromUNV
 Create Mesh object importing data from given UNV file.
def CreateMeshesFromMED
 Create Mesh object(s) importing data from given MED file.
def CreateMeshesFromSTL
 Create Mesh object importing data from given STL file.
def GetSubShapesId
 From SMESH_Gen interface.
def GetPattern
 From SMESH_Gen interface.
def GetEmptyCriterion
 Creates an empty criterion.
def GetCriterion
 Creates a criterion by given parameters.
def GetFilter
 Creates filter by given parameters of criterion.
def GetFunctor
 Creates numerical functor by its type.

Data Fields

 geompyD
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Member Function Documentation

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def smeshDC.smeshDC.init_smesh (  self,
  theStudy,
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def smeshDC.smeshDC.Mesh (  self,
  obj = 0,
  name = 0 
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def smeshDC.smeshDC.EnumToLong (  self,
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def smeshDC.smeshDC.GetPointStruct (  self,
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theVertex is GEOM object(vertex)
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SMESH.PointStruct
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def smeshDC.smeshDC.GetDirStruct (  self,
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theVector is GEOM object(vector)
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def smeshDC.smeshDC.GetAxisStruct (  self,
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theObj is GEOM object(line or plane)
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SMESH.AxisStruct
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def smeshDC.smeshDC.SetEmbeddedMode (  self,
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def smeshDC.smeshDC.IsEmbeddedMode (  self  ) 
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def smeshDC.smeshDC.SetCurrentStudy (  self,
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def smeshDC.smeshDC.GetCurrentStudy (  self  ) 
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def smeshDC.smeshDC.CreateMeshesFromUNV (  self,
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def smeshDC.smeshDC.CreateMeshesFromMED (  self,
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def smeshDC.smeshDC.CreateMeshesFromSTL (  self,
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def smeshDC.smeshDC.GetSubShapesId (  self,
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def smeshDC.smeshDC.GetPattern (  self  ) 
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def smeshDC.smeshDC.GetEmptyCriterion (  self  ) 
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def smeshDC.smeshDC.GetCriterion (  self,
  elementType,
  CritType,
  Compare = FT_EqualTo,
  Treshold = "",
  UnaryOp = FT_Undefined,
  BinaryOp = FT_Undefined 
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elementType is the type of elements(NODE, EDGE, FACE, VOLUME)
CritType is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. )
Compare belong to {FT_LessThan, FT_MoreThan, FT_EqualTo}
Treshold is threshold value (range of ids as string, shape, numeric)
UnaryOp is FT_LogicalNOT or FT_Undefined
BinaryOp is binary logical operation FT_LogicalAND, FT_LogicalOR or FT_Undefined(must be for the last criterion in criteria)
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def smeshDC.smeshDC.GetFilter (  self,
  elementType,
  CritType = FT_Undefined,
  Compare = FT_EqualTo,
  Treshold = "",
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elementType is the type of elements in the group
CritType is type of criterion( FT_Taper, FT_Area, FT_RangeOfIds, FT_LyingOnGeom etc. )
Compare belong to {FT_LessThan, FT_MoreThan, FT_EqualTo}
Treshold is threshold value (range of id ids as string, shape, numeric)
UnaryOp is FT_LogicalNOT or FT_Undefined
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SMESH_Filter
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def smeshDC.smeshDC.GetFunctor (  self,
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Field Documentation

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Package smesh

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-For available methods and classes please see documentation of -smeshDC package. -All methods of smeshDC package are accessible via smesh namespace, -for example "mesh = smesh.Mesh(shape, name)". -

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Variables

tuple smesh = salome.lcc.FindOrLoadComponent("FactoryServer", "SMESH")
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Variable Documentation

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tuple smesh.smesh = salome.lcc.FindOrLoadComponent("FactoryServer", "SMESH") [static]
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- - diff --git a/doc/salome/gui/SMESH/smeshpy_doc/namespacesmeshDC.html b/doc/salome/gui/SMESH/smeshpy_doc/namespacesmeshDC.html deleted file mode 100644 index ba523db16..000000000 --- a/doc/salome/gui/SMESH/smeshpy_doc/namespacesmeshDC.html +++ /dev/null @@ -1,530 +0,0 @@ - - - - - - Main Page - - - - -  - - - -

Package smeshDC

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- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -

Data Structures

class  smeshDC
class  Mesh_Algorithm
 Mother class to define algorithm, recommended to don't use directly. More...
class  Mesh_Segment
 Class to define a segment 1D algorithm for discretization. More...
class  Mesh_CompositeSegment
 Class to define a segment 1D algorithm for discretization. More...
class  Mesh_Segment_Python
 Class to define a segment 1D algorithm for discretization with python function. More...
class  Mesh_Triangle
 Class to define a triangle 2D algorithm. More...
class  Mesh_Quadrangle
 Class to define a quadrangle 2D algorithm. More...
class  Mesh_Tetrahedron
 Class to define a tetrahedron 3D algorithm. More...
class  Mesh_Hexahedron
 Class to define a hexahedron 3D algorithm. More...
class  Mesh_Netgen
 Class to define a NETGEN-based 2D or 3D algorithm that need no discrete boundary (i.e. More...
class  Mesh_Projection1D
 Class to define a projection 1D algorithm. More...
class  Mesh_Projection2D
 Class to define a projection 2D algorithm. More...
class  Mesh_Projection3D
 Class to define a projection 3D algorithm. More...
class  Mesh_Prism3D
 Class to define a 3D extrusion algorithm. More...
class  Mesh_RadialPrism3D
 Class to define a Radial Prism 3D algorithm. More...
class  Mesh
 Class to define a mesh. More...

Functions

def GetName
 Gets object name.
def SetName
def TreatHypoStatus

Variables

int noNETGENPlugin = 0
int noNETGENPlugin = 1
int REGULAR = 1
int PYTHON = 2
int COMPOSITE = 3
int MEFISTO = 3
int NETGEN = 4
int GHS3D = 5
int FULL_NETGEN = 6
 POINT = SMESH_MeshEditor.POINT
 AXIS = SMESH_MeshEditor.AXIS
 PLANE = SMESH_MeshEditor.PLANE
 LAPLACIAN_SMOOTH = SMESH_MeshEditor.LAPLACIAN_SMOOTH
 CENTROIDAL_SMOOTH = SMESH_MeshEditor.CENTROIDAL_SMOOTH
int VeryCoarse = 0
int Coarse = 1
int Moderate = 2
int Fine = 3
int VeryFine = 4
int Custom = 5
string NO_NAME = "NoName"
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Function Documentation

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def smeshDC.GetName (  obj  ) 
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def smeshDC.SetName (  obj,
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def smeshDC.TreatHypoStatus (  status,
  hypName,
  geomName,
  isAlgo 
)
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Variable Documentation

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int smeshDC.noNETGENPlugin = 0 [static]
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int smeshDC.noNETGENPlugin = 1 [static]
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int smeshDC.REGULAR = 1 [static]
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int smeshDC.PYTHON = 2 [static]
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int smeshDC.COMPOSITE = 3 [static]
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int smeshDC.MEFISTO = 3 [static]
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int smeshDC.NETGEN = 4 [static]
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int smeshDC.GHS3D = 5 [static]
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int smeshDC.FULL_NETGEN = 6 [static]
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smeshDC.POINT = SMESH_MeshEditor.POINT [static]
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smeshDC.AXIS = SMESH_MeshEditor.AXIS [static]
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smeshDC.PLANE = SMESH_MeshEditor.PLANE [static]
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int smeshDC.VeryCoarse = 0 [static]
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int smeshDC.Coarse = 1 [static]
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int smeshDC.Moderate = 2 [static]
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int smeshDC.Fine = 3 [static]
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int smeshDC.VeryFine = 4 [static]
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int smeshDC.Custom = 5 [static]
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string smeshDC.NO_NAME = "NoName" [static]
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- - -- 2.30.2