smesh/src/SMESH_SWIG/SMESH_box_tetra.py

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# Copyright (C) 2005 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
# CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
#
# This library is free software; you can redistribute it and/or
# modify it under the terms of the GNU Lesser General Public
# License as published by the Free Software Foundation; either
# version 2.1 of the License.
#
# This library is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
# Lesser General Public License for more details.
#
# You should have received a copy of the GNU Lesser General Public
# License along with this library; if not, write to the Free Software
# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
#
# See http://www.salome-platform.org/
#
#
# Tetrahedrization of a simple box. Hypothesis and algorithms for
# the mesh generation are global
#
import salome
import geompy
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import StdMeshers
import NETGENPlugin
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smesh = salome.lcc.FindOrLoadComponent("FactoryServer", "SMESH")
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smeshgui = salome.ImportComponentGUI("SMESH")
smeshgui.Init(salome.myStudyId);
# ---- define a boxe
box = geompy.MakeBox(0., 0., 0., 100., 200., 300.)
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idbox = geompy.addToStudy(box, "box")
print "Analysis of the geometry box :"
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subShellList = geompy.SubShapeAll(box, geompy.ShapeType["SHELL"])
subFaceList = geompy.SubShapeAll(box, geompy.ShapeType["FACE"])
subEdgeList = geompy.SubShapeAll(box, geompy.ShapeType["EDGE"])
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print "number of Shells in box : ", len(subShellList)
print "number of Faces in box : ", len(subFaceList)
print "number of Edges in box : ", len(subEdgeList)
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### ---------------------------- SMESH --------------------------------------
# ---- create Hypothesis
print "-------------------------- create Hypothesis"
print "-------------------------- NumberOfSegments"
numberOfSegments = 10
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hypNbSeg = smesh.CreateHypothesis("NumberOfSegments", "libStdMeshersEngine.so")
hypNbSeg.SetNumberOfSegments(numberOfSegments)
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print hypNbSeg.GetName()
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print hypNbSeg.GetId()
print hypNbSeg.GetNumberOfSegments()
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smeshgui.SetName(salome.ObjectToID(hypNbSeg), "NumberOfSegments_10")
print "-------------------------- MaxElementArea"
maxElementArea = 500
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hypArea = smesh.CreateHypothesis("MaxElementArea", "libStdMeshersEngine.so")
hypArea.SetMaxElementArea(maxElementArea)
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print hypArea.GetName()
print hypArea.GetId()
print hypArea.GetMaxElementArea()
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smeshgui.SetName(salome.ObjectToID(hypArea), "MaxElementArea_500")
print "-------------------------- MaxElementVolume"
maxElementVolume = 500
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hypVolume = smesh.CreateHypothesis("MaxElementVolume", "libStdMeshersEngine.so")
hypVolume.SetMaxElementVolume(maxElementVolume)
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print hypVolume.GetName()
print hypVolume.GetId()
print hypVolume.GetMaxElementVolume()
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smeshgui.SetName(salome.ObjectToID(hypVolume), "MaxElementVolume_500")
# ---- create Algorithms
print "-------------------------- create Algorithms"
print "-------------------------- Regular_1D"
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regular1D = smesh.CreateHypothesis("Regular_1D", "libStdMeshersEngine.so")
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smeshgui.SetName(salome.ObjectToID(regular1D), "Wire Discretisation")
print "-------------------------- MEFISTO_2D"
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mefisto2D = smesh.CreateHypothesis("MEFISTO_2D", "libStdMeshersEngine.so")
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smeshgui.SetName(salome.ObjectToID(mefisto2D), "MEFISTO_2D")
print "-------------------------- NETGEN_3D"
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netgen3D = smesh.CreateHypothesis("NETGEN_3D", "libNETGENEngine.so")
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smeshgui.SetName(salome.ObjectToID(netgen3D), "NETGEN_3D")
# ---- init a Mesh with the boxe
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mesh = smesh.CreateMesh(box)
smeshgui.SetName(salome.ObjectToID(mesh), "MeshBox")
# ---- add hypothesis to the boxe
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print "-------------------------- add hypothesis to the box"
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mesh.AddHypothesis(box,regular1D)
mesh.AddHypothesis(box,hypNbSeg)
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mesh.AddHypothesis(box,mefisto2D)
mesh.AddHypothesis(box,hypArea)
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mesh.AddHypothesis(box,netgen3D)
mesh.AddHypothesis(box,hypVolume)
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salome.sg.updateObjBrowser(1)
print "-------------------------- compute the mesh of the boxe"
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ret = smesh.Compute(mesh,box)
print ret
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if ret != 0:
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log = mesh.GetLog(0) # no erase trace
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for linelog in log:
print linelog
print "Information about the MeshBox:"
print "Number of nodes : ", mesh.NbNodes()
print "Number of edges : ", mesh.NbEdges()
print "Number of faces : ", mesh.NbFaces()
print "Number of triangles : ", mesh.NbTriangles()
print "Number of volumes : ", mesh.NbVolumes()
print "Number of tetrahedrons: ", mesh.NbTetras()
else:
print "probleme when computing the mesh"