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Noms des algorithmes
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@ -233,8 +233,8 @@ class fissure_Coude(fissureGenerique):
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algo3d = maillageSain.Hexahedron()
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algo2d = maillageSain.Quadrangle()
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putName(algo3d, "algo3d_maillageSain", i_pref=self.numeroCas)
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putName(algo2d, "algo2d_maillageSain", i_pref=self.numeroCas)
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putName(algo3d, "{}_3d_maillageSain".format(self.mailleur), i_pref=self.numeroCas)
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putName(algo2d, "{}_2d_maillageSain".format(self.mailleur), i_pref=self.numeroCas)
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algo1d_long_p1 = maillageSain.Segment(geom=long_p1)
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hypo1d_long_p1 = algo1d_long_p1.NumberOfSegments(n_long_p1)
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@ -78,7 +78,7 @@ def construitFissureGenerale_c(maillageSain, meshBoiteDefaut, \
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hypo3d.SetStandardOutputLog( 0 )
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hypo3d.SetRemoveLogOnSuccess( 1 )
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putName(algo3d.GetSubMesh(), "boiteDefaut", i_pref=nro_cas)
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putName(algo3d, "algo3d_boiteDefaut", i_pref=nro_cas)
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putName(algo3d, "{}_3d_boiteDefaut".format(mailleur), i_pref=nro_cas)
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is_done = meshBoiteDefaut.Compute()
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text = "meshBoiteDefaut.Compute"
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@ -263,8 +263,8 @@ class fissureCoude(fissureGenerique):
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algo3d = maillageSain.Hexahedron()
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algo2d = maillageSain.Quadrangle()
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putName(algo3d, "algo3d_maillageSain", i_pref=self.numeroCas)
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putName(algo2d, "algo2d_maillageSain", i_pref=self.numeroCas)
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putName(algo3d, "{}_3d_maillageSain".format(self.mailleur2d3d()), i_pref=self.numeroCas)
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putName(algo2d, "{}_2d_maillageSain".format(self.mailleur2d3d()), i_pref=self.numeroCas)
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algo1d_long_p1 = maillageSain.Segment(geom=long_p1)
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hypo1d_long_p1 = algo1d_long_p1.NumberOfSegments(n_long_p1)
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@ -76,7 +76,7 @@ def genereMeshCalculZoneDefaut(facefiss, minSize, maxSize, \
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hypo2d.SetFineness( 2 )
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hypo2d.SetMinSize( minSize )
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hypo2d.SetQuadAllowed( 0 )
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putName(algo2d, "algo2d_zoneFiss", i_pref=nro_cas)
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putName(algo2d, "{}_2d_zoneFiss".format(mailleur), i_pref=nro_cas)
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putName(hypo2d, "hypo1d_zoneFiss", i_pref=nro_cas)
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is_done = meshFissure.Compute()
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@ -48,13 +48,13 @@ def insereFissureLongue_c (pipeFondFiss, disques, rayons, demiCercles, demiCercl
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algo2d = meshFondFiss.Quadrangle(algo=smeshBuilder.QUADRANGLE)
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algo3d = meshFondFiss.Prism()
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putName(algo3d.GetSubMesh(), "pipe", i_pref=nro_cas)
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putName(algo3d, "algo3d_pipe", i_pref=nro_cas)
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putName(algo2d, "algo2d_pipe", i_pref=nro_cas)
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putName(algo3d, "{}_3d_pipe".format(mailleur), i_pref=nro_cas)
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putName(algo2d, "{}_2d_pipe".format(mailleur), i_pref=nro_cas)
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for i_aux, face in enumerate(disques):
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algo2d = meshFondFiss.Quadrangle(algo=smeshBuilder.RADIAL_QUAD,geom=face)
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putName(algo2d.GetSubMesh(), "disque", i_aux, nro_cas)
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putName(algo2d, "algo2d_disque", i_aux, nro_cas)
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putName(algo2d, "{}_2d_disque".format(mailleur), i_aux, nro_cas)
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for i_aux, edge in enumerate(rayons):
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algo1d = meshFondFiss.Segment(geom=edge)
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@ -58,7 +58,7 @@ def insereFissureLongue_d (facePeau, edgePeauFiss, groupEdgesBordPeau, bordsLibr
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hypo2d.SetMinSize( 2 )
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hypo2d.SetQuadAllowed( 0 )
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putName(algo2d.GetSubMesh(), "facePeau", i_pref=nro_cas)
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putName(algo2d, "algo2d_facePeau", i_pref=nro_cas)
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putName(algo2d, "{}_2d_facePeau".format(mailleur), i_pref=nro_cas)
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putName(hypo2d, "hypo2d_facePeau", i_pref=nro_cas)
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#
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lenEdgePeauFiss = geompy.BasicProperties(edgePeauFiss)[0]
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@ -58,7 +58,7 @@ def insereFissureLongue_e (faceFiss, edgePeauFiss, groupEdgesPeauFiss, group_gen
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hypo2d.SetMinSize( 2 )
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hypo2d.SetQuadAllowed( 0 )
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putName(algo2d.GetSubMesh(), "faceFiss", i_pref=nro_cas)
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putName(algo2d, "algo2d_faceFiss", i_pref=nro_cas)
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putName(algo2d, "{}_2d_faceFiss".format(mailleur), i_pref=nro_cas)
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putName(hypo2d, "hypo2d_faceFiss", i_pref=nro_cas)
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#
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algo1d = meshFaceFiss.UseExisting1DElements(geom=edgePeauFiss)
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@ -66,7 +66,7 @@ def insereFissureLongue_f (internalBoundary, meshFondFiss, meshFacePeau, meshFac
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hypo3d.SetStandardOutputLog( 0 )
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hypo3d.SetRemoveLogOnSuccess( 1 )
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putName(algo3d.GetSubMesh(), "boiteDefaut", i_pref=nro_cas)
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putName(algo3d, "algo3d_boiteDefaut", i_pref=nro_cas)
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putName(algo3d, "{}_3d_boiteDefaut".format(mailleur), i_pref=nro_cas)
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putName(meshBoiteDefaut, "boiteDefaut", i_pref=nro_cas)
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is_done = meshBoiteDefaut.Compute()
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@ -54,9 +54,10 @@ def mailleFacesFissure(faceFissureExterne, \
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hypo2d.SetOptimize( 1 )
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hypo2d.SetFineness( 2 )
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hypo2d.SetMinSize( rayonPipe/float(nbsegRad) )
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hypo2d.SetChordalError( areteFaceFissure*0.25 )
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hypo2d.SetQuadAllowed( 0 )
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putName(algo2d.GetSubMesh(), "faceFiss", i_pref=nro_cas)
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putName(algo2d, "algo2d_faceFiss", i_pref=nro_cas)
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putName(algo2d, "{}_2d_faceFiss".format(mailleur), i_pref=nro_cas)
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putName(hypo2d, "hypo2d_faceFiss", i_pref=nro_cas)
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texte = "Récupération des arêtes de '{}'".format(edgesPipeFissureExterneC.GetName())
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@ -63,7 +63,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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hypo2d.LengthFromEdges()
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hypo2d.SetAllowQuadrangles(0)
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putName(algo2d.GetSubMesh(), "sharedFaces", i_aux, nro_cas)
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putName(algo2d, "algo2d_sharedFaces", i_aux, nro_cas)
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putName(algo2d, "{}_2d_sharedFaces".format(mailleur), i_aux, nro_cas)
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putName(hypo2d, "hypo2d_sharedFaces", i_aux, nro_cas)
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for i_aux, sharedEdges_i in enumerate(sharedEdges):
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@ -78,7 +78,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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algo3d = bloc1.Tetrahedron(algo=smeshBuilder.NETGEN,geom=ellipsoidep)
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hypo3d = algo3d.MaxElementVolume(1000.0)
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putName(algo3d.GetSubMesh(), "ellipsoide", i_pref=nro_cas)
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putName(algo3d, "algo3d_ellipsoide", i_pref=nro_cas)
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putName(algo3d, "{}_3d_ellipsoide".format(mailleur), i_pref=nro_cas)
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putName(hypo3d, "hypo3d_ellipsoide", i_pref=nro_cas)
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algo3d = bloc1.Prism(geom=tore)
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@ -86,8 +86,8 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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algo1d = bloc1.Segment(geom=tore)
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hypo1d = algo1d.NumberOfSegments(nbsegGen)
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putName(algo3d.GetSubMesh(), "tore", i_pref=nro_cas)
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putName(algo3d, "algo3d_tore", i_pref=nro_cas)
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putName(algo2d, "algo2d_tore", i_pref=nro_cas)
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putName(algo3d, "{}_3d_tore".format(mailleur), i_pref=nro_cas)
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putName(algo2d, "{}_2d_tore".format(mailleur), i_pref=nro_cas)
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putName(algo1d, "algo1d_tore", i_pref=nro_cas)
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putName(hypo1d, "hypo1d_tore", i_pref=nro_cas)
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@ -98,7 +98,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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hypo2d.SetQuadType( StdMeshersBuilder.QUAD_STANDARD )
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_ = bloc1.AddHypothesis(hypo2d,faces_i)
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putName(algo2d.GetSubMesh(), "faces", i_aux, nro_cas)
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putName(algo2d, "algo2d_faces", i_aux, nro_cas)
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putName(algo2d, "{}_2d_faces".format(mailleur), i_aux, nro_cas)
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putName(hypo2d, "hypo2d_faces", i_aux, nro_cas)
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for i_aux, edges_i in enumerate(edges):
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@ -152,7 +152,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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algo2d = bloc1.Triangle(algo=smeshBuilder.NETGEN_2D, geom=facefissoutore)
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hypo2d = algo2d.LengthFromEdges()
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putName(algo2d.GetSubMesh(), "facefissoutore", i_pref=nro_cas)
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putName(algo2d, "algo2d_facefissoutore", i_pref=nro_cas)
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putName(algo2d, "{}_2d_facefissoutore".format(mailleur), i_pref=nro_cas)
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putName(hypo2d, "hypo2d_facefissoutore", i_pref=nro_cas)
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@ -166,7 +166,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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algo1d = bloc1.Segment(geom=facesExternes_i)
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hypo1d = algo1d.NumberOfSegments(1)
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putName(algo2d.GetSubMesh(), "facesExternes", i_aux, nro_cas)
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putName(algo2d, "algo2d_facesExternes", i_aux, nro_cas)
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putName(algo2d, "{}2d_facesExternes".format(mailleur), i_aux, nro_cas)
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putName(hypo2d, "hypo2d_facesExternes", i_aux, nro_cas)
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if edgesBords is None:
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putName(algo1d, "algo1d_facesExternes", i_aux, nro_cas)
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@ -190,7 +190,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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algo3d = bloc1.Tetrahedron(algo=smeshBuilder.NETGEN,geom=ellipsoidep)
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hypo3d = algo3d.MaxElementVolume(1000.0)
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putName(algo3d.GetSubMesh(), "ellipsoide", i_pref=nro_cas)
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putName(algo3d, "algo3d_ellipsoide", i_pref=nro_cas)
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putName(algo3d, "{}_3d_ellipsoide".format(mailleur), i_pref=nro_cas)
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putName(hypo3d, "hypo3d_ellipsoide", i_pref=nro_cas)
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_ = bloc1.GroupOnGeom(faceFissure,'FACE1',SMESH.FACE)
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@ -232,7 +232,7 @@ def meshBlocPart(blocPartition, faceFissure, tore, centres, edges, diams, circle
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algo3d = blocMesh.Tetrahedron(algo=smeshBuilder.NETGEN)
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hypo3d = algo3d.MaxElementVolume(1000.0)
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putName(algo3d.GetSubMesh(), "bloc", i_pref=nro_cas)
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putName(algo3d, "algo3d_bloc", i_pref=nro_cas)
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putName(algo3d, "{}_3d_bloc".format(mailleur), i_pref=nro_cas)
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putName(hypo3d, "hypo3d_bloc", i_pref=nro_cas)
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is_done = blocMesh.Compute()
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