geom/src/GEOM_SWIG/GEOM_Partition5.py

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# GEOM GEOM_SWIG : binding of C++ omplementaion with Python
#
# Copyright (C) 2003 CEA/DEN, EDF R&D
#
#
#
# File : GEOM_Partition5.py
# Module : GEOM
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#%Make geometry (like CEA script (A4)) using Partition algorithm%
# import gallery_01_GEOM
# reload(gallery_01_GEOM)
# -- Import geompy pour piloter GEOM par script
import geompy
geom = geompy.geom
# -- Dimensions de la boite enti<74>re
LX, LY, LZ = 300.0, 150.0, 150.0
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p0 = geompy.MakeVertex(0.,0.,0.)
vy = geompy.MakeVectorDXDYDZ(0.,1.,0.)
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# -- D<>finition du plan de sym<79>trie (O,Ox,Oz)
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symPlane = geompy.MakePlane(p0, vy, 10.0)
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# -- bo
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bo = geompy.MakeBoxDXDYDZ(LX, LY, LZ)
bo = geompy.MakeTranslation(bo, 0.0, -LY/2, -LZ/2)
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# -- Galerie principale
gal_diam = 80.0
gal_lony = LY
gal_x = LX-20.0-gal_diam/2
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gal = geompy.MakeCylinder(p0, vy, gal_diam/2, gal_lony)
gal = geompy.MakeTranslation(gal, gal_x, -gal_lony/2, 0.0)
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# -- Galerie perpendiculaire
# -- Dimensions de la galerie perpendiculaire
# -- La longueur est compt<70>e <20> partir du centre
# -- de la galerie principale
gpe_long, gpe_diam = 200.0, 60.0
gpe_x = gal_x
gpe = geompy.MakeCylinder(
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p0,
geompy.MakeVectorDXDYDZ(-1.,0.,0.),
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gpe_diam/2,gpe_long)
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gpe = geompy.MakeTranslation(gpe, gpe_x, 0, 0)
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# -- Dimensions d'une alveole
# -- Construction d'une alv<6C>ole
alv_long, alv_diam = 60.0, 18.0
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alv01 = geompy.MakeCylinder(p0, vy, alv_diam/2, alv_long)
alv02 = geompy.MakeMirrorByPlane(alv01, symPlane)
alv0 = geompy.MakeCompound([alv01, alv02])
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# -- Construction des alv<6C>oles
alv_del, alv_sep = 40.0, 35.0
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alv1 = geompy.MakeTranslation(alv0, gal_x-gal_diam/2-alv_sep, 0.0, 0.0)
alv2 = geompy.MakeTranslation(alv1, -alv_del, 0.0, 0.0 )
alv3 = geompy.MakeTranslation(alv2, -alv_del, 0.0, 0.0 )
alv = geompy.MakeCompound([alv1, alv2, alv3])
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# -- Remplissage de la BO
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gallery = geompy.MakePartition([alv, bo], [], [], [gal, gpe])
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subshapes = geompy.SubShapeAll(gallery, geompy.ShapeType["SHAPE"])
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alvGOs = []
alvGOs.append(subshapes[0])
alvGOs.append(subshapes[1])
alvGOs.append(subshapes[2])
alvGOs.append(subshapes[3])
alvGOs.append(subshapes[4])
alvGOs.append(subshapes[5])
alvcomp = geompy.MakeCompound(alvGOs)
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boGO = subshapes[6]
galGO = subshapes[7]
gpeGO = subshapes[8]
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gallery = geompy.MakeCompound([boGO, alvcomp, gpeGO, galGO])
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geompy.addToStudy(gallery,"Gallery 2")