206 lines
7.3 KiB
XML
206 lines
7.3 KiB
XML
<?xml version='1.0' encoding='us-ascii'?>
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<!DOCTYPE meshers PUBLIC "" "desktop.dtd">
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<!--
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Copyright (C) 2007-2016 CEA/DEN, EDF R&D, OPEN CASCADE
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Copyright (C) 2003-2007 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
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CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
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-->
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<!-- GUI customization for MESH component -->
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<meshers>
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<meshers-group name ="NETGEN"
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resources ="NETGENPlugin"
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idl-module="NETGENPlugin"
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server-lib="NETGENEngine"
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gui-lib ="NETGENPluginGUI">
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<hypotheses>
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<hypothesis type ="NETGEN_Parameters"
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label-id="NETGEN 3D Parameters"
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icon-id ="mesh_hypo_netgen.png"
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dim ="3">
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<python-wrap>
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<accumulative-methods>
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SetLocalSizeOnShape,
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UnsetLocalSizeOnEntry
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</accumulative-methods>
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</python-wrap>
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</hypothesis>
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<hypothesis type ="NETGEN_Parameters_2D"
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label-id="NETGEN 2D Parameters"
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icon-id ="mesh_hypo_netgen_2d.png"
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dim ="2">
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<python-wrap>
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<accumulative-methods>
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SetLocalSizeOnShape,
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UnsetLocalSizeOnEntry
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</accumulative-methods>
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</python-wrap>
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</hypothesis>
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<hypothesis type ="NETGEN_Parameters_3D"
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label-id="NETGEN 3D Parameters"
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icon-id ="mesh_hypo_netgen.png"
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dim ="3">
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<python-wrap>
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<accumulative-methods>
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SetLocalSizeOnShape,
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UnsetLocalSizeOnEntry
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</accumulative-methods>
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</python-wrap>
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</hypothesis>
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<hypothesis type ="NETGEN_Parameters_2D_ONLY"
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label-id="NETGEN 2D Parameters"
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icon-id ="mesh_hypo_netgen_2d.png"
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dim ="2">
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<python-wrap>
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<accumulative-methods>
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SetLocalSizeOnShape,
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UnsetLocalSizeOnEntry
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</accumulative-methods>
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</python-wrap>
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</hypothesis>
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<hypothesis type ="NETGEN_RemesherParameters_2D"
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label-id="NETGEN 2D Parameters"
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icon-id ="mesh_hypo_netgen_2d.png"
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dim ="2"/>
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<hypothesis type ="NETGEN_SimpleParameters_2D"
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label-id="NETGEN 2D Simple Parameters"
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icon-id ="mesh_hypo_netgen_2d.png"
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dim ="2"/>
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<hypothesis type ="NETGEN_SimpleParameters_3D"
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label-id="NETGEN 3D Simple Parameters"
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icon-id ="mesh_hypo_netgen.png"
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dim ="3"/>
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</hypotheses>
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<algorithms>
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<algorithm type ="NETGEN_3D"
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label-id ="NETGEN 3D"
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icon-id ="mesh_algo_tetra.png"
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group-id ="1"
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priority ="20"
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hypos ="MaxElementVolume,NETGEN_Parameters_3D"
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opt-hypos="ViscousLayers"
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need-geom="false"
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input ="TRIA,QUAD"
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output ="TETRA,PYRAMID"
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dim ="3">
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<python-wrap>
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<algo>NETGEN_3D=Tetrahedron()</algo>
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<hypo>MaxElementVolume=MaxElementVolume(SetMaxElementVolume())</hypo>
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<hypo>NETGEN_Parameters_3D=Parameters()</hypo>
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<hypo>ViscousLayers=ViscousLayers(SetTotalThickness(),SetNumberLayers(),SetStretchFactor(),SetFaces(1),SetFaces(2),SetMethod())</hypo>
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</python-wrap>
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</algorithm>
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<algorithm type ="NETGEN_2D_ONLY"
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label-id ="NETGEN 2D"
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icon-id ="mesh_algo_netgen_2d.png"
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group-id ="1"
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priority ="20"
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hypos ="LengthFromEdges,MaxElementArea,NETGEN_Parameters_2D_ONLY"
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opt-hypos="QuadranglePreference,ViscousLayers2D"
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input ="EDGE"
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output ="TRIA,QUAD"
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dim ="2">
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<python-wrap>
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<algo>NETGEN_2D_ONLY=Triangle(algo=smeshBuilder.NETGEN_2D)</algo>
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<hypo>LengthFromEdges=LengthFromEdges()</hypo>
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<hypo>MaxElementArea=MaxElementArea(SetMaxElementArea())</hypo>
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<hypo>NETGEN_Parameters_2D_ONLY=Parameters()</hypo>
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<hypo>QuadranglePreference=SetQuadAllowed()</hypo>
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<hypo>ViscousLayers2D=ViscousLayers2D(SetTotalThickness(),SetNumberLayers(),SetStretchFactor(),SetIgnoreEdges())</hypo>
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</python-wrap>
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</algorithm>
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<algorithm type ="NETGEN_2D"
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label-id ="NETGEN 1D-2D"
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icon-id ="mesh_algo_netgen_2d.png"
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group-id ="1"
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priority ="10"
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hypos ="NETGEN_Parameters_2D, NETGEN_SimpleParameters_2D"
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opt-hypos ="ViscousLayers2D"
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output ="TRIA,QUAD"
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dim ="2"
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support-submeshes="true">
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<python-wrap>
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<algo>NETGEN_2D=Triangle(algo=smeshBuilder.NETGEN_1D2D)</algo>
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<hypo>NETGEN_Parameters_2D=Parameters()</hypo>
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<hypo>NETGEN_SimpleParameters_2D=Parameters(smeshBuilder.SIMPLE)</hypo>
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<hypo>ViscousLayers2D=ViscousLayers2D(SetTotalThickness(),SetNumberLayers(),SetStretchFactor(),SetIgnoreEdges())</hypo>
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</python-wrap>
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</algorithm>
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<algorithm type ="NETGEN_2D3D"
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label-id ="NETGEN 1D-2D-3D"
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icon-id ="mesh_algo_netgen_2d3d.png"
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group-id ="1"
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priority ="10"
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hypos ="NETGEN_Parameters, NETGEN_SimpleParameters_3D"
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opt-hypos ="ViscousLayers"
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output ="TETRA,PYRAMID"
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dim ="3"
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support-submeshes="true">
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<python-wrap>
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<algo>NETGEN_2D3D=Tetrahedron(algo=smeshBuilder.NETGEN_1D2D3D)</algo>
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<hypo>NETGEN_Parameters=Parameters()</hypo>
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<hypo>NETGEN_SimpleParameters_3D=Parameters(smeshBuilder.SIMPLE)</hypo>
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<hypo>ViscousLayers=ViscousLayers(SetTotalThickness(),SetNumberLayers(),SetStretchFactor(),SetFaces(1),SetFaces(2),SetMethod())</hypo>
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</python-wrap>
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</algorithm>
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<algorithm type ="NETGEN_Remesher_2D"
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label-id ="NETGEN 2D"
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icon-id ="mesh_algo_netgen_2d.png"
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opt-hypos ="NETGEN_RemesherParameters_2D"
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output ="TRIA,QUAD"
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need-geom ="never"
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dim ="2">
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<python-wrap>
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<algo>NETGEN_Remesher_2D=Triangle(algo=smeshBuilder.NETGEN)</algo>
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<hypo>NETGEN_RemesherParameters_2D=Parameters()</hypo>
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</python-wrap>
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</algorithm>
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</algorithms>
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</meshers-group>
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<hypotheses-set-group>
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<hypotheses-set name ="Automatic Tetrahedralization"
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hypos="NETGEN_Parameters"
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algos="NETGEN_2D3D"/>
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<hypotheses-set name ="Automatic Triangulation"
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hypos="NETGEN_Parameters_2D"
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algos="NETGEN_2D"/>
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</hypotheses-set-group>
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</meshers>
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