521 lines
13 KiB
C
521 lines
13 KiB
C
/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | foam-extend: Open Source CFD
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\\ / O peration | Version: 3.2
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\\ / A nd | Web: http://www.foam-extend.org
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\\/ M anipulation | For copyright notice see file Copyright
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-------------------------------------------------------------------------------
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License
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This file is part of foam-extend.
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foam-extend is free software: you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by the
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Free Software Foundation, either version 3 of the License, or (at your
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option) any later version.
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foam-extend is distributed in the hope that it will be useful, but
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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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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with foam-extend. If not, see <http://www.gnu.org/licenses/>.
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Description
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Selects a section of mesh based on a cellSet.
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The utility sub-sets the mesh to choose only a part of interest. Check
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the setSet/cellSet utilities to see how to select cells based on various.
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The mesh will subset all points, faces and cells needed to make a sub-mesh
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but will not preserve attached boundary types.
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\*---------------------------------------------------------------------------*/
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#include "fvMeshSubset.H"
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#include "argList.H"
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#include "cellSet.H"
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#include "IOobjectList.H"
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#include "volFields.H"
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using namespace Foam;
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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template<class Type>
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void subsetVolFields
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(
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const fvMeshSubset& meshSubset,
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const wordList& fieldNames,
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PtrList<GeometricField<Type, fvPatchField, volMesh> >& subFields
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)
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{
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const fvMesh& baseMesh = meshSubset.baseMesh();
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forAll(fieldNames, i)
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{
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const word& fieldName = fieldNames[i];
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Info<< "Subsetting field " << fieldName << endl;
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GeometricField<Type, fvPatchField, volMesh> fld
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(
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IOobject
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(
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fieldName,
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baseMesh.time().timeName(),
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baseMesh,
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IOobject::MUST_READ,
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IOobject::NO_WRITE
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),
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baseMesh
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);
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subFields.set(i, meshSubset.interpolate(fld));
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}
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}
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template<class Type>
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void subsetSurfaceFields
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(
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const fvMeshSubset& meshSubset,
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const wordList& fieldNames,
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PtrList<GeometricField<Type, fvsPatchField, surfaceMesh> >& subFields
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)
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{
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const fvMesh& baseMesh = meshSubset.baseMesh();
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forAll(fieldNames, i)
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{
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const word& fieldName = fieldNames[i];
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Info<< "Subsetting field " << fieldName << endl;
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GeometricField<Type, fvsPatchField, surfaceMesh> fld
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(
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IOobject
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(
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fieldName,
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baseMesh.time().timeName(),
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baseMesh,
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IOobject::MUST_READ,
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IOobject::NO_WRITE
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),
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baseMesh
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);
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subFields.set(i, meshSubset.interpolate(fld));
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}
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}
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template<class Type>
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void subsetPointFields
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(
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const fvMeshSubset& meshSubset,
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const pointMesh& pMesh,
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const wordList& fieldNames,
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PtrList<GeometricField<Type, pointPatchField, pointMesh> >& subFields
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)
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{
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const fvMesh& baseMesh = meshSubset.baseMesh();
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forAll(fieldNames, i)
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{
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const word& fieldName = fieldNames[i];
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Info<< "Subsetting field " << fieldName << endl;
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GeometricField<Type, pointPatchField, pointMesh> fld
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(
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IOobject
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(
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fieldName,
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baseMesh.time().timeName(),
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baseMesh,
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IOobject::MUST_READ,
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IOobject::NO_WRITE
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),
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pMesh
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);
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subFields.set(i, meshSubset.interpolate(fld));
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}
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}
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// Main program:
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int main(int argc, char *argv[])
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{
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argList::validArgs.append("set");
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argList::validOptions.insert("patch", "patch name");
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argList::validOptions.insert("overwrite", "");
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# include "setRootCase.H"
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# include "createTime.H"
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runTime.functionObjects().off();
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# include "createMesh.H"
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const word oldInstance = mesh.pointsInstance();
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word setName(args.additionalArgs()[0]);
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bool overwrite = args.optionFound("overwrite");
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Info<< "Reading cell set from " << setName << endl << endl;
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// Create mesh subsetting engine
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fvMeshSubset meshSubset
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(
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IOobject
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(
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"set",
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runTime.timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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mesh
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);
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label patchI = -1;
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if (args.optionFound("patch"))
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{
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word patchName(args.option("patch"));
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patchI = mesh.boundaryMesh().findPatchID(patchName);
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if (patchI == -1)
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{
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FatalErrorIn(args.executable()) << "Illegal patch " << patchName
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<< nl << "Valid patches are " << mesh.boundaryMesh().names()
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<< exit(FatalError);
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}
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Info<< "Adding exposed internal faces to patch " << patchName << endl
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<< endl;
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}
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else
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{
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Info<< "Adding exposed internal faces to a patch called"
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<< " \"oldInternalFaces\" (created if necessary)" << endl
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<< endl;
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}
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cellSet currentSet(mesh, setName);
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meshSubset.setLargeCellSubset(currentSet, patchI, true);
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IOobjectList objects(mesh, runTime.timeName());
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// Read vol fields and subset
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~
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wordList scalarNames(objects.names(volScalarField::typeName));
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PtrList<volScalarField> scalarFlds(scalarNames.size());
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subsetVolFields(meshSubset, scalarNames, scalarFlds);
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wordList vectorNames(objects.names(volVectorField::typeName));
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PtrList<volVectorField> vectorFlds(vectorNames.size());
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subsetVolFields(meshSubset, vectorNames, vectorFlds);
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wordList sphericalTensorNames
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(
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objects.names(volSphericalTensorField::typeName)
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);
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PtrList<volSphericalTensorField> sphericalTensorFlds
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(
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sphericalTensorNames.size()
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);
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subsetVolFields(meshSubset, sphericalTensorNames, sphericalTensorFlds);
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wordList symmTensorNames(objects.names(volSymmTensorField::typeName));
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PtrList<volSymmTensorField> symmTensorFlds(symmTensorNames.size());
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subsetVolFields(meshSubset, symmTensorNames, symmTensorFlds);
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wordList tensorNames(objects.names(volTensorField::typeName));
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PtrList<volTensorField> tensorFlds(tensorNames.size());
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subsetVolFields(meshSubset, tensorNames, tensorFlds);
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// Read surface fields and subset
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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wordList surfScalarNames(objects.names(surfaceScalarField::typeName));
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PtrList<surfaceScalarField> surfScalarFlds(surfScalarNames.size());
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subsetSurfaceFields(meshSubset, surfScalarNames, surfScalarFlds);
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wordList surfVectorNames(objects.names(surfaceVectorField::typeName));
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PtrList<surfaceVectorField> surfVectorFlds(surfVectorNames.size());
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subsetSurfaceFields(meshSubset, surfVectorNames, surfVectorFlds);
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wordList surfSphericalTensorNames
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(
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objects.names(surfaceSphericalTensorField::typeName)
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);
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PtrList<surfaceSphericalTensorField> surfSphericalTensorFlds
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(
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surfSphericalTensorNames.size()
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);
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subsetSurfaceFields
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(
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meshSubset,
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surfSphericalTensorNames,
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surfSphericalTensorFlds
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);
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wordList surfSymmTensorNames
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(
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objects.names(surfaceSymmTensorField::typeName)
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);
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PtrList<surfaceSymmTensorField> surfSymmTensorFlds
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(
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surfSymmTensorNames.size()
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);
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subsetSurfaceFields(meshSubset, surfSymmTensorNames, surfSymmTensorFlds);
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wordList surfTensorNames(objects.names(surfaceTensorField::typeName));
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PtrList<surfaceTensorField> surfTensorFlds(surfTensorNames.size());
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subsetSurfaceFields(meshSubset, surfTensorNames, surfTensorFlds);
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// Read point fields and subset
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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const pointMesh& pMesh = pointMesh::New(mesh);
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wordList pointScalarNames(objects.names(pointScalarField::typeName));
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PtrList<pointScalarField> pointScalarFlds(pointScalarNames.size());
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subsetPointFields(meshSubset, pMesh, pointScalarNames, pointScalarFlds);
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wordList pointVectorNames(objects.names(pointVectorField::typeName));
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PtrList<pointVectorField> pointVectorFlds(pointVectorNames.size());
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subsetPointFields(meshSubset, pMesh, pointVectorNames, pointVectorFlds);
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wordList pointSphericalTensorNames
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(
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objects.names(pointSphericalTensorField::typeName)
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);
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PtrList<pointSphericalTensorField> pointSphericalTensorFlds
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(
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pointSphericalTensorNames.size()
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);
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subsetPointFields
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(
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meshSubset,
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pMesh,
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pointSphericalTensorNames,
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pointSphericalTensorFlds
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);
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wordList pointSymmTensorNames
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(
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objects.names(pointSymmTensorField::typeName)
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);
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PtrList<pointSymmTensorField> pointSymmTensorFlds
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(
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pointSymmTensorNames.size()
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);
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subsetPointFields
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(
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meshSubset,
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pMesh,
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pointSymmTensorNames,
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pointSymmTensorFlds
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);
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wordList pointTensorNames(objects.names(pointTensorField::typeName));
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PtrList<pointTensorField> pointTensorFlds(pointTensorNames.size());
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subsetPointFields(meshSubset, pMesh, pointTensorNames, pointTensorFlds);
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// Write mesh and fields to new time
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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if (!overwrite)
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{
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runTime++;
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}
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else
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{
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meshSubset.subMesh().setInstance(oldInstance);
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}
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Info<< "Writing subsetted mesh and fields to time " << runTime.timeName()
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<< endl;
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meshSubset.subMesh().write();
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// Write out mesh mapping information
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labelIOList pointMap
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(
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IOobject
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(
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"pointMap",
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meshSubset.subMesh().dbDir(),
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polyMesh::meshSubDir,
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meshSubset.subMesh(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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meshSubset.pointMap()
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);
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pointMap.write();
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labelIOList faceMap
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(
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IOobject
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(
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"faceMap",
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meshSubset.subMesh().dbDir(),
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polyMesh::meshSubDir,
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meshSubset.subMesh(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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meshSubset.faceMap()
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);
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faceMap.write();
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labelIOList cellMap
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(
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IOobject
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(
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"cellMap",
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meshSubset.subMesh().dbDir(),
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polyMesh::meshSubDir,
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meshSubset.subMesh(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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meshSubset.cellMap()
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);
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cellMap.write();
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labelIOList patchMap
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(
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IOobject
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(
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"patchMap",
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meshSubset.subMesh().dbDir(),
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polyMesh::meshSubDir,
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meshSubset.subMesh(),
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IOobject::NO_READ,
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IOobject::NO_WRITE
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),
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meshSubset.patchMap()
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);
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patchMap.write();
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// Subsetting adds 'subset' prefix. Rename field to be like original.
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forAll(scalarFlds, i)
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{
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scalarFlds[i].rename(scalarNames[i]);
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scalarFlds[i].write();
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}
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forAll(vectorFlds, i)
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{
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vectorFlds[i].rename(vectorNames[i]);
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vectorFlds[i].write();
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}
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forAll(sphericalTensorFlds, i)
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{
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sphericalTensorFlds[i].rename(sphericalTensorNames[i]);
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sphericalTensorFlds[i].write();
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}
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forAll(symmTensorFlds, i)
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{
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symmTensorFlds[i].rename(symmTensorNames[i]);
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symmTensorFlds[i].write();
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}
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forAll(tensorFlds, i)
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{
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tensorFlds[i].rename(tensorNames[i]);
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tensorFlds[i].write();
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}
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// Surface ones.
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forAll(surfScalarFlds, i)
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{
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surfScalarFlds[i].rename(surfScalarNames[i]);
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surfScalarFlds[i].write();
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}
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forAll(surfVectorFlds, i)
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{
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surfVectorFlds[i].rename(surfVectorNames[i]);
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surfVectorFlds[i].write();
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}
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forAll(surfSphericalTensorFlds, i)
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{
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surfSphericalTensorFlds[i].rename(surfSphericalTensorNames[i]);
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surfSphericalTensorFlds[i].write();
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}
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forAll(surfSymmTensorFlds, i)
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{
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surfSymmTensorFlds[i].rename(surfSymmTensorNames[i]);
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surfSymmTensorFlds[i].write();
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}
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forAll(surfTensorNames, i)
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{
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surfTensorFlds[i].rename(surfTensorNames[i]);
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surfTensorFlds[i].write();
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}
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// Point ones
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forAll(pointScalarFlds, i)
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{
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pointScalarFlds[i].rename(pointScalarNames[i]);
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pointScalarFlds[i].write();
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}
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forAll(pointVectorFlds, i)
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{
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pointVectorFlds[i].rename(pointVectorNames[i]);
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pointVectorFlds[i].write();
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}
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forAll(pointSphericalTensorFlds, i)
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{
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pointSphericalTensorFlds[i].rename(pointSphericalTensorNames[i]);
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pointSphericalTensorFlds[i].write();
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}
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forAll(pointSymmTensorFlds, i)
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{
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pointSymmTensorFlds[i].rename(pointSymmTensorNames[i]);
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pointSymmTensorFlds[i].write();
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}
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forAll(pointTensorNames, i)
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{
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pointTensorFlds[i].rename(pointTensorNames[i]);
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pointTensorFlds[i].write();
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}
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Info << nl << "End" << endl;
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return 0;
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}
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// ************************************************************************* //
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