mirror of
https://develop.openfoam.com/Development/openfoam.git
synced 2025-11-28 03:28:01 +00:00
ENH: checkMesh: output vol fields of mesh quality. Fixes #466.
This commit is contained in:
@ -1,3 +1,4 @@
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writeFields.C
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checkTools.C
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checkTopology.C
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checkGeometry.C
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@ -3,7 +3,7 @@
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration |
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\\ / A nd | Copyright (C) 2011-2016 OpenFOAM Foundation
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\\/ M anipulation | Copyright (C) 2015 OpenCFD Ltd.
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\\/ M anipulation | Copyright (C) 2015-2017 OpenCFD Ltd.
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-------------------------------------------------------------------------------
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License
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This file is part of OpenFOAM.
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@ -57,12 +57,18 @@ Usage
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Reconstruct all cellSets and faceSets geometry and write to postProcessing/
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directory according to surfaceFormat (e.g. vtk or ensight)
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\param -writeAllFields \n
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Writes all mesh quality measures as fields.
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\param -writeFields '(\<fieldName\>)' \n
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Writes selected mesh quality measures as fields.
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\*---------------------------------------------------------------------------*/
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#include "argList.H"
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#include "timeSelector.H"
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#include "Time.H"
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#include "polyMesh.H"
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#include "fvMesh.H"
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#include "globalMeshData.H"
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#include "surfaceWriter.H"
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#include "vtkSetWriter.H"
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@ -71,6 +77,7 @@ Usage
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#include "checkTopology.H"
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#include "checkGeometry.H"
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#include "checkMeshQuality.H"
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#include "writeFields.H"
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using namespace Foam;
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@ -96,6 +103,17 @@ int main(int argc, char *argv[])
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"include extra topology checks"
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);
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argList::addBoolOption
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(
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"writeAllFields",
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"write volFields with mesh quality parameters"
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);
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argList::addOption
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(
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"writeFields",
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"wordList"
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"write volFields with selected mesh quality parameters"
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);
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argList::addBoolOption
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(
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"meshQuality",
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"read user-defined mesh quality criterions from system/meshQualityDict"
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@ -110,7 +128,7 @@ int main(int argc, char *argv[])
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#include "setRootCase.H"
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#include "createTime.H"
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instantList timeDirs = timeSelector::select0(runTime, args);
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#include "createNamedPolyMesh.H"
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#include "createNamedMesh.H"
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const bool noTopology = args.optionFound("noTopology");
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const bool allGeometry = args.optionFound("allGeometry");
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@ -119,6 +137,24 @@ int main(int argc, char *argv[])
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word surfaceFormat;
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const bool writeSets = args.optionReadIfPresent("writeSets", surfaceFormat);
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HashSet<word> selectedFields;
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bool writeFields = args.optionReadIfPresent
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(
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"writeFields",
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selectedFields
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);
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if (!writeFields && args.optionFound("writeAllFields"))
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{
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selectedFields.insert("nonOrthoAngle");
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selectedFields.insert("faceWeight");
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selectedFields.insert("skewness");
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selectedFields.insert("cellDeterminant");
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selectedFields.insert("aspectRatio");
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selectedFields.insert("cellShapes");
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selectedFields.insert("cellVolume");
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selectedFields.insert("cellVolumeRatio");
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}
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if (noTopology)
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{
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@ -143,6 +179,11 @@ int main(int argc, char *argv[])
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<< " representation"
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<< " of all faceSets and cellSets." << nl << endl;
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}
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if (selectedFields.size())
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{
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Info<< "Writing mesh quality as fields " << selectedFields << nl
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<< endl;
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}
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autoPtr<IOdictionary> qualDict;
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@ -234,6 +275,10 @@ int main(int argc, char *argv[])
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Info<< "\nFailed " << nFailedChecks << " mesh checks.\n"
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<< endl;
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}
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// Write selected fields
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Foam::writeFields(mesh, selectedFields);
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}
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else if (state == polyMesh::POINTS_MOVED)
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{
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@ -262,6 +307,10 @@ int main(int argc, char *argv[])
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{
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Info<< "\nMesh OK.\n" << endl;
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}
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// Write selected fields
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Foam::writeFields(mesh, selectedFields);
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}
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}
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360
applications/utilities/mesh/manipulation/checkMesh/writeFields.C
Normal file
360
applications/utilities/mesh/manipulation/checkMesh/writeFields.C
Normal file
@ -0,0 +1,360 @@
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#include "writeFields.H"
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#include "volFields.H"
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#include "polyMeshTools.H"
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#include "zeroGradientFvPatchFields.H"
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#include "syncTools.H"
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using namespace Foam;
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void maxFaceToCell
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(
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const scalarField& faceData,
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volScalarField& cellData
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)
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{
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const cellList& cells = cellData.mesh().cells();
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scalarField& cellFld = cellData.ref();
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cellFld = -GREAT;
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forAll(cells, cellI)
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{
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const cell& cFaces = cells[cellI];
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forAll(cFaces, i)
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{
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cellFld[cellI] = max(cellFld[cellI], faceData[cFaces[i]]);
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}
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}
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forAll(cellData.boundaryField(), patchI)
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{
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fvPatchScalarField& fvp = cellData.boundaryFieldRef()[patchI];
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fvp = fvp.patch().patchSlice(faceData);
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}
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cellData.correctBoundaryConditions();
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}
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void minFaceToCell
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(
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const scalarField& faceData,
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volScalarField& cellData
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)
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{
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const cellList& cells = cellData.mesh().cells();
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scalarField& cellFld = cellData.ref();
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cellFld = GREAT;
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forAll(cells, cellI)
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{
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const cell& cFaces = cells[cellI];
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forAll(cFaces, i)
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{
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cellFld[cellI] = min(cellFld[cellI], faceData[cFaces[i]]);
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}
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}
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forAll(cellData.boundaryField(), patchI)
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{
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fvPatchScalarField& fvp = cellData.boundaryFieldRef()[patchI];
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fvp = fvp.patch().patchSlice(faceData);
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}
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cellData.correctBoundaryConditions();
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}
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void Foam::writeFields
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(
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const fvMesh& mesh,
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const HashSet<word>& selectedFields
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)
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{
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if (selectedFields.empty())
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{
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return;
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}
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Info<< "Writing fields with mesh quality parameters" << endl;
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if (selectedFields.found("nonOrthoAngle"))
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{
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//- Face based orthogonality
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const scalarField faceOrthogonality
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(
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polyMeshTools::faceOrthogonality
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(
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mesh,
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mesh.faceAreas(),
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mesh.cellCentres()
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)
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);
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//- Face based angle
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const scalarField nonOrthoAngle
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(
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radToDeg
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(
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Foam::acos(min(1.0, faceOrthogonality))
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)
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);
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//- Cell field - max of either face
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volScalarField cellNonOrthoAngle
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(
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IOobject
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(
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"nonOrthoAngle",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("angle", dimless, 0),
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calculatedFvPatchScalarField::typeName
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);
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//- Take max
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maxFaceToCell(nonOrthoAngle, cellNonOrthoAngle);
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Info<< " Writing non-orthogonality (angle) to "
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<< cellNonOrthoAngle.name() << endl;
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cellNonOrthoAngle.write();
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}
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if (selectedFields.found("faceWeight"))
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{
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const scalarField faceWeights
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(
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polyMeshTools::faceWeights
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(
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mesh,
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mesh.faceCentres(),
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mesh.faceAreas(),
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mesh.cellCentres()
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)
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);
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volScalarField cellWeights
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(
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IOobject
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(
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"faceWeight",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("weight", dimless, 0),
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calculatedFvPatchScalarField::typeName
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);
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//- Take min
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minFaceToCell(faceWeights, cellWeights);
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Info<< " Writing face interpolation weights (0..0.5) to "
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<< cellWeights.name() << endl;
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cellWeights.write();
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}
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// Skewness
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// ~~~~~~~~
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if (selectedFields.found("skewness"))
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{
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//- Face based skewness
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const scalarField faceSkewness
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(
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polyMeshTools::faceSkewness
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(
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mesh,
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mesh.points(),
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mesh.faceCentres(),
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mesh.faceAreas(),
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mesh.cellCentres()
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)
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);
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//- Cell field - max of either face
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volScalarField cellSkewness
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(
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IOobject
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(
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"skewness",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("skewness", dimless, 0),
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calculatedFvPatchScalarField::typeName
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);
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//- Take max
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maxFaceToCell(faceSkewness, cellSkewness);
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Info<< " Writing face skewness to " << cellSkewness.name() << endl;
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cellSkewness.write();
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}
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// cellDeterminant
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// ~~~~~~~~~~~~~~~
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if (selectedFields.found("cellDeterminant"))
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{
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volScalarField cellDeterminant
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(
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IOobject
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(
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"cellDeterminant",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE,
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false
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),
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mesh,
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dimensionedScalar("cellDeterminant", dimless, 0),
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zeroGradientFvPatchScalarField::typeName
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);
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cellDeterminant.primitiveFieldRef() =
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primitiveMeshTools::cellDeterminant
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(
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mesh,
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mesh.geometricD(),
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mesh.faceAreas(),
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syncTools::getInternalOrCoupledFaces(mesh)
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);
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cellDeterminant.correctBoundaryConditions();
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Info<< " Writing cell determinant to "
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<< cellDeterminant.name() << endl;
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cellDeterminant.write();
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}
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// Aspect ratio
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// ~~~~~~~~~~~~
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if (selectedFields.found("aspectRatio"))
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{
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volScalarField aspectRatio
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(
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IOobject
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(
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"aspectRatio",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE,
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false
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),
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mesh,
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dimensionedScalar("aspectRatio", dimless, 0),
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zeroGradientFvPatchScalarField::typeName
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);
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scalarField cellOpenness;
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polyMeshTools::cellClosedness
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(
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mesh,
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mesh.geometricD(),
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mesh.faceAreas(),
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mesh.cellVolumes(),
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cellOpenness,
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aspectRatio.ref()
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);
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aspectRatio.correctBoundaryConditions();
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Info<< " Writing aspect ratio to " << aspectRatio.name() << endl;
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aspectRatio.write();
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}
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// cell type
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// ~~~~~~~~~
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if (selectedFields.found("cellShapes"))
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{
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volScalarField shape
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(
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IOobject
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(
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"cellShapes",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE,
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false
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),
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mesh,
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dimensionedScalar("cellShapes", dimless, 0),
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zeroGradientFvPatchScalarField::typeName
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);
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const cellShapeList& cellShapes = mesh.cellShapes();
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forAll(cellShapes, cellI)
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{
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const cellModel& model = cellShapes[cellI].model();
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shape[cellI] = model.index();
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}
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shape.correctBoundaryConditions();
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Info<< " Writing cell shape (hex, tet etc.) to " << shape.name()
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<< endl;
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shape.write();
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}
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if (selectedFields.found("cellVolume"))
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{
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volScalarField V
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(
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IOobject
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(
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"cellVolume",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE,
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false
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),
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mesh,
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dimensionedScalar("cellVolume", dimVolume, 0),
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calculatedFvPatchScalarField::typeName
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);
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V.ref() = mesh.V();
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Info<< " Writing cell volume to " << V.name() << endl;
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V.write();
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}
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if (selectedFields.found("cellVolumeRatio"))
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{
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const scalarField faceVolumeRatio
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(
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polyMeshTools::volRatio
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(
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mesh,
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mesh.V()
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)
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);
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volScalarField cellVolumeRatio
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(
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IOobject
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(
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"cellVolumeRatio",
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mesh.time().timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("cellVolumeRatio", dimless, 0),
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calculatedFvPatchScalarField::typeName
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);
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//- Take min
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minFaceToCell(faceVolumeRatio, cellVolumeRatio);
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Info<< " Writing cell volume ratio to "
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<< cellVolumeRatio.name() << endl;
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cellVolumeRatio.write();
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}
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Info<< endl;
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}
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@ -0,0 +1,10 @@
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#include "fvMesh.H"
|
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|
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namespace Foam
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{
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void writeFields
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(
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const fvMesh&,
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const HashSet<word>& selectedFields
|
||||
);
|
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}
|
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