Mesh motion and topology change are now combinable run-time selectable options within fvMesh, replacing the restrictive dynamicFvMesh which supported only motion OR topology change. All solvers which instantiated a dynamicFvMesh now instantiate an fvMesh which reads the optional constant/dynamicFvMeshDict to construct an fvMeshMover and/or an fvMeshTopoChanger. These two are specified within the optional mover and topoChanger sub-dictionaries of dynamicFvMeshDict. When the fvMesh is updated the fvMeshTopoChanger is first executed which can change the mesh topology in anyway, adding or removing points as required, for example for automatic mesh refinement/unrefinement, and all registered fields are mapped onto the updated mesh. The fvMeshMover is then executed which moved the points only and calculates the cell volume change and corresponding mesh-fluxes for conservative moving mesh transport. If multiple topological changes or movements are required these would be combined into special fvMeshMovers and fvMeshTopoChangers which handle the processing of a list of changes, e.g. solidBodyMotionFunctions:multiMotion. The tutorials/multiphase/interFoam/laminar/sloshingTank3D3DoF case has been updated to demonstrate this new functionality by combining solid-body motion with mesh refinement/unrefinement: /*--------------------------------*- C++ -*----------------------------------*\ ========= | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox \\ / O peration | Website: https://openfoam.org \\ / A nd | Version: dev \\/ M anipulation | \*---------------------------------------------------------------------------*/ FoamFile { format ascii; class dictionary; location "constant"; object dynamicMeshDict; } // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // mover { type motionSolver; libs ("libfvMeshMovers.so" "libfvMotionSolvers.so"); motionSolver solidBody; solidBodyMotionFunction SDA; CofG (0 0 0); lamda 50; rollAmax 0.2; rollAmin 0.1; heaveA 4; swayA 2.4; Q 2; Tp 14; Tpn 12; dTi 0.06; dTp -0.001; } topoChanger { type refiner; libs ("libfvMeshTopoChangers.so"); // How often to refine refineInterval 1; // Field to be refinement on field alpha.water; // Refine field in between lower..upper lowerRefineLevel 0.001; upperRefineLevel 0.999; // Have slower than 2:1 refinement nBufferLayers 1; // Refine cells only up to maxRefinement levels maxRefinement 1; // Stop refinement if maxCells reached maxCells 200000; // Flux field and corresponding velocity field. Fluxes on changed // faces get recalculated by interpolating the velocity. Use 'none' // on surfaceScalarFields that do not need to be reinterpolated. correctFluxes ( (phi none) (nHatf none) (rhoPhi none) (alphaPhi.water none) (meshPhi none) (meshPhi_0 none) (ghf none) ); // Write the refinement level as a volScalarField dumpLevel true; } // ************************************************************************* // Note that currently this is the only working combination of mesh-motion with topology change within the new framework and further development is required to update the set of topology changers so that topology changes with mapping are separated from the mesh-motion so that they can be combined with any of the other movements or topology changes in any manner. All of the solvers and tutorials have been updated to use the new form of dynamicMeshDict but backward-compatibility was not practical due to the complete reorganisation of the mesh change structure.
346 lines
8.0 KiB
C++
346 lines
8.0 KiB
C++
/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration | Website: https://openfoam.org
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\\ / A nd | Copyright (C) 2011-2021 OpenFOAM Foundation
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\\/ M anipulation |
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-------------------------------------------------------------------------------
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License
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This file is part of OpenFOAM.
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OpenFOAM 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
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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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 OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
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Application
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mapFieldsPar
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Description
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Maps volume fields from one mesh to another, reading and
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interpolating all fields present in the time directory of both cases.
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\*---------------------------------------------------------------------------*/
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#include "fvCFD.H"
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#include "meshToMesh.H"
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#include "cellVolumeWeightMethod.H"
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#include "processorPolyPatch.H"
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#include "MapMeshes.H"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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void mapConsistentMesh
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(
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const fvMesh& meshSource,
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const fvMesh& meshTarget,
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const word& mapMethod,
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const bool subtract,
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const HashSet<word>& selectedFields,
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const bool noLagrangian
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)
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{
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Info<< nl << "Consistently creating and mapping fields for time "
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<< meshSource.time().timeName() << nl << endl;
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meshToMesh interp(meshSource, meshTarget, mapMethod);
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if (subtract)
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{
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MapMesh<minusEqOp>
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(
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interp,
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selectedFields,
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noLagrangian
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);
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}
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else
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{
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MapMesh<plusEqOp>
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(
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interp,
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selectedFields,
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noLagrangian
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);
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}
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}
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void mapSubMesh
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(
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const fvMesh& meshSource,
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const fvMesh& meshTarget,
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const HashTable<word>& patchMap,
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const wordList& cuttingPatches,
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const word& mapMethod,
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const bool subtract,
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const HashSet<word>& selectedFields,
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const bool noLagrangian
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)
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{
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Info<< nl << "Creating and mapping fields for time "
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<< meshSource.time().timeName() << nl << endl;
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meshToMesh interp
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(
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meshSource,
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meshTarget,
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mapMethod,
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patchMap,
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cuttingPatches
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);
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if (subtract)
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{
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MapMesh<minusEqOp>
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(
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interp,
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selectedFields,
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noLagrangian
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);
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}
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else
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{
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MapMesh<plusEqOp>
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(
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interp,
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selectedFields,
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noLagrangian
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);
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}
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}
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wordList addProcessorPatches
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(
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const fvMesh& meshTarget,
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const wordList& cuttingPatches
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)
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{
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// Add the processor patches to the cutting list
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HashSet<word> cuttingPatchTable;
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forAll(cuttingPatches, i)
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{
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cuttingPatchTable.insert(cuttingPatches[i]);
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}
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const polyBoundaryMesh& pbm = meshTarget.boundaryMesh();
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forAll(pbm, patchi)
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{
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if (isA<processorPolyPatch>(pbm[patchi]))
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{
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const word& patchName = pbm[patchi].name();
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cuttingPatchTable.insert(patchName);
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}
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}
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return cuttingPatchTable.toc();
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}
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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int main(int argc, char *argv[])
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{
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argList::addNote
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(
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"map volume fields from one mesh to another"
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);
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argList::validArgs.append("sourceCase");
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argList::addOption
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(
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"sourceTime",
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"scalar|'latestTime'",
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"specify the source time"
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);
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argList::addOption
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(
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"sourceRegion",
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"word",
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"specify the source region"
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);
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argList::addOption
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(
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"targetRegion",
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"word",
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"specify the target region"
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);
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argList::addBoolOption
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(
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"consistent",
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"source and target geometry and boundary conditions identical"
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);
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argList::addOption
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(
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"mapMethod",
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"word",
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"specify the mapping method"
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);
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argList::addBoolOption
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(
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"subtract",
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"subtract mapped source from target"
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);
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argList::addOption
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(
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"fields",
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"list",
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"specify a list of fields to be mapped. Eg, '(U T p)' - "
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"regular expressions not currently supported"
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);
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argList::addBoolOption
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(
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"noLagrangian",
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"skip mapping lagrangian positions and fields"
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);
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#include "setRootCase.H"
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fileName rootDirTarget(args.rootPath());
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fileName caseDirTarget(args.globalCaseName());
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const fileName casePath = args[1];
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const fileName rootDirSource = casePath.path();
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const fileName caseDirSource = casePath.name();
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Info<< "Source: " << rootDirSource << " " << caseDirSource << endl;
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word sourceRegion = fvMesh::defaultRegion;
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if (args.optionFound("sourceRegion"))
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{
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sourceRegion = args["sourceRegion"];
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Info<< "Source region: " << sourceRegion << endl;
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}
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Info<< "Target: " << rootDirTarget << " " << caseDirTarget << endl;
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word targetRegion = fvMesh::defaultRegion;
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if (args.optionFound("targetRegion"))
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{
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targetRegion = args["targetRegion"];
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Info<< "Target region: " << targetRegion << endl;
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}
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const bool consistent = args.optionFound("consistent");
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const word mapMethod
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(
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args.optionLookupOrDefault<word>
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(
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"mapMethod",
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cellVolumeWeightMethod::typeName
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)
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);
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Info<< "Mapping method: " << mapMethod << endl;
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const bool subtract = args.optionFound("subtract");
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if (subtract)
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{
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Info<< "Subtracting mapped source field from target" << endl;
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}
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HashSet<word> selectedFields;
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if (args.optionFound("fields"))
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{
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args.optionLookup("fields")() >> selectedFields;
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}
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const bool noLagrangian = args.optionFound("noLagrangian");
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#include "createTimes.H"
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HashTable<word> patchMap;
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wordList cuttingPatches;
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if (!consistent)
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{
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IOdictionary mapFieldsDict
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(
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IOobject
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(
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"mapFieldsDict",
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runTimeTarget.system(),
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runTimeTarget,
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IOobject::MUST_READ_IF_MODIFIED,
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IOobject::NO_WRITE,
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false
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)
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);
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mapFieldsDict.lookup("patchMap") >> patchMap;
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mapFieldsDict.lookup("cuttingPatches") >> cuttingPatches;
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}
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#include "setTimeIndex.H"
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Info<< "\nCreate meshes\n" << endl;
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fvMesh meshSource
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(
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IOobject
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(
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sourceRegion,
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runTimeSource.timeName(),
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runTimeSource
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),
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false
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);
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fvMesh meshTarget
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(
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IOobject
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(
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targetRegion,
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runTimeTarget.timeName(),
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runTimeTarget
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),
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false
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);
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Info<< "Source mesh size: " << meshSource.nCells() << tab
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<< "Target mesh size: " << meshTarget.nCells() << nl << endl;
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if (consistent)
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{
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mapConsistentMesh
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(
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meshSource,
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meshTarget,
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mapMethod,
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subtract,
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selectedFields,
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noLagrangian
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);
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}
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else
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{
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mapSubMesh
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(
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meshSource,
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meshTarget,
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patchMap,
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cuttingPatches,
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mapMethod,
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subtract,
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selectedFields,
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noLagrangian
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);
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}
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Info<< "\nEnd\n" << endl;
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return 0;
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}
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// ************************************************************************* //
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