Transient coupled solvers for incompressible flows
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46
applications/solvers/coupled/transientDyMFoam/CMakeLists.txt
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46
applications/solvers/coupled/transientDyMFoam/CMakeLists.txt
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# --------------------------------------------------------------------------
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# ======== |
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# \ / F ield | foam-extend: Open Source CFD
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# \ / O peration | Version: 4.1
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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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#
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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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#
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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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#
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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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#
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# Description
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# CMakeLists.txt file for libraries and applications
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#
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# Author
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# Henrik Rusche, Wikki GmbH, 2017. All rights reserved
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#
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#
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# --------------------------------------------------------------------------
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list(APPEND SOURCES
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MRFPorousFoam.C
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)
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# Set minimal environment for external compilation
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if(NOT FOAM_FOUND)
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cmake_minimum_required(VERSION 2.8)
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find_package(FOAM REQUIRED)
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endif()
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add_foam_executable(MRFPorousFoam
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DEPENDS incompressibleRASModels
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SOURCES ${SOURCES}
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)
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3
applications/solvers/coupled/transientDyMFoam/Make/files
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3
applications/solvers/coupled/transientDyMFoam/Make/files
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transientDyMFoam.C
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EXE = $(FOAM_APPBIN)/transientDyMFoam
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20
applications/solvers/coupled/transientDyMFoam/Make/options
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20
applications/solvers/coupled/transientDyMFoam/Make/options
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EXE_INC = \
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-I$(LIB_SRC)/dynamicMesh/dynamicFvMesh/lnInclude \
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-I$(LIB_SRC)/dynamicMesh/dynamicMesh/lnInclude \
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-I$(LIB_SRC)/meshTools/lnInclude \
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-I$(LIB_SRC)/turbulenceModels/incompressible/turbulenceModel \
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-I$(LIB_SRC)/transportModels \
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-I$(LIB_SRC)/transportModels/incompressible/singlePhaseTransportModel \
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-I$(LIB_SRC)/finiteVolume/lnInclude
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EXE_LIBS = \
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-ldynamicFvMesh \
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-ltopoChangerFvMesh \
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-ldynamicMesh \
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-lmeshTools \
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-lincompressibleTransportModels \
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-lincompressibleTurbulenceModel \
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-lincompressibleRASModels \
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-lincompressibleLESModels \
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-lfiniteVolume \
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-llduSolvers
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19
applications/solvers/coupled/transientDyMFoam/UEqn.H
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19
applications/solvers/coupled/transientDyMFoam/UEqn.H
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{
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// Momentum equation
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fvVectorMatrix UEqn
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(
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fvm::ddt(U)
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+ fvm::div(phi, U)
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+ turbulence->divDevReff()
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);
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rAU = 1.0/UEqn.A();
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// Under-relax momentum. Note this will destroy the H and A
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UEqn.relax();
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// Insert momentum equation
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UpEqn.insertEquation(0, UEqn);
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# include "addBlockCoupledBC.H"
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}
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// Hack block-coupled boundary conditions: due for rewrite
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const volScalarField nuEff = turbulence->nuEff();
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forAll (U.boundaryField(), patchI)
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{
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if (U.boundaryField()[patchI].blockCoupled())
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{
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// Insert correcting fully implicit coupling coefficient
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const labelList fc = mesh.boundary()[patchI].faceCells();
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const fvPatchVectorField& Up = U.boundaryField()[patchI];
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// Warning: hacked for nuEff in viscosity
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const scalarField nutpMagSf =
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nuEff.boundaryField()[patchI]*
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mesh.magSf().boundaryField()[patchI];
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// Get boundary condition contribution to matrix diagonal
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tensorField patchDiag =
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-Up.blockGradientInternalCoeffs()().asSquare()*nutpMagSf;
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// Get matrix diagonal
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CoeffField<vector4>::squareTypeField& blockDiag =
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UpEqn.diag().asSquare();
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forAll (fc, faceI)
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{
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blockDiag[fc[faceI]](0, 0) += patchDiag[faceI].xx();
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blockDiag[fc[faceI]](0, 1) += patchDiag[faceI].xy();
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blockDiag[fc[faceI]](0, 2) += patchDiag[faceI].xz();
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blockDiag[fc[faceI]](1, 0) += patchDiag[faceI].yx();
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blockDiag[fc[faceI]](1, 1) += patchDiag[faceI].yy();
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blockDiag[fc[faceI]](1, 2) += patchDiag[faceI].yz();
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blockDiag[fc[faceI]](2, 0) += patchDiag[faceI].zx();
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blockDiag[fc[faceI]](3, 1) += patchDiag[faceI].zy();
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blockDiag[fc[faceI]](3, 2) += patchDiag[faceI].zz();
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}
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// Get boundary condition contribution to matrix source
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vectorField patchSource =
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-Up.blockGradientBoundaryCoeffs()*nutpMagSf;
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// Get matrix source
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Field<vector4>& blockSource = UpEqn.source();
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forAll (fc, faceI)
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{
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blockSource[fc[faceI]](0) -= patchSource[faceI](0);
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blockSource[fc[faceI]](1) -= patchSource[faceI](1);
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blockSource[fc[faceI]](2) -= patchSource[faceI](2);
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}
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}
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}
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32
applications/solvers/coupled/transientDyMFoam/boundPU.H
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32
applications/solvers/coupled/transientDyMFoam/boundPU.H
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{
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// Bound the pressure
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dimensionedScalar p1 = min(p);
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dimensionedScalar p2 = max(p);
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if (p1 < pMin || p2 > pMax)
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{
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Info<< "p: " << p1.value() << " " << p2.value()
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<< ". Bounding." << endl;
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p.max(pMin);
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p.min(pMax);
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p.correctBoundaryConditions();
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}
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// Bound the velocity
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volScalarField magU = mag(U);
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dimensionedScalar U1 = max(magU);
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if (U1 > UMax)
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{
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Info<< "U: " << U1.value() << ". Bounding." << endl;
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volScalarField Ulimiter = pos(magU - UMax)*UMax/(magU + smallU)
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+ neg(magU - UMax);
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Ulimiter.max(scalar(0));
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Ulimiter.min(scalar(1));
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U *= Ulimiter;
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U.correctBoundaryConditions();
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}
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}
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// Check convergence
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if (maxResidual < convergenceCriterion)
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{
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Info<< "reached convergence criterion: " << convergenceCriterion << endl;
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// Move to the next time-step
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break;
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}
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33
applications/solvers/coupled/transientDyMFoam/correctPhi.H
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33
applications/solvers/coupled/transientDyMFoam/correctPhi.H
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{
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volScalarField pcorr("pcorr", p);
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pcorr *= 0;
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// Initialise flux with interpolated velocity
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phi = fvc::interpolate(U) & mesh.Sf();
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adjustPhi(phi, U, pcorr);
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mesh.schemesDict().setFluxRequired(pcorr.name());
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// while (pimple.correctNonOrthogonal())
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{
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fvScalarMatrix pcorrEqn
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(
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fvm::laplacian(rAU, pcorr) == fvc::div(phi)
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);
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pcorrEqn.setReference(pRefCell, pRefValue);
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pcorrEqn.solve();
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// if (pimple.finalNonOrthogonalIter())
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{
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phi -= pcorrEqn.flux();
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}
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// Fluxes are corrected to absolute velocity and further corrected
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// later. HJ, 6/Feb/2009
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}
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# include "continuityErrs.H"
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}
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{
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// Calculate grad p coupling matrix. Needs to be here if one uses
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// gradient schemes with limiters. VV, 9/June/2014
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BlockLduSystem<vector, vector> pInU(fvm::grad(p));
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// Calculate div U coupling. Could be calculated only once since
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// it is only geometry dependent. VV, 9/June/2014
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BlockLduSystem<vector, scalar> UInp(fvm::UDiv(U));
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// Last argument in insertBlockCoupling says if the column direction
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// should be incremented. This is needed for arbitrary positioning
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// of U and p in the system. This could be better. VV, 30/April/2014
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UpEqn.insertBlockCoupling(0, 3, pInU, true);
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UpEqn.insertBlockCoupling(3, 0, UInp, false);
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}
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# include "createTimeControls.H"
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Switch correctPhi(false);
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Switch checkMeshCourantNo(false);
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// Number of outer correctors
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label nOuterCorrectors = 1;
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label pRefCell = 0;
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scalar pRefValue = 0;
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70
applications/solvers/coupled/transientDyMFoam/createFields.H
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70
applications/solvers/coupled/transientDyMFoam/createFields.H
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Info << "Reading field p\n" << endl;
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volScalarField p
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(
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IOobject
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(
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"p",
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runTime.timeName(),
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mesh,
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IOobject::MUST_READ,
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IOobject::AUTO_WRITE
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),
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mesh
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);
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Info << "Reading field U\n" << endl;
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volVectorField U
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(
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IOobject
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(
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"U",
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runTime.timeName(),
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mesh,
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IOobject::MUST_READ,
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IOobject::AUTO_WRITE
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),
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mesh
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);
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# include "createPhi.H"
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singlePhaseTransportModel laminarTransport(U, phi);
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autoPtr<incompressible::turbulenceModel> turbulence
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(
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incompressible::turbulenceModel::New(U, phi, laminarTransport)
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);
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// Block vector field for velocity (first entry) and pressure (second
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// entry).
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Info << "Creating field Up\n" << endl;
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volVector4Field Up
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(
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IOobject
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(
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"Up",
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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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dimensionedVector4("zero", dimless, vector4::zero)
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);
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Info<< "Creating field rAU\n" << endl;
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volScalarField rAU
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(
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IOobject
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(
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"rAU",
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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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runTime.deltaT()
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);
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mesh.schemesDict().setFluxRequired(p.name());
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// initialize values for convergence checks
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BlockSolverPerformance<vector4> residual;
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scalar maxResidual = 0;
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scalar convergenceCriterion = 0;
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18
applications/solvers/coupled/transientDyMFoam/pEqn.H
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18
applications/solvers/coupled/transientDyMFoam/pEqn.H
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// Pressure parts of the continuity equation
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surfaceScalarField presSource
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(
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"presSource",
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fvc::interpolate(rAU)*
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(fvc::interpolate(fvc::grad(p)) & mesh.Sf())
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);
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fvScalarMatrix pEqn
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(
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- fvm::laplacian(rAU, p)
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==
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- fvc::div(presSource)
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);
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pEqn.setReference(pRefCell, pRefValue);
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UpEqn.insertEquation(3, pEqn);
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{
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dictionary blockSolverDict = mesh.solutionDict().subDict("blockSolver");
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setRefCell
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(
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p,
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blockSolverDict,
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pRefCell,
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pRefValue
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);
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blockSolverDict.readIfPresent
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(
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"nOuterCorrectors",
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nOuterCorrectors
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);
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blockSolverDict.readIfPresent
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(
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"correctPhi",
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correctPhi
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);
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blockSolverDict.readIfPresent
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(
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"checkMeshCourantNo",
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checkMeshCourantNo
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);
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}
|
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// Read field bounds
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dictionary fieldBounds = mesh.solutionDict().subDict("fieldBounds");
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// Pressure bounds
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dimensionedScalar pMin("pMin", p.dimensions(), 0);
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dimensionedScalar pMax("pMax", p.dimensions(), 0);
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fieldBounds.lookup(p.name()) >> pMin.value() >> pMax.value();
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// Velocity bound
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dimensionedScalar UMax("UMax", U.dimensions(), 0);
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fieldBounds.lookup(U.name()) >> UMax.value();
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dimensionedScalar smallU("smallU", dimVelocity, 1e-10);
|
153
applications/solvers/coupled/transientDyMFoam/transientDyMFoam.C
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153
applications/solvers/coupled/transientDyMFoam/transientDyMFoam.C
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/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | foam-extend: Open Source CFD
|
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\\ / O peration | Version: 4.1
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\\ / A nd | Web: http://www.foam-extend.org
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\\/ M anipulation | For copyright notice see file Copyright
|
||||
-------------------------------------------------------------------------------
|
||||
License
|
||||
This file is part of foam-extend.
|
||||
|
||||
foam-extend is free software: you can redistribute it and/or modify it
|
||||
under the terms of the GNU General Public License as published by the
|
||||
Free Software Foundation, either version 3 of the License, or (at your
|
||||
option) any later version.
|
||||
|
||||
foam-extend is distributed in the hope that it will be useful, but
|
||||
WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
||||
General Public License for more details.
|
||||
|
||||
You should have received a copy of the GNU General Public License
|
||||
along with foam-extend. If not, see <http://www.gnu.org/licenses/>.
|
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|
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Application
|
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transientDyMFoam
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Description
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Transient solver for incompressible, turbulent flow, with implicit
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coupling between pressure and velocity achieved by fvBlockMatrix.
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Turbulence is solved using the existing turbulence model structure.
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The solver supports dynamic mesh changes
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Authors
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Hrvoje Jasak, Wikki Ltd.
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\*---------------------------------------------------------------------------*/
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#include "fvCFD.H"
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#include "fvBlockMatrix.H"
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#include "singlePhaseTransportModel.H"
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#include "turbulenceModel.H"
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#include "dynamicFvMesh.H"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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int main(int argc, char *argv[])
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{
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# include "setRootCase.H"
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# include "createTime.H"
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# include "createDynamicFvMesh.H"
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# include "createFields.H"
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# include "initContinuityErrs.H"
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# include "initConvergenceCheck.H"
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# include "createControls.H"
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Info<< "\nStarting time loop\n" << endl;
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while (runTime.run())
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{
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# include "readBlockSolverControls.H"
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# include "readFieldBounds.H"
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# include "CourantNo.H"
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# include "setDeltaT.H"
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// Make the fluxes absolute
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fvc::makeAbsolute(phi, U);
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runTime++;
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Info<< "Time = " << runTime.timeName() << nl << endl;
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bool meshChanged = mesh.update();
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reduce(meshChanged, orOp<bool>());
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# include "volContinuity.H"
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if (correctPhi && meshChanged)
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{
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// Fluxes will be corrected to absolute velocity
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// HJ, 6/Feb/2009
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# include "correctPhi.H"
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}
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// Make the fluxes relative to the mesh motion
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fvc::makeRelative(phi, U);
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if (mesh.moving() && checkMeshCourantNo)
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{
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# include "meshCourantNo.H"
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}
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if (meshChanged)
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||||
{
|
||||
# include "CourantNo.H"
|
||||
}
|
||||
|
||||
for (label i = 0; i < nOuterCorrectors; i++)
|
||||
{
|
||||
p.storePrevIter();
|
||||
|
||||
// Initialize the Up block system
|
||||
fvBlockMatrix<vector4> UpEqn(Up);
|
||||
|
||||
// Assemble and insert momentum equation
|
||||
# include "UEqn.H"
|
||||
|
||||
// Assemble and insert pressure equation
|
||||
# include "pEqn.H"
|
||||
|
||||
// Assemble and insert coupling terms
|
||||
# include "couplingTerms.H"
|
||||
|
||||
// Solve the block matrix
|
||||
residual = UpEqn.solve();
|
||||
maxResidual = cmptMax(residual.initialResidual());
|
||||
|
||||
// Retrieve solution
|
||||
UpEqn.retrieveSolution(0, U.internalField());
|
||||
UpEqn.retrieveSolution(3, p.internalField());
|
||||
|
||||
U.correctBoundaryConditions();
|
||||
p.correctBoundaryConditions();
|
||||
|
||||
phi = (fvc::interpolate(U) & mesh.Sf())
|
||||
+ pEqn.flux()
|
||||
+ presSource;
|
||||
|
||||
// Make the fluxes relative to the mesh motion
|
||||
fvc::makeRelative(phi, U);
|
||||
|
||||
# include "movingMeshContinuityErrs.H"
|
||||
|
||||
# include "boundPU.H"
|
||||
|
||||
p.relax();
|
||||
|
||||
turbulence->correct();
|
||||
}
|
||||
|
||||
runTime.write();
|
||||
|
||||
Info<< "ExecutionTime = " << runTime.elapsedCpuTime() << " s"
|
||||
<< " ClockTime = " << runTime.elapsedClockTime() << " s"
|
||||
<< nl << endl;
|
||||
|
||||
# include "convergenceCheck.H"
|
||||
}
|
||||
|
||||
Info<< "End\n" << endl;
|
||||
|
||||
return 0;
|
||||
}
|
46
applications/solvers/coupled/transientFoam/CMakeLists.txt
Normal file
46
applications/solvers/coupled/transientFoam/CMakeLists.txt
Normal file
|
@ -0,0 +1,46 @@
|
|||
# --------------------------------------------------------------------------
|
||||
# ======== |
|
||||
# \ / F ield | foam-extend: Open Source CFD
|
||||
# \ / O peration | Version: 4.1
|
||||
# \ / A nd | Web: http://www.foam-extend.org
|
||||
# \/ M anipulation | For copyright notice see file Copyright
|
||||
# --------------------------------------------------------------------------
|
||||
# License
|
||||
# This file is part of foam-extend.
|
||||
#
|
||||
# foam-extend is free software: you can redistribute it and/or modify it
|
||||
# under the terms of the GNU General Public License as published by the
|
||||
# Free Software Foundation, either version 3 of the License, or (at your
|
||||
# option) any later version.
|
||||
#
|
||||
# foam-extend is distributed in the hope that it will be useful, but
|
||||
# WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
||||
# General Public License for more details.
|
||||
#
|
||||
# You should have received a copy of the GNU General Public License
|
||||
# along with foam-extend. If not, see <http://www.gnu.org/licenses/>.
|
||||
#
|
||||
# Description
|
||||
# CMakeLists.txt file for libraries and applications
|
||||
#
|
||||
# Author
|
||||
# Henrik Rusche, Wikki GmbH, 2017. All rights reserved
|
||||
#
|
||||
#
|
||||
# --------------------------------------------------------------------------
|
||||
|
||||
list(APPEND SOURCES
|
||||
MRFPorousFoam.C
|
||||
)
|
||||
|
||||
# Set minimal environment for external compilation
|
||||
if(NOT FOAM_FOUND)
|
||||
cmake_minimum_required(VERSION 2.8)
|
||||
find_package(FOAM REQUIRED)
|
||||
endif()
|
||||
|
||||
add_foam_executable(MRFPorousFoam
|
||||
DEPENDS incompressibleRASModels
|
||||
SOURCES ${SOURCES}
|
||||
)
|
3
applications/solvers/coupled/transientFoam/Make/files
Normal file
3
applications/solvers/coupled/transientFoam/Make/files
Normal file
|
@ -0,0 +1,3 @@
|
|||
transientFoam.C
|
||||
|
||||
EXE = $(FOAM_APPBIN)/transientFoam
|
13
applications/solvers/coupled/transientFoam/Make/options
Normal file
13
applications/solvers/coupled/transientFoam/Make/options
Normal file
|
@ -0,0 +1,13 @@
|
|||
EXE_INC = \
|
||||
-I$(LIB_SRC)/turbulenceModels/incompressible/turbulenceModel \
|
||||
-I$(LIB_SRC)/transportModels \
|
||||
-I$(LIB_SRC)/transportModels/incompressible/singlePhaseTransportModel \
|
||||
-I$(LIB_SRC)/finiteVolume/lnInclude
|
||||
|
||||
EXE_LIBS = \
|
||||
-lincompressibleTransportModels \
|
||||
-lincompressibleTurbulenceModel \
|
||||
-lincompressibleRASModels \
|
||||
-lincompressibleLESModels \
|
||||
-lfiniteVolume \
|
||||
-llduSolvers
|
19
applications/solvers/coupled/transientFoam/UEqn.H
Normal file
19
applications/solvers/coupled/transientFoam/UEqn.H
Normal file
|
@ -0,0 +1,19 @@
|
|||
{
|
||||
// Momentum equation
|
||||
fvVectorMatrix UEqn
|
||||
(
|
||||
fvm::ddt(U)
|
||||
+ fvm::div(phi, U)
|
||||
+ turbulence->divDevReff()
|
||||
);
|
||||
|
||||
rAU = 1.0/UEqn.A();
|
||||
|
||||
// Under-relax momentum. Note this will destroy the H and A
|
||||
UEqn.relax();
|
||||
|
||||
// Insert momentum equation
|
||||
UpEqn.insertEquation(0, UEqn);
|
||||
|
||||
# include "addBlockCoupledBC.H"
|
||||
}
|
|
@ -0,0 +1,56 @@
|
|||
// Hack block-coupled boundary conditions: due for rewrite
|
||||
const volScalarField nuEff = turbulence->nuEff();
|
||||
|
||||
forAll (U.boundaryField(), patchI)
|
||||
{
|
||||
if (U.boundaryField()[patchI].blockCoupled())
|
||||
{
|
||||
// Insert correcting fully implicit coupling coefficient
|
||||
|
||||
const labelList fc = mesh.boundary()[patchI].faceCells();
|
||||
|
||||
const fvPatchVectorField& Up = U.boundaryField()[patchI];
|
||||
|
||||
// Warning: hacked for nuEff in viscosity
|
||||
const scalarField nutpMagSf =
|
||||
nuEff.boundaryField()[patchI]*
|
||||
mesh.magSf().boundaryField()[patchI];
|
||||
|
||||
// Get boundary condition contribution to matrix diagonal
|
||||
tensorField patchDiag =
|
||||
-Up.blockGradientInternalCoeffs()().asSquare()*nutpMagSf;
|
||||
|
||||
// Get matrix diagonal
|
||||
CoeffField<vector4>::squareTypeField& blockDiag =
|
||||
UpEqn.diag().asSquare();
|
||||
|
||||
forAll (fc, faceI)
|
||||
{
|
||||
blockDiag[fc[faceI]](0, 0) += patchDiag[faceI].xx();
|
||||
blockDiag[fc[faceI]](0, 1) += patchDiag[faceI].xy();
|
||||
blockDiag[fc[faceI]](0, 2) += patchDiag[faceI].xz();
|
||||
|
||||
blockDiag[fc[faceI]](1, 0) += patchDiag[faceI].yx();
|
||||
blockDiag[fc[faceI]](1, 1) += patchDiag[faceI].yy();
|
||||
blockDiag[fc[faceI]](1, 2) += patchDiag[faceI].yz();
|
||||
|
||||
blockDiag[fc[faceI]](2, 0) += patchDiag[faceI].zx();
|
||||
blockDiag[fc[faceI]](3, 1) += patchDiag[faceI].zy();
|
||||
blockDiag[fc[faceI]](3, 2) += patchDiag[faceI].zz();
|
||||
}
|
||||
|
||||
// Get boundary condition contribution to matrix source
|
||||
vectorField patchSource =
|
||||
-Up.blockGradientBoundaryCoeffs()*nutpMagSf;
|
||||
|
||||
// Get matrix source
|
||||
Field<vector4>& blockSource = UpEqn.source();
|
||||
|
||||
forAll (fc, faceI)
|
||||
{
|
||||
blockSource[fc[faceI]](0) -= patchSource[faceI](0);
|
||||
blockSource[fc[faceI]](1) -= patchSource[faceI](1);
|
||||
blockSource[fc[faceI]](2) -= patchSource[faceI](2);
|
||||
}
|
||||
}
|
||||
}
|
32
applications/solvers/coupled/transientFoam/boundPU.H
Normal file
32
applications/solvers/coupled/transientFoam/boundPU.H
Normal file
|
@ -0,0 +1,32 @@
|
|||
{
|
||||
// Bound the pressure
|
||||
dimensionedScalar p1 = min(p);
|
||||
dimensionedScalar p2 = max(p);
|
||||
|
||||
if (p1 < pMin || p2 > pMax)
|
||||
{
|
||||
Info<< "p: " << p1.value() << " " << p2.value()
|
||||
<< ". Bounding." << endl;
|
||||
|
||||
p.max(pMin);
|
||||
p.min(pMax);
|
||||
p.correctBoundaryConditions();
|
||||
}
|
||||
|
||||
// Bound the velocity
|
||||
volScalarField magU = mag(U);
|
||||
dimensionedScalar U1 = max(magU);
|
||||
|
||||
if (U1 > UMax)
|
||||
{
|
||||
Info<< "U: " << U1.value() << ". Bounding." << endl;
|
||||
|
||||
volScalarField Ulimiter = pos(magU - UMax)*UMax/(magU + smallU)
|
||||
+ neg(magU - UMax);
|
||||
Ulimiter.max(scalar(0));
|
||||
Ulimiter.min(scalar(1));
|
||||
|
||||
U *= Ulimiter;
|
||||
U.correctBoundaryConditions();
|
||||
}
|
||||
}
|
|
@ -0,0 +1,9 @@
|
|||
// Check convergence
|
||||
if (maxResidual < convergenceCriterion)
|
||||
{
|
||||
Info<< "reached convergence criterion: " << convergenceCriterion << endl;
|
||||
|
||||
// Move to the next time-step
|
||||
break;
|
||||
}
|
||||
|
15
applications/solvers/coupled/transientFoam/couplingTerms.H
Normal file
15
applications/solvers/coupled/transientFoam/couplingTerms.H
Normal file
|
@ -0,0 +1,15 @@
|
|||
{
|
||||
// Calculate grad p coupling matrix. Needs to be here if one uses
|
||||
// gradient schemes with limiters. VV, 9/June/2014
|
||||
BlockLduSystem<vector, vector> pInU(fvm::grad(p));
|
||||
|
||||
// Calculate div U coupling. Could be calculated only once since
|
||||
// it is only geometry dependent. VV, 9/June/2014
|
||||
BlockLduSystem<vector, scalar> UInp(fvm::UDiv(U));
|
||||
|
||||
// Last argument in insertBlockCoupling says if the column direction
|
||||
// should be incremented. This is needed for arbitrary positioning
|
||||
// of U and p in the system. This could be better. VV, 30/April/2014
|
||||
UpEqn.insertBlockCoupling(0, 3, pInU, true);
|
||||
UpEqn.insertBlockCoupling(3, 0, UInp, false);
|
||||
}
|
70
applications/solvers/coupled/transientFoam/createFields.H
Normal file
70
applications/solvers/coupled/transientFoam/createFields.H
Normal file
|
@ -0,0 +1,70 @@
|
|||
Info << "Reading field p\n" << endl;
|
||||
volScalarField p
|
||||
(
|
||||
IOobject
|
||||
(
|
||||
"p",
|
||||
runTime.timeName(),
|
||||
mesh,
|
||||
IOobject::MUST_READ,
|
||||
IOobject::AUTO_WRITE
|
||||
),
|
||||
mesh
|
||||
);
|
||||
|
||||
Info << "Reading field U\n" << endl;
|
||||
volVectorField U
|
||||
(
|
||||
IOobject
|
||||
(
|
||||
"U",
|
||||
runTime.timeName(),
|
||||
mesh,
|
||||
IOobject::MUST_READ,
|
||||
IOobject::AUTO_WRITE
|
||||
),
|
||||
mesh
|
||||
);
|
||||
|
||||
# include "createPhi.H"
|
||||
|
||||
singlePhaseTransportModel laminarTransport(U, phi);
|
||||
|
||||
autoPtr<incompressible::turbulenceModel> turbulence
|
||||
(
|
||||
incompressible::turbulenceModel::New(U, phi, laminarTransport)
|
||||
);
|
||||
|
||||
// Block vector field for velocity (first entry) and pressure (second
|
||||
// entry).
|
||||
Info << "Creating field Up\n" << endl;
|
||||
volVector4Field Up
|
||||
(
|
||||
IOobject
|
||||
(
|
||||
"Up",
|
||||
runTime.timeName(),
|
||||
mesh,
|
||||
IOobject::NO_READ,
|
||||
IOobject::NO_WRITE
|
||||
),
|
||||
mesh,
|
||||
dimensionedVector4("zero", dimless, vector4::zero)
|
||||
);
|
||||
|
||||
Info<< "Creating field rAU\n" << endl;
|
||||
volScalarField rAU
|
||||
(
|
||||
IOobject
|
||||
(
|
||||
"rAU",
|
||||
runTime.timeName(),
|
||||
mesh,
|
||||
IOobject::NO_READ,
|
||||
IOobject::NO_WRITE
|
||||
),
|
||||
mesh,
|
||||
runTime.deltaT()
|
||||
);
|
||||
|
||||
mesh.schemesDict().setFluxRequired(p.name());
|
|
@ -0,0 +1,5 @@
|
|||
// initialize values for convergence checks
|
||||
BlockSolverPerformance<vector4> residual;
|
||||
|
||||
scalar maxResidual = 0;
|
||||
scalar convergenceCriterion = 0;
|
18
applications/solvers/coupled/transientFoam/pEqn.H
Normal file
18
applications/solvers/coupled/transientFoam/pEqn.H
Normal file
|
@ -0,0 +1,18 @@
|
|||
// Pressure parts of the continuity equation
|
||||
surfaceScalarField presSource
|
||||
(
|
||||
"presSource",
|
||||
fvc::interpolate(rAU)*
|
||||
(fvc::interpolate(fvc::grad(p)) & mesh.Sf())
|
||||
);
|
||||
|
||||
fvScalarMatrix pEqn
|
||||
(
|
||||
- fvm::laplacian(rAU, p)
|
||||
==
|
||||
- fvc::div(presSource)
|
||||
);
|
||||
|
||||
pEqn.setReference(pRefCell, pRefValue);
|
||||
|
||||
UpEqn.insertEquation(3, pEqn);
|
|
@ -0,0 +1,34 @@
|
|||
label pRefCell = 0;
|
||||
scalar pRefValue = 0;
|
||||
|
||||
// Number of outer correctors
|
||||
const label nOuterCorrectors = readLabel
|
||||
(
|
||||
mesh.solutionDict().subDict("blockSolver").lookup("nOuterCorrectors")
|
||||
);
|
||||
|
||||
setRefCell
|
||||
(
|
||||
p,
|
||||
mesh.solutionDict().subDict("blockSolver"),
|
||||
pRefCell,
|
||||
pRefValue
|
||||
);
|
||||
|
||||
mesh.solutionDict().subDict("blockSolver").readIfPresent
|
||||
(
|
||||
"convergence",
|
||||
convergenceCriterion
|
||||
);
|
||||
|
||||
mesh.solutionDict().subDict("blockSolver").readIfPresent
|
||||
(
|
||||
"convergence",
|
||||
convergenceCriterion
|
||||
);
|
||||
|
||||
mesh.solutionDict().subDict("blockSolver").readIfPresent
|
||||
(
|
||||
"convergence",
|
||||
convergenceCriterion
|
||||
);
|
14
applications/solvers/coupled/transientFoam/readFieldBounds.H
Normal file
14
applications/solvers/coupled/transientFoam/readFieldBounds.H
Normal file
|
@ -0,0 +1,14 @@
|
|||
// Read field bounds
|
||||
dictionary fieldBounds = mesh.solutionDict().subDict("fieldBounds");
|
||||
|
||||
// Pressure bounds
|
||||
dimensionedScalar pMin("pMin", p.dimensions(), 0);
|
||||
dimensionedScalar pMax("pMax", p.dimensions(), 0);
|
||||
|
||||
fieldBounds.lookup(p.name()) >> pMin.value() >> pMax.value();
|
||||
|
||||
// Velocity bound
|
||||
dimensionedScalar UMax("UMax", U.dimensions(), 0);
|
||||
|
||||
fieldBounds.lookup(U.name()) >> UMax.value();
|
||||
dimensionedScalar smallU("smallU", dimVelocity, 1e-10);
|
121
applications/solvers/coupled/transientFoam/transientFoam.C
Normal file
121
applications/solvers/coupled/transientFoam/transientFoam.C
Normal file
|
@ -0,0 +1,121 @@
|
|||
/*---------------------------------------------------------------------------*\
|
||||
========= |
|
||||
\\ / F ield | foam-extend: Open Source CFD
|
||||
\\ / O peration | Version: 4.1
|
||||
\\ / A nd | Web: http://www.foam-extend.org
|
||||
\\/ M anipulation | For copyright notice see file Copyright
|
||||
-------------------------------------------------------------------------------
|
||||
License
|
||||
This file is part of foam-extend.
|
||||
|
||||
foam-extend is free software: you can redistribute it and/or modify it
|
||||
under the terms of the GNU General Public License as published by the
|
||||
Free Software Foundation, either version 3 of the License, or (at your
|
||||
option) any later version.
|
||||
|
||||
foam-extend is distributed in the hope that it will be useful, but
|
||||
WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
||||
General Public License for more details.
|
||||
|
||||
You should have received a copy of the GNU General Public License
|
||||
along with foam-extend. If not, see <http://www.gnu.org/licenses/>.
|
||||
|
||||
Application
|
||||
transientFoam
|
||||
|
||||
Description
|
||||
Transient solver for incompressible, turbulent flow, with implicit
|
||||
coupling between pressure and velocity achieved by fvBlockMatrix.
|
||||
Turbulence is in this version solved using the existing turbulence
|
||||
structure.
|
||||
|
||||
Authors
|
||||
Hrvoje Jasak, Wikki Ltd.
|
||||
|
||||
\*---------------------------------------------------------------------------*/
|
||||
|
||||
#include "fvCFD.H"
|
||||
#include "fvBlockMatrix.H"
|
||||
#include "singlePhaseTransportModel.H"
|
||||
#include "turbulenceModel.H"
|
||||
|
||||
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
|
||||
|
||||
int main(int argc, char *argv[])
|
||||
{
|
||||
# include "setRootCase.H"
|
||||
# include "createTime.H"
|
||||
# include "createMesh.H"
|
||||
# include "createFields.H"
|
||||
# include "initContinuityErrs.H"
|
||||
# include "initConvergenceCheck.H"
|
||||
# include "createTimeControls.H"
|
||||
|
||||
Info<< "\nStarting time loop\n" << endl;
|
||||
while (runTime.run())
|
||||
{
|
||||
# include "readBlockSolverControls.H"
|
||||
# include "readFieldBounds.H"
|
||||
|
||||
# include "CourantNo.H"
|
||||
# include "setDeltaT.H"
|
||||
|
||||
runTime++;
|
||||
|
||||
Info<< "Time = " << runTime.timeName() << nl << endl;
|
||||
|
||||
for (label i = 0; i < nOuterCorrectors; i++)
|
||||
{
|
||||
p.storePrevIter();
|
||||
|
||||
// Initialize the Up block system
|
||||
fvBlockMatrix<vector4> UpEqn(Up);
|
||||
|
||||
// Assemble and insert momentum equation
|
||||
# include "UEqn.H"
|
||||
|
||||
// Assemble and insert pressure equation
|
||||
# include "pEqn.H"
|
||||
|
||||
// Assemble and insert coupling terms
|
||||
# include "couplingTerms.H"
|
||||
|
||||
// Solve the block matrix
|
||||
residual = UpEqn.solve();
|
||||
maxResidual = cmptMax(residual.initialResidual());
|
||||
|
||||
// Retrieve solution
|
||||
UpEqn.retrieveSolution(0, U.internalField());
|
||||
UpEqn.retrieveSolution(3, p.internalField());
|
||||
|
||||
U.correctBoundaryConditions();
|
||||
p.correctBoundaryConditions();
|
||||
|
||||
phi = (fvc::interpolate(U) & mesh.Sf())
|
||||
+ pEqn.flux()
|
||||
+ presSource;
|
||||
|
||||
|
||||
# include "continuityErrs.H"
|
||||
|
||||
# include "boundPU.H"
|
||||
|
||||
p.relax();
|
||||
|
||||
turbulence->correct();
|
||||
}
|
||||
|
||||
runTime.write();
|
||||
|
||||
Info<< "ExecutionTime = " << runTime.elapsedCpuTime() << " s"
|
||||
<< " ClockTime = " << runTime.elapsedClockTime() << " s"
|
||||
<< nl << endl;
|
||||
|
||||
# include "convergenceCheck.H"
|
||||
}
|
||||
|
||||
Info<< "End\n" << endl;
|
||||
|
||||
return 0;
|
||||
}
|
Reference in a new issue