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interPhaseChangeDyMFoam: New dynamic-mesh version of interPhaseChangeFoam
This commit is contained in:
9
applications/solvers/multiphase/interPhaseChangeFoam/Allwclean
Executable file
9
applications/solvers/multiphase/interPhaseChangeFoam/Allwclean
Executable file
@ -0,0 +1,9 @@
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#!/bin/sh
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cd ${0%/*} || exit 1 # run from this directory
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set -x
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wclean libso phaseChangeTwoPhaseMixtures
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wclean
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wclean interPhaseChangeDyMFoam
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# ----------------------------------------------------------------- end-of-file
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9
applications/solvers/multiphase/interPhaseChangeFoam/Allwmake
Executable file
9
applications/solvers/multiphase/interPhaseChangeFoam/Allwmake
Executable file
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#!/bin/sh
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cd ${0%/*} || exit 1 # run from this directory
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set -x
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wmake libso phaseChangeTwoPhaseMixtures
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wmake
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wmake interPhaseChangeDyMFoam
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# ----------------------------------------------------------------- end-of-file
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@ -1,8 +1,3 @@
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interPhaseChangeFoam.C
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phaseChangeTwoPhaseMixtures/phaseChangeTwoPhaseMixture/phaseChangeTwoPhaseMixture.C
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phaseChangeTwoPhaseMixtures/phaseChangeTwoPhaseMixture/newPhaseChangeTwoPhaseMixture.C
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phaseChangeTwoPhaseMixtures/Kunz/Kunz.C
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phaseChangeTwoPhaseMixtures/Merkle/Merkle.C
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phaseChangeTwoPhaseMixtures/SchnerrSauer/SchnerrSauer.C
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EXE = $(FOAM_APPBIN)/interPhaseChangeFoam
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@ -4,13 +4,14 @@ EXE_INC = \
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-I$(LIB_SRC)/transportModels/incompressible/lnInclude \
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-I$(LIB_SRC)/transportModels/interfaceProperties/lnInclude \
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-I$(LIB_SRC)/turbulenceModels/incompressible/turbulenceModel \
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-IphaseChangeTwoPhaseMixtures/phaseChangeTwoPhaseMixture \
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-IphaseChangeTwoPhaseMixtures/lnInclude \
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-I$(LIB_SRC)/finiteVolume/lnInclude \
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-I$(LIB_SRC)/meshTools/lnInclude \
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-I$(LIB_SRC)/fvOptions/lnInclude\
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-I$(LIB_SRC)/sampling/lnInclude
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EXE_LIBS = \
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-lphaseChangeTwoPhaseMixtures \
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-ltwoPhaseMixture \
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-linterfaceProperties \
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-ltwoPhaseProperties \
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@ -0,0 +1,3 @@
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interPhaseChangeDyMFoam.C
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EXE = $(FOAM_APPBIN)/interPhaseChangeDyMFoam
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@ -0,0 +1,31 @@
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EXE_INC = \
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-I.. \
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-I$(LIB_SRC)/transportModels/twoPhaseMixture/lnInclude \
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-I$(LIB_SRC)/transportModels \
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-I$(LIB_SRC)/transportModels/incompressible/lnInclude \
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-I$(LIB_SRC)/transportModels/interfaceProperties/lnInclude \
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-I$(LIB_SRC)/turbulenceModels/incompressible/turbulenceModel \
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-I../phaseChangeTwoPhaseMixtures/lnInclude \
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-I$(LIB_SRC)/finiteVolume/lnInclude \
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-I$(LIB_SRC)/dynamicMesh/lnInclude \
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-I$(LIB_SRC)/dynamicFvMesh/lnInclude \
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-I$(LIB_SRC)/meshTools/lnInclude \
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-I$(LIB_SRC)/fvOptions/lnInclude\
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-I$(LIB_SRC)/sampling/lnInclude
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EXE_LIBS = \
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-lphaseChangeTwoPhaseMixtures \
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-ltwoPhaseMixture \
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-linterfaceProperties \
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-ltwoPhaseProperties \
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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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-ldynamicMesh \
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-ldynamicFvMesh \
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-ltopoChangerFvMesh \
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-lmeshTools \
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-lfvOptions \
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-lsampling
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@ -0,0 +1,162 @@
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/*---------------------------------------------------------------------------*\
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========= |
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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) 2011-2013 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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interPhaseChangeDyMFoam
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Description
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Solver for 2 incompressible, isothermal immiscible fluids with phase-change
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(e.g. cavitation). Uses a VOF (volume of fluid) phase-fraction based
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interface capturing approach, with optional mesh motion and mesh topology
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changes including adaptive re-meshing.
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The momentum and other fluid properties are of the "mixture" and a
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single momentum equation is solved.
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The set of phase-change models provided are designed to simulate cavitation
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but other mechanisms of phase-change are supported within this solver
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framework.
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Turbulence modelling is generic, i.e. laminar, RAS or LES may be selected.
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\*---------------------------------------------------------------------------*/
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#include "fvCFD.H"
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#include "dynamicFvMesh.H"
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#include "MULES.H"
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#include "subCycle.H"
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#include "interfaceProperties.H"
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#include "phaseChangeTwoPhaseMixture.H"
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#include "turbulenceModel.H"
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#include "pimpleControl.H"
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#include "fvIOoptionList.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 "readGravitationalAcceleration.H"
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#include "initContinuityErrs.H"
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#include "createFields.H"
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#include "readTimeControls.H"
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pimpleControl pimple(mesh);
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surfaceScalarField phiAbs("phiAbs", phi);
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fvc::makeAbsolute(phiAbs, U);
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#include "../interFoam/interDyMFoam/correctPhi.H"
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#include "CourantNo.H"
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#include "setInitialDeltaT.H"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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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 "../interFoam/interDyMFoam/readControls.H"
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#include "CourantNo.H"
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#include "setDeltaT.H"
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runTime++;
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Info<< "Time = " << runTime.timeName() << nl << endl;
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scalar timeBeforeMeshUpdate = runTime.elapsedCpuTime();
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{
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// Ensure old-time U exists for mapping
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U.oldTime();
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// Calculate the relative velocity used to map the relative flux phi
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volVectorField Urel("Urel", U);
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if (mesh.moving())
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{
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Urel -= fvc::reconstruct(fvc::meshPhi(U));
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}
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// Do any mesh changes
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mesh.update();
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}
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if (mesh.changing())
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{
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Info<< "Execution time for mesh.update() = "
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<< runTime.elapsedCpuTime() - timeBeforeMeshUpdate
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<< " s" << endl;
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gh = g & mesh.C();
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ghf = g & mesh.Cf();
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}
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if (mesh.changing() && correctPhi)
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{
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#include "../interFoam/interDyMFoam/correctPhi.H"
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}
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if (mesh.changing() && checkMeshCourantNo)
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{
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#include "meshCourantNo.H"
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}
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twoPhaseProperties->correct();
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#include "alphaEqnSubCycle.H"
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interface.correct();
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// --- Pressure-velocity PIMPLE corrector loop
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while (pimple.loop())
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{
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#include "UEqn.H"
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// --- Pressure corrector loop
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while (pimple.correct())
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{
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#include "pEqn.H"
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}
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if (pimple.turbCorr())
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{
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turbulence->correct();
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}
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}
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runTime.write();
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Info<< "ExecutionTime = " << runTime.elapsedCpuTime() << " s"
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<< " ClockTime = " << runTime.elapsedClockTime() << " s"
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<< nl << endl;
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}
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Info<< "End\n" << endl;
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return 0;
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}
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// ************************************************************************* //
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@ -0,0 +1,77 @@
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{
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volScalarField rAU("rAU", 1.0/UEqn.A());
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surfaceScalarField rAUf("Dp", fvc::interpolate(rAU));
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volVectorField HbyA("HbyA", U);
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HbyA = rAU*UEqn.H();
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surfaceScalarField phiHbyA
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(
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"phiHbyA",
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(fvc::interpolate(HbyA) & mesh.Sf())
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+ fvc::ddtPhiCorr(rAU, rho, U, phiAbs)
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);
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if (p_rgh.needReference())
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{
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fvc::makeRelative(phiHbyA, U);
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adjustPhi(phiHbyA, U, p_rgh);
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fvc::makeAbsolute(phiHbyA, U);
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}
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phiAbs = phiHbyA;
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surfaceScalarField phig
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(
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(
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fvc::interpolate(interface.sigmaK())*fvc::snGrad(alpha1)
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- ghf*fvc::snGrad(rho)
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)*rAUf*mesh.magSf()
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);
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phiHbyA += phig;
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Pair<tmp<volScalarField> > vDotP = twoPhaseProperties->vDotP();
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const volScalarField& vDotcP = vDotP[0]();
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const volScalarField& vDotvP = vDotP[1]();
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while (pimple.correctNonOrthogonal())
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{
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fvScalarMatrix p_rghEqn
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(
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fvc::div(phiHbyA) - fvm::laplacian(rAUf, p_rgh)
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- (vDotvP - vDotcP)*(pSat - rho*gh) + fvm::Sp(vDotvP - vDotcP, p_rgh)
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);
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p_rghEqn.setReference(pRefCell, pRefValue);
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p_rghEqn.solve(mesh.solver(p_rgh.select(pimple.finalInnerIter())));
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if (pimple.finalNonOrthogonalIter())
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{
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phi = phiHbyA + p_rghEqn.flux();
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U = HbyA + rAU*fvc::reconstruct((phig + p_rghEqn.flux())/rAUf);
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U.correctBoundaryConditions();
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fvOptions.correct(U);
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}
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}
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phiAbs = phi;
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// Make the fluxes relative to the mesh motion
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fvc::makeRelative(phi, U);
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p == p_rgh + rho*gh;
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if (p_rgh.needReference())
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{
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p += dimensionedScalar
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(
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"p",
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p.dimensions(),
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pRefValue - getRefCellValue(p, pRefCell)
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);
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p_rgh = p - rho*gh;
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}
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}
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@ -0,0 +1,7 @@
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phaseChangeTwoPhaseMixture/phaseChangeTwoPhaseMixture.C
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phaseChangeTwoPhaseMixture/newPhaseChangeTwoPhaseMixture.C
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Kunz/Kunz.C
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Merkle/Merkle.C
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SchnerrSauer/SchnerrSauer.C
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LIB = $(FOAM_LIBBIN)/libphaseChangeTwoPhaseMixtures
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@ -0,0 +1,11 @@
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EXE_INC = \
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-I$(LIB_SRC)/transportModels/twoPhaseMixture/lnInclude \
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-I$(LIB_SRC)/transportModels \
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-I$(LIB_SRC)/transportModels/incompressible/lnInclude \
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-I$(LIB_SRC)/finiteVolume/lnInclude
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LIB_LIBS = \
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-ltwoPhaseMixture \
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-ltwoPhaseProperties \
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-lincompressibleTransportModels \
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-lfiniteVolume
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