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Merge pull request #80 from ParticulateFlow/release
Release 19.02
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*~ | ||
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**/linux*Gcc*/ | ||
**/.vscode | ||
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lnInclude |
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#!/bin/sh | ||
cd ${0%/*} || exit 1 # Run from this directory | ||
set -x | ||
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wclean libso multiphaseMixture | ||
wclean | ||
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#------------------------------------------------------------------------------ |
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#!/bin/sh | ||
cd ${0%/*} || exit 1 # Run from this directory | ||
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# Parse arguments for library compilation | ||
targetType=libso | ||
. $WM_PROJECT_DIR/wmake/scripts/AllwmakeParseArguments | ||
set -x | ||
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wmake $targetType multiphaseMixture | ||
wmake | ||
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#------------------------------------------------------------------------------ |
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cfdemSolverMultiphase.C | ||
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EXE = $(CFDEM_APP_DIR)/cfdemSolverMultiphase |
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include $(CFDEM_ADD_LIBS_DIR)/additionalLibs | ||
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EXE_INC = \ | ||
-I$(CFDEM_OFVERSION_DIR) \ | ||
-ImultiphaseMixture/lnInclude \ | ||
-I$(LIB_SRC)/transportModels \ | ||
-I$(LIB_SRC)/transportModels/incompressible/lnInclude \ | ||
-I$(LIB_SRC)/transportModels/interfaceProperties/lnInclude \ | ||
-I$(LIB_SRC)/TurbulenceModels/turbulenceModels/lnInclude \ | ||
-I$(LIB_SRC)/TurbulenceModels/incompressible/lnInclude \ | ||
-I$(LIB_SRC)/finiteVolume/lnInclude \ | ||
-I$(LIB_SRC)/meshTools/lnInclude \ | ||
-I$(LIB_SRC)/sampling/lnInclude \ | ||
-I$(CFDEM_SRC_DIR)/lagrangian/cfdemParticle/lnInclude \ | ||
-I$(CFDEM_SRC_DIR)/lagrangian/cfdemParticle/cfdTools \ | ||
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EXE_LIBS = \ | ||
-L$(CFDEM_LIB_DIR)\ | ||
-lcfdemMultiphaseInterFoam \ | ||
-linterfaceProperties \ | ||
-lincompressibleTransportModels \ | ||
-lturbulenceModels \ | ||
-lincompressibleTurbulenceModels \ | ||
-lfiniteVolume \ | ||
-lfvOptions \ | ||
-lmeshTools \ | ||
-lsampling \ | ||
-l$(CFDEM_LIB_NAME) \ | ||
$(CFDEM_ADD_LIB_PATHS) \ | ||
$(CFDEM_ADD_LIBS) |
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const surfaceScalarField& rhoPhi(mixture.rhoPhi()); | ||
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volScalarField muEff = rho*(turbulence->nu() + turbulence->nut()); | ||
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if (modelType == "A") | ||
muEff *= voidfraction; | ||
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fvVectorMatrix UEqn | ||
( | ||
fvm::ddt(rhoEps, U) - fvm::Sp(fvc::ddt(rhoEps),U) | ||
+ fvm::div(rhoPhi, U) - fvm::Sp(fvc::div(rhoPhi),U) | ||
//+ particleCloud.divVoidfractionTau(U, voidfraction) | ||
- fvm::laplacian(muEff, U) - fvc::div(muEff*dev2(fvc::grad(U)().T())) | ||
== | ||
fvOptions(rho, U) | ||
- fvm::Sp(Ksl,U) | ||
); | ||
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UEqn.relax(); | ||
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fvOptions.constrain(UEqn); | ||
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if (pimple.momentumPredictor() && (modelType=="B" || modelType=="Bfull")) | ||
{ | ||
solve | ||
( | ||
UEqn | ||
== | ||
fvc::reconstruct | ||
( | ||
(- ghf*fvc::snGrad(rho) - fvc::snGrad(p_rgh)) * mesh.magSf() | ||
) | ||
+ | ||
fvc::reconstruct | ||
( | ||
mixture.surfaceTensionForce() * mesh.magSf() | ||
) * voidfraction | ||
+ Ksl*Us | ||
); | ||
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fvOptions.correct(U); | ||
} | ||
else if (pimple.momentumPredictor()) | ||
{ | ||
solve | ||
( | ||
UEqn | ||
== | ||
fvc::reconstruct | ||
( | ||
( | ||
mixture.surfaceTensionForce() | ||
- ghf*fvc::snGrad(rho) | ||
- fvc::snGrad(p_rgh) | ||
) * mesh.magSf() | ||
) * voidfraction | ||
+ Ksl*Us | ||
); | ||
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fvOptions.correct(U); | ||
} |
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17
applications/solvers/cfdemSolverMultiphase/additionalChecks.H
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// Additional solver-specific checks | ||
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// Useful if one wants to e.g. initialize floating particles using the Archimedes model | ||
if (particleCloud.couplingProperties().found("unrestrictedForceModelSelection")) | ||
{ | ||
Warning << "Using unrestrictedForceModelSelection, results may be incorrect!" << endl; | ||
} else | ||
{ | ||
#include "checkModelType.H" | ||
} | ||
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word modelType = particleCloud.modelType(); | ||
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if(!particleCloud.couplingProperties().found("useDDTvoidfraction")) | ||
{ | ||
Warning << "Suppressing ddt(voidfraction) is not recommended with this solver as it may generate incorrect results!" << endl; | ||
} |
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21
applications/solvers/cfdemSolverMultiphase/alphaCourantNo.H
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scalar alphaCoNum = 0.0; | ||
scalar meanAlphaCoNum = 0.0; | ||
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if (mesh.nInternalFaces()) | ||
{ | ||
scalarField sumPhi | ||
( | ||
mixture.nearInterface()().primitiveField() | ||
*fvc::surfaceSum(mag(phi))().primitiveField() | ||
); | ||
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alphaCoNum = 0.5*gMax(sumPhi/mesh.V().field())*runTime.deltaTValue(); | ||
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meanAlphaCoNum = | ||
0.5*(gSum(sumPhi)/gSum(mesh.V().field()))*runTime.deltaTValue(); | ||
} | ||
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Info<< "Interface Courant Number mean: " << meanAlphaCoNum | ||
<< " max: " << alphaCoNum << endl; | ||
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// ************************************************************************* // |
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148
applications/solvers/cfdemSolverMultiphase/cfdemSolverMultiphase.C
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/*---------------------------------------------------------------------------*\ | ||
License | ||
This 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. | ||
This code 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 this code. If not, see <http://www.gnu.org/licenses/>. | ||
Copyright (C) 2018- Mathias Vångö, JKU Linz, Austria | ||
Application | ||
cfdemSolverMultiphase | ||
Description | ||
CFD-DEM solver for n incompressible fluids which captures the interfaces and | ||
includes surface-tension and contact-angle effects for each phase. It is based | ||
on the OpenFOAM(R)-4.x solver multiphaseInterFoam but extended to incorporate | ||
DEM functionalities from the open-source DEM code LIGGGHTS. | ||
Turbulence modelling is generic, i.e. laminar, RAS or LES may be selected. | ||
\*---------------------------------------------------------------------------*/ | ||
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#include "fvCFD.H" | ||
#include "multiphaseMixture.H" | ||
#include "turbulentTransportModel.H" | ||
#include "pimpleControl.H" | ||
#include "fvOptions.H" | ||
#include "CorrectPhi.H" | ||
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#include "cfdemCloud.H" | ||
#include "implicitCouple.H" | ||
#include "clockModel.H" | ||
#include "smoothingModel.H" | ||
#include "forceModel.H" | ||
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // | ||
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int main(int argc, char *argv[]) | ||
{ | ||
#include "postProcess.H" | ||
#include "setRootCase.H" | ||
#include "createTime.H" | ||
#include "createMesh.H" | ||
#include "createControl.H" | ||
#include "initContinuityErrs.H" | ||
#include "createFields.H" | ||
#include "createFvOptions.H" | ||
#include "correctPhi.H" | ||
#include "CourantNo.H" | ||
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turbulence->validate(); | ||
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// create cfdemCloud | ||
cfdemCloud particleCloud(mesh); | ||
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#include "additionalChecks.H" | ||
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // | ||
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Info<< "\nStarting time loop\n" << endl; | ||
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while (runTime.loop()) | ||
{ | ||
#include "CourantNo.H" | ||
#include "alphaCourantNo.H" | ||
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particleCloud.clockM().start(1,"Global"); | ||
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Info<< "Time = " << runTime.timeName() << nl << endl; | ||
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particleCloud.clockM().start(2,"Coupling"); | ||
bool hasEvolved = particleCloud.evolve(voidfraction,Us,U); | ||
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if(hasEvolved) | ||
{ | ||
particleCloud.smoothingM().smoothen(particleCloud.forceM(0).impParticleForces()); | ||
} | ||
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Info << "update Ksl.internalField()" << endl; | ||
Ksl = particleCloud.momCoupleM(0).impMomSource(); | ||
Ksl.correctBoundaryConditions(); | ||
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//Force Checks | ||
vector fTotal(0,0,0); | ||
vector fImpTotal = sum(mesh.V()*Ksl.internalField()*(Us.internalField()-U.internalField())).value(); | ||
reduce(fImpTotal, sumOp<vector>()); | ||
Info << "TotalForceExp: " << fTotal << endl; | ||
Info << "TotalForceImp: " << fImpTotal << endl; | ||
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#include "solverDebugInfo.H" | ||
particleCloud.clockM().stop("Coupling"); | ||
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particleCloud.clockM().start(26,"Flow"); | ||
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if(particleCloud.solveFlow()) | ||
{ | ||
mixture.solve(); | ||
rho = mixture.rho(); | ||
rhoEps = rho * voidfraction; | ||
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// --- Pressure-velocity PIMPLE corrector loop | ||
while (pimple.loop()) | ||
{ | ||
#include "UEqn.H" | ||
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// --- Pressure corrector loop | ||
while (pimple.correct()) | ||
{ | ||
#include "pEqn.H" | ||
} | ||
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if (pimple.turbCorr()) | ||
{ | ||
turbulence->correct(); | ||
} | ||
} | ||
} | ||
else | ||
{ | ||
Info << "skipping flow solution." << endl; | ||
} | ||
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runTime.write(); | ||
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Info<< "ExecutionTime = " << runTime.elapsedCpuTime() << " s" | ||
<< " ClockTime = " << runTime.elapsedClockTime() << " s" | ||
<< nl << endl; | ||
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particleCloud.clockM().stop("Flow"); | ||
particleCloud.clockM().stop("Global"); | ||
} | ||
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Info<< "End\n" << endl; | ||
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return 0; | ||
} | ||
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// ************************************************************************* // |
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CorrectPhi | ||
( | ||
U, | ||
phi, | ||
p_rgh, | ||
dimensionedScalar("rAUf", dimTime/rho.dimensions(), 1), | ||
geometricZeroField(), | ||
pimple | ||
); | ||
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#include "continuityErrs.H" |
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