369 lines
6.8 KiB
C
369 lines
6.8 KiB
C
Info<< "\nCreating thermophysical model for Fluid mesh\n" << endl;
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#include "readGravitationalAcceleration.H"
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combustionModels::rhoCombustionModel* pRxn = (combustionModels::rhoCombustionModel::New(mesh)).ptr();
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autoPtr<combustionModels::rhoChemistryCombustion> combustion
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(
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dynamic_cast <combustionModels::rhoChemistryCombustion*> (pRxn)
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);
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autoPtr<rhoChemistryModel> chemistry = combustion->chem();
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rhoReactionThermo& thermo = chemistry->thermo();
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thermo.validate(args.executable(), "h", "e");
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basicSpecieMixture& composition = thermo.composition();
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PtrList<volScalarField>& Y = composition.Y();
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forAll (Y, i)
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{
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Y[i].writeOpt() = IOobject::NO_WRITE;
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}
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word inertSpecie(thermo.lookup("inertSpecie"));
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volScalarField rho
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(
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IOobject
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(
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"rho",
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runTime.timeName(),
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mesh
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),
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thermo.rho()
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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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volScalarField& p = thermo.p();
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volScalarField& T = thermo.T();
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#include "compressibleCreatePhi.H"
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dimensionedScalar rhoMax
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(
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dimensionedScalar::lookupOrDefault
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(
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"rhoMax",
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simple.dict(),
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dimDensity,
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GREAT
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)
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);
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dimensionedScalar rhoMin
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(
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dimensionedScalar::lookupOrDefault
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(
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"rhoMin",
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simple.dict(),
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dimDensity,
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0
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)
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);
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Info << "Creating turbulence model.\n" << nl;
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autoPtr<compressible::turbulenceModel> turbulence
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(
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compressible::turbulenceModel::New
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(
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rho,
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U,
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phi,
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thermo
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)
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);
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// Set the turbulence into the reaction model
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combustion->setTurbulence(turbulence());
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Info<< "Creating field dpdt\n" << endl;
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volScalarField dpdt
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(
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IOobject
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(
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"dpdt",
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runTime.timeName(),
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mesh
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),
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mesh,
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dimensionedScalar("dpdt", p.dimensions()/dimTime, 0)
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);
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Info<< "Creating field kinetic energy K\n" << endl;
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volScalarField K("K", 0.5*magSqr(U));
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multivariateSurfaceInterpolationScheme<scalar>::fieldTable fields;
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forAll(Y, i)
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{
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fields.add(Y[i]);
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}
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fields.add(thermo.he());
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/***************************************************************/
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//SLFM-related Fields
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Info<<"Creating field mf, mfVar, SDR\n"<<endl;
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volScalarField mf //mixture fraction
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(
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IOobject
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(
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"mf",
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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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volScalarField mfVar //mixture fraction variance
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(
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IOobject
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(
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"mfVar",
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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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volScalarField SDR //scalar dissipation rate
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(
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IOobject
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(
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"SDR",
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runTime.timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("SDR", dimEnergy/dimTime/dimEnergy, 0.0)
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);
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volScalarField jlc //eta-index, lower
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(
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IOobject
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(
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"jlc",
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runTime.timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("jlc", dimless, 0.0)
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);
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volScalarField jhc //eta-index, higher
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(
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IOobject
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(
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"jhc",
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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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dimensionedScalar("jhc", dimless, 0.0)
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);
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volScalarField jfc //eta-factor
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(
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IOobject
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(
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"jfc",
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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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dimensionedScalar("jfc", dimless, 0.0)
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);
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volScalarField vlc //var-index, lower
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(
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IOobject
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(
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"vlc",
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runTime.timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("vlc", dimless, 0.0)
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);
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volScalarField vhc //var-index, higher
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(
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IOobject
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(
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"vhc",
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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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dimensionedScalar("vhc", dimless, 0.0)
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);
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volScalarField vfc //var-factor
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(
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IOobject
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(
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"vfc",
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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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dimensionedScalar("vfc", dimless, 0.0)
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);
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volScalarField nlc //sdr-index, lower
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(
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IOobject
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(
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"nlc",
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runTime.timeName(),
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mesh,
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IOobject::NO_READ,
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IOobject::AUTO_WRITE
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),
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mesh,
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dimensionedScalar("nlc", dimless, 0.0)
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);
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volScalarField nhc //sdr-index, higher
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(
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IOobject
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(
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"nhc",
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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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dimensionedScalar("nhc", dimless, 0.0)
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);
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volScalarField nfc //sdr-factor
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(
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IOobject
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(
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"nfc",
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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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dimensionedScalar("nfc", dimless, 0.0)
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);
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//SLFM property read
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IOdictionary SLFMdict //SLFM properties dictionary
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(
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IOobject
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(
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"SLFMdict",
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runTime.constant(),
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mesh,
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IOobject::MUST_READ,
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IOobject::NO_WRITE
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)
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);
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label Ysize = Y.size();
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wordList postSpecieNames(SLFMdict.lookup("postSpecieNames"));
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labelList postSpecieIndices(postSpecieNames.size(),-1);
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forAll(postSpecieNames, i)
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{
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const word &spName (postSpecieNames[i]);
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const label spI (composition.species()[spName]);
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postSpecieIndices[i] = spI;
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Y[spI].writeOpt() = IOobject::AUTO_WRITE;
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}
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scalar stoiMF(readScalar(SLFMdict.lookup("stoiMF")));
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scalar stretchFac(readScalar(SLFMdict.lookup("stretchFactor")));
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scalar lowerN(readScalar(SLFMdict.lookup("lowerN")));
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scalar upperN(readScalar(SLFMdict.lookup("upperN")));
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scalar etamax(lowerN+upperN);
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scalarField etaValue(etamax+1,0);
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scalarField etaIndex(etamax+1,0);
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scalarField deta_h(etamax+1,0);
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scalarField deta_l(etamax+1,0);
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scalarField deta_m(etamax+1,0);
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#include "setEtaSpace.H"
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Info<<"\nNumber of eta-point = "<<etamax+1<<endl;
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scalar NVar(readScalar(SLFMdict.lookup("NVar")));
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scalarField varValue(NVar+1,0);
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scalarField varIndex(NVar+1,0);
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#include "setVarSpace.H"
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PtrList<volScalarField> Neta(etamax+1);
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for(label j=0 ; j<=etamax ; j++)
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{
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word Netai = "Neta_"+Foam::name(j);
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Neta.set
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(
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j,
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new volScalarField
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(
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IOobject
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(
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Netai,
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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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dimensionedScalar(Netai, dimless, 0.0)
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)
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);
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}
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tmp<fv::convectionScheme<scalar> > mvConvection
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(
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fv::convectionScheme<scalar>::New
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(
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mesh,
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fields,
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phi,
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mesh.divScheme("div(phi,Yi_h)")
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)
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);
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#include "createMRF.H"
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