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Functions | |
| word | constProp (initialConditions.lookup("constantProperty")) |
| if ((constProp!="pressure")&&(constProp!="volume")) | |
| word | fractionBasis (initialConditions.lookup("fractionBasis")) |
| if ((fractionBasis!="mass")&&(fractionBasis!="mole")) | |
| PtrList< gasHThermoPhysics > | specieData (Y.size()) |
| forAll (specieData, i) | |
| scalarList | Y0 (nSpecie, 0.0) |
| scalarList | X0 (nSpecie, 0.0) |
| dictionary | fractions (initialConditions.subDict("fractions")) |
| if (fractionBasis=="mole") | |
| forAll (Y, i) | |
| thermo | he () |
| thermo | correct () |
Variables | |
| label | nSpecie = Y.size() |
| else | |
| const scalar | mTot = sum(Y0) |
| const scalar | mw = 1.0/invW |
| scalar | h0 = 0.0 |
| rho = thermo.rho() | |
| scalar | rho0 = rho[0] |
| scalar | u0 = h0 - p0/rho0 |
| scalar | R0 = p0/(rho0*T0) |
| Rspecific [0] = R0 | |
| scalar | integratedHeat = 0.0 |
| word constProp | ( | initialConditions. | lookup"constantProperty" | ) |
| if | ( | (constProp!="pressure")&&(constProp!="volume") | ) |
Definition at line 2 of file readInitialConditions.H.
References Foam::abort(), constProp(), Foam::FatalError, fractionBasis(), and Foam::nl.

| word fractionBasis | ( | initialConditions. | lookup"fractionBasis" | ) |
| if | ( | (fractionBasis!="mass")&&(fractionBasis!="mole") | ) |
Definition at line 10 of file readInitialConditions.H.
References Foam::abort(), Foam::FatalError, fractionBasis(), and Foam::nl.

| PtrList<gasHThermoPhysics> specieData | ( | Y. | size() | ) |
| forAll | ( | specieData | , |
| i | |||
| ) |
Definition at line 19 of file readInitialConditions.H.
References fractions(), specieData(), thermo, X0(), and Y0().
Referenced by if().


| scalarList Y0 | ( | nSpecie | , |
| 0. | 0 | ||
| ) |
Referenced by forAll(), and NamedEnum< Enum, nEnum >::names().

| scalarList X0 | ( | nSpecie | , |
| 0. | 0 | ||
| ) |
Referenced by SprayParcel< ParcelType >::calc(), and forAll().

| dictionary fractions | ( | initialConditions. | subDict"fractions" | ) |
| if | ( | fractionBasis | = = "mole" | ) |
Definition at line 36 of file readInitialConditions.H.
References forAll(), fractions(), mTot, mw, Foam::name(), readScalar, specieData(), Foam::sum(), and Y.

| forAll | ( | Y | , |
| i | |||
| ) |
Definition at line 73 of file readInitialConditions.H.
References mTot, and specieData().

| thermo he | ( | ) |
| thermo correct | ( | ) |
| label nSpecie = Y.size() |
Definition at line 17 of file readInitialConditions.H.
Referenced by chemistryModel< CompType, ThermoType >::jacobian(), ode< ChemistryModel >::solve(), and EulerImplicit< ChemistryModel >::solve().
| else |
Definition at line 61 of file readInitialConditions.H.
| const scalar mTot = sum(Y0) |
Definition at line 72 of file readInitialConditions.H.
Referenced by ORourkeCollision< CloudType >::collideSorted(), forAll(), and if().
| const scalar mw = 1.0/invW |
Definition at line 78 of file readInitialConditions.H.
Referenced by if().
| scalar h0 = 0.0 |
Definition at line 86 of file readInitialConditions.H.
| thermo rho = thermo.rho() |
Definition at line 96 of file readInitialConditions.H.
Referenced by tabulatedAccelerationSource::addSup(), effectivenessHeatExchangerSource::addSup(), CoBlended< Type >::blendingFactor(), cellCoBlended< Type >::blendingFactor(), Implicit< CloudType >::cacheFields(), SprayParcel< ParcelType >::calc(), SprayParcel< ParcelType >::calcAtomization(), SprayParcel< ParcelType >::calcBreakup(), forces::calcForcesMoment(), ThermoParcel< ParcelType >::calcHeatTransfer(), pyrolysisChemistryModel< CompType, SolidThermo, GasThermo >::calculate(), chemistryModel< CompType, ThermoType >::calculate(), chemistryModel< CompType, ThermoType >::calculateRR(), NoAtomization< CloudType >::clone(), NoBreakup< CloudType >::clone(), ReitzKHRT< CloudType >::clone(), exponential::clone(), BlobsSheetAtomization< CloudType >::clone(), ReitzDiwakar< CloudType >::clone(), ETAB< CloudType >::clone(), Lun::clone(), PilchErdman< CloudType >::clone(), LISAAtomization< CloudType >::clone(), TAB< CloudType >::clone(), HarrisCrighton::clone(), SHF< CloudType >::clone(), ReactingCloud< Foam::DSMCCloud >::cloneBare(), infinitelyFastChemistry< CombThermoType, ThermoType >::correct(), patchInjection::correct(), PaSR< Type >::correct(), relaxation::correct(), drippingInjection::correct(), curvatureSeparation::correct(), fixedCoeff::correct(), kEpsilon< BasicTurbulenceModel >::correct(), standardPhaseChange::correctModel(), Foam::fvc::ddt(), chemistryModel< CompType, ThermoType >::derivatives(), forces::devRhoReff(), actuationDiskSource::diskArea(), ThermoSurfaceFilm< CloudType >::drySplashInteraction(), thermo< Thermo, Type >::ea(), thermo< Thermo, Type >::es(), scalarTransport::execute(), PatchFlowRateInjection< CloudType >::flowRate(), flowRateInletVelocityFvPatchVectorField::flowRateInletVelocityFvPatchVectorField(), for(), forAll(), EulerDdtScheme< Type >::fvcDdt(), if(), Foam::MULES::implicitSolve(), PhiScheme< Type, PhiLimiter >::limiter(), steadyStateDdtScheme< Type >::mesh(), EulerDdtScheme< Type >::mesh(), boundedDdtScheme< Type >::mesh(), backwardDdtScheme< Type >::mesh(), CoEulerDdtScheme< Type >::mesh(), SLTSDdtScheme< Type >::mesh(), ddtScheme< Type >::mesh(), localEulerDdtScheme< Type >::mesh(), layeredEngineMesh::move(), fvMotionSolverEngineMesh::move(), solidParticleCloud::move(), forces::mu(), RASModel< BasicTurbulenceModel >::New(), LESModel< BasicTurbulenceModel >::New(), ReynoldsStress< RASModel< BasicTurbulenceModel > >::nut(), CrankNicolsonDdtScheme< Type >::ocCoeff(), rhoMagSqr< Type >::operator()(), option::iNew::operator()(), porosityModel::iNew::operator()(), KinematicParcel< ParcelType >::readFields(), NullMRF::relative(), InjectionModel< CloudType >::setNumberOfParticles(), ConeNozzleInjection< CloudType >::setProperties(), pyrolysisChemistryModel< CompType, SolidThermo, GasThermo >::solve(), chemistryModel< CompType, ThermoType >::solve(), SprayParcel< ParcelType >::solveTABEq(), BreakupModel< Foam::SprayCloud< Foam::DSMCCloud > >::TABtwoWeCrit(), chemistryModel< CompType, ThermoType >::tc(), porosityModel::transformModelData(), TurbulenceModel< Alpha, Rho, BasicTurbulenceModel, TransportModel >::TurbulenceModel(), LISAAtomization< CloudType >::update(), inclinedFilmNusseltHeightFvPatchScalarField::updateCoeffs(), inclinedFilmNusseltInletVelocityFvPatchVectorField::updateCoeffs(), alphaFixedPressureFvPatchScalarField::updateCoeffs(), uniformTotalPressureFvPatchScalarField::updateCoeffs(), totalPressureFvPatchScalarField::updateCoeffs(), ThermoSurfaceFilm< CloudType >::wetSplashInteraction(), while(), KinematicParcel< ParcelType >::writeFields(), explicitPorositySource::~explicitPorositySource(), IncompressibleTurbulenceModel< TransportModel >::~IncompressibleTurbulenceModel(), interRegionExplicitPorositySource::~interRegionExplicitPorositySource(), linearViscousStress< RASModel< BasicTurbulenceModel > >::~linearViscousStress(), nonlinearEddyViscosity< incompressible::RASModel >::~nonlinearEddyViscosity(), optionList::~optionList(), and tabulatedAccelerationSource::~tabulatedAccelerationSource().
| scalar rho0 = rho[0] |
Definition at line 97 of file readInitialConditions.H.
Referenced by SprayParcel< ParcelType >::calc().
Definition at line 98 of file readInitialConditions.H.
Referenced by if(), and triangleFuncs::intersectAxesBundle().
| scalar R0 = p0/(rho0*T0) |
Definition at line 99 of file readInitialConditions.H.
| Rspecific[0] = R0 |
Definition at line 100 of file readInitialConditions.H.
Referenced by if().
| scalar integratedHeat = 0.0 |
Definition at line 102 of file readInitialConditions.H.
Referenced by if().
1.8.11