52 GEtaCoef_(XiGModelCoeffs_.lookup<scalar>(
"GEtaCoef"))
73 return (GEtaCoef_/tauEta);
81 XiGModelCoeffs_.lookup(
"GEtaCoef") >> GEtaCoef_;
Macros for easy insertion into run-time selection tables.
Generic GeometricField class.
Base class for flame wrinkling Xi generation rate models.
bool read(const dictionary &XiProperties)
Update properties from the given XiProperties dictionary.
virtual bool read(const dictionary &XiGProperties)
Update properties from given dictionary.
virtual ~KTS()
Destructor.
virtual tmp< volScalarField > G() const
Return the flame-wrinkling generation rate.
KTS(const dictionary &dict, const psiuMulticomponentThermo &thermo, const fluidThermoThermophysicalTransportModel &turbulence, const volScalarField &Su)
Construct from components.
A list of keywords followed by any number of values (e.g. words and numbers) or sub-dictionaries.
Base-class for combustion fluid thermodynamic properties based on compressibility.
A class for managing temporary objects.
defineTypeNameAndDebug(instability, 0)
addToRunTimeSelectionTable(XiGModel, instability, dictionary)
RASModel< momentumTransportModel > RASModel
Typedefs for turbulence, RAS and LES models for compressible flow based on the standard laminar trans...
tmp< VolField< Type > > Su(const VolField< Type > &su, const VolField< Type > &vf)
void mag(LagrangianPatchField< scalar > &f, const LagrangianPatchField< Type > &f1)
void sqrt(LagrangianPatchField< scalar > &f, const LagrangianPatchField< scalar > &f1)
autoPtr< incompressible::momentumTransportModel > turbulence(incompressible::momentumTransportModel::New(U, phi, viscosity))
fluidMulticomponentThermo & thermo