Basic thermodynamics type based on the use of fitting functions for cp, h, s obtained from the templa...
Ostream & endl(Ostream &os)
tmp< GeometricField< Type, faPatchField, areaMesh > > div(const GeometricField< Type, faePatchField, edgeMesh > &ssf)
label min(const labelHashSet &set, label minValue=labelMax)
dimensioned< typename typeOfMag< Type >::type > magSqr(const dimensioned< Type > &dt)
fvMatrix< scalar > fvScalarMatrix
fvScalarMatrix EEqn(fvm::ddt(rho, he)+mvConvection->fvmDiv(phi, he)+fvc::ddt(rho, K)+fvc::div(phi, K)+(he.name()=="e" ? fvc::div(fvc::absolute(phi/fvc::interpolate(rho), U), p, "div(phiv,p)") :-dpdt) - fvm::laplacian(turbulence->alphaEff(), he)==Qdot+fvOptions(rho, he))
GeometricField< scalar, fvPatchField, volMesh > volScalarField
label max(const labelHashSet &set, label maxValue=labelMin)
const uniformDimensionedVectorField & g
radiation::radiationModel & rad
bool coupled(solutionDict.getOrDefault("coupledEnergyField", false))
tmp< GeometricField< Type, faPatchField, areaMesh > > laplacian(const GeometricField< Type, faPatchField, areaMesh > &vf, const word &name)
compressible::turbulenceModel & turb
autoPtr< fvMatrix< scalar > > fvMatrixAssemblyPtr