Files
OpenFOAM-12/applications/modules/multiphaseEuler/interfacialModels/interfaceCompositionModels/interfaceCompositionModel/interfaceCompositionModelI.H
Henry Weller 5e03874bbb multiphaseEuler: Updated to us the new phaseSolidThermophysicalTransportModel class
for thermophysical transport within stationary solid phases.  This provides a
consistent interface to heat transport within solids for single and now
multiphase solvers so that for example the wallHeatFlux functionObject can now
be used with multiphaseEuler, see tutorials/multiphaseEuler/boilingBed.
Also this development supports anisotropic thermal conductivity within the
stationary solid regions which was not possible previously.

The tutorials/multiphaseEuler/bed and tutorials/multiphaseEuler/boilingBed
tutorial cases have been updated for phaseSolidThermophysicalTransportModel by
changing the thermo type in physicalProperties.solid to heSolidThermo.  This
change will need to be made to all multiphaseEuler cases involving stationary
phases.
2023-10-11 14:53:09 +01:00

65 lines
2.0 KiB
C++

/*---------------------------------------------------------------------------*\
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\\ / A nd | Copyright (C) 2019-2023 OpenFOAM Foundation
\\/ M anipulation |
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License
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\*---------------------------------------------------------------------------*/
#include "interfaceCompositionModel.H"
#include "rhoFluidMulticomponentThermo.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
const Foam::sidedPhaseInterface&
Foam::interfaceCompositionModel::interface() const
{
return interface_;
}
const Foam::hashedWordList& Foam::interfaceCompositionModel::species() const
{
return species_;
}
const Foam::rhoFluidMulticomponentThermo&
Foam::interfaceCompositionModel::thermo() const
{
return thermo_;
}
const Foam::rhoThermo& Foam::interfaceCompositionModel::otherThermo() const
{
return otherThermo_;
}
const Foam::rhoFluidMulticomponentThermo&
Foam::interfaceCompositionModel::otherMulticomponentThermo() const
{
return refCast<const rhoFluidMulticomponentThermo>(otherThermo_);
}
// ************************************************************************* //