openfoam/tutorials/multiphase/icoReactingMultiPhaseInterFoam/inertMultiphaseMultiComponent/system/setFieldsDict
2020-06-29 17:27:54 +01:00

86 lines
2.3 KiB
C++

/*--------------------------------*- C++ -*----------------------------------*\
| ========= | |
| \\ / F ield | OpenFOAM: The Open Source CFD Toolbox |
| \\ / O peration | Version: v2006 |
| \\ / A nd | Website: www.openfoam.com |
| \\/ M anipulation | |
\*---------------------------------------------------------------------------*/
FoamFile
{
version 2.0;
format ascii;
class dictionary;
location "system";
object setFieldsDict;
}
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
// NOTE: The inert specie is defined everywhere.
// As it is not solved it fulfills the thermo requirement of Sum Y = 1
// in phases where there are not species
defaultFieldValues
(
volScalarFieldValue alpha.gas 0
volScalarFieldValue alpha.liquid 0
volScalarFieldValue alpha.oil 0
volScalarFieldValue alpha.mercury 0
volScalarFieldValue air.gas 1
volScalarFieldValue vapour.gas 0
volScalarFieldValue CO2.gas 0
volScalarFieldValue O2.liquid 0
volScalarFieldValue water.liquid 1
);
regions
(
boxToCell
{
box (-0.1 -0.1 0) (0.5 0.5 1);
fieldValues
(
volScalarFieldValue alpha.liquid 1
volScalarFieldValue O2.liquid 0.01
volScalarFieldValue water.liquid 0.99
);
}
boxToCell
{
box (0.5 0 0) (1 0.5 1);
fieldValues
(
volScalarFieldValue alpha.oil 1
);
}
boxToCell
{
box (0.5 0.5 0) (1 1.1 1);
fieldValues
(
volScalarFieldValue alpha.mercury 1
);
}
boxToCell
{
box (0 0.5 0) (0.5 1.1 1);
fieldValues
(
volScalarFieldValue alpha.gas 1
volScalarFieldValue vapour.gas 0.3
volScalarFieldValue CO2.gas 0.2
volScalarFieldValue air.gas 0.5
);
}
);
// ************************************************************************* //