OpenFOAM-5.x/tutorials/heatTransfer/chtMultiRegionSimpleFoam/multiRegionHeaterRadiation/system/bottomAir/changeDictionaryDict
Henry Weller 8aac0a1808 radiation: Corrected the name of the radiative heat flux from Qr to qr
The standard naming convention for heat flux is "q" and this is used for the
conductive and convective heat fluxes is OpenFOAM.  The use of "Qr" for
radiative heat flux is an anomaly which causes confusion, particularly for
boundary conditions in which "Q" is used to denote power in Watts.  The name of
the radiative heat flux has now been corrected to "qr" and all models, boundary
conditions and tutorials updated.
2017-04-08 22:23:40 +01:00

184 lines
3.7 KiB
C++

/*--------------------------------*- C++ -*----------------------------------*\
| ========= | |
| \\ / F ield | OpenFOAM: The Open Source CFD Toolbox |
| \\ / O peration | Version: dev |
| \\ / A nd | Web: www.OpenFOAM.org |
| \\/ M anipulation | |
\*---------------------------------------------------------------------------*/
FoamFile
{
version 2.0;
format ascii;
class dictionary;
object changeDictionaryDict;
}
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
boundary
{
minX
{
type wall;
}
maxX
{
type wall;
}
}
U
{
internalField uniform (0.01 0 0);
boundaryField
{
".*"
{
type fixedValue;
value uniform (0 0 0);
}
}
}
T
{
internalField uniform 300;
boundaryField
{
".*"
{
type zeroGradient;
}
"bottomAir_to_.*"
{
type compressible::turbulentTemperatureRadCoupledMixed;
Tnbr T;
kappaMethod fluidThermo;
qrNbr none;
qr qr;
value uniform 300;
}
}
}
epsilon
{
internalField uniform 0.01;
boundaryField
{
".*"
{
type epsilonWallFunction;
value uniform 0.01;
}
}
}
k
{
internalField uniform 0.1;
boundaryField
{
".*"
{
type kqRWallFunction;
value uniform 0.1;
}
}
}
p_rgh
{
internalField uniform 1e5;
boundaryField
{
".*"
{
type fixedFluxPressure;
value uniform 1e5;
}
}
}
p
{
internalField uniform 1e5;
boundaryField
{
".*"
{
type calculated;
value uniform 1e5;
}
}
}
qr
{
internalField uniform 0;
boundaryField
{
".*"
{
type greyDiffusiveRadiationViewFactor;
emissivityMode lookup;
qro uniform 0;
emissivity uniform 1.0;
value uniform 0;
}
"bottomAir_to_.*"
{
type greyDiffusiveRadiationViewFactor;
emissivityMode solidRadiation;
qro uniform 0;
value uniform 0;
}
}
}
G
{
internalField uniform 0;
boundaryField
{
".*"
{
type MarshakRadiation;
emissivityMode lookup;
emissivity uniform 1.0;
value uniform 0;
}
"bottomAir_to_.*"
{
type MarshakRadiation;
emissivityMode solidRadiation;
value uniform 0;
}
}
}
IDefault
{
internalField uniform 0;
boundaryField
{
".*"
{
type greyDiffusiveRadiation;
emissivityMode lookup;
emissivity uniform 1.0;
value uniform 0;
}
"bottomAir_to_.*"
{
type greyDiffusiveRadiation;
emissivityMode solidRadiation;
value uniform 0;
}
}
}
// ************************************************************************* //