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/*--------------------------------*- C++ -*----------------------------------*\
========= |
\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
\\ / O peration | Website: https://openfoam.org
\\ / A nd | Version: dev
\\/ M anipulation |
\*---------------------------------------------------------------------------*/
FoamFile
{
format ascii;
class dictionary;
location "constant";
object fvModels;
}
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
phaseTurbulenceStabilisationGas
{
type phaseTurbulenceStabilisation;
libs ("libmultiphaseEulerFvModels.so");
phase gas;
alphaInversion 0.1;
}
phaseTurbulenceStabilisationLiquid
{
type phaseTurbulenceStabilisation;
libs ("libmultiphaseEulerFvModels.so");
phase liquid;
alphaInversion 0.1;
}
bedHeat
{
type semiImplicitSource;
cellZone bed;
volumeMode absolute;
sources
{
e.solid
{
explicit
{
type scale;
value 2.3e4;
scale
{
type linearRamp;
start 0.05;
duration 0.1;
}
}
implicit 0;
}
}
}
heatTransferLimitedPhaseChange
{
type heatTransferLimitedPhaseChange;
libs ("libmultiphaseEulerFvModels.so");
phases (liquid gas);
energySemiImplicit yes;
pressureImplicit yes;
saturationTemperature
{
type table;
format csv;
nHeaderLine 1;
units ([bar] [K]);
columns (1 0);
mergeSeparators no;
file "constant/water-saturation.csv";
outOfBounds clamp;
interpolationScheme linear;
}
}
wallBoiling
{
type wallBoiling;
libs ("libmultiphaseEulerFvModels.so");
phases (liquid gas);
energySemiImplicit no;
saturationTemperature
{
$../../heatTransferLimitedPhaseChange/saturationTemperature;
}
partitioningModel
{
type Lavieville;
alphaCrit 0.2;
}
nucleationSiteModel
{
type LemmertChawla;
Cn 1;
NRef 30000000;
deltaTRef 10;
}
departureDiameterModel
{
type TolubinskiKostanchuk;
dRef 0.00024;
dMax 0.0014;
dMin 1e-06;
}
departureFrequencyModel
{
type KocamustafaogullariIshii;
Cf 1.18;
}
}
solidSurfaceBoiling
{
type phaseSurfaceBoiling;
libs ("libmultiphaseEulerFvModels.so");
phase solid;
phases (liquid gas);
energySemiImplicit no;
saturationTemperature
{
$../../heatTransferLimitedPhaseChange/saturationTemperature;
}
partitioningModel
{
type Lavieville;
alphaCrit 0.2;
}
nucleationSiteModel
{
type LemmertChawla;
}
departureDiameterModel
{
type TolubinskiKostanchuk;
}
departureFrequencyModel
{
type KocamustafaogullariIshii;
Cf 1.18;
}
#print
}
// ************************************************************************* //