2010-11-24 23:08:12 +00:00
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/*--------------------------------*- C++ -*----------------------------------*\
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| ========= | |
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2013-12-11 16:09:41 +00:00
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| \\ / F ield | foam-extend: Open Source CFD |
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2016-06-20 15:00:40 +00:00
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| \\ / O peration | Version: 4.0 |
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2015-05-17 13:55:59 +00:00
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| \\ / A nd | Web: http://www.foam-extend.org |
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2010-11-24 23:08:12 +00:00
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| \\/ M anipulation | |
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\*---------------------------------------------------------------------------*/
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FoamFile
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{
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version 2.0;
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format ascii;
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class dictionary;
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object changeDictionaryDict;
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}
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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dictionaryReplacement
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{
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U
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{
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internalField uniform ( 0.01 0 0 );
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boundaryField
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{
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minX
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{
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type fixedValue;
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value uniform (0.01 0 0);
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}
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maxX
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{
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type inletOutlet;
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inletValue uniform (0 0 0);
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}
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maxY
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{
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type fixedValue;
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value uniform (0 0 0);
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}
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minZ
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{
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type fixedValue;
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value uniform (0 0 0);
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}
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maxZ
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{
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type fixedValue;
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value uniform (0 0 0);
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}
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topAir_to_leftSolid
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{
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type fixedValue;
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value uniform (0 0 0);
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}
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topAir_to_heater
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{
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type fixedValue;
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value uniform (0 0 0);
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}
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topAir_to_rightSolid
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{
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type fixedValue;
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value uniform (0 0 0);
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}
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}
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}
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T
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{
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internalField uniform 300;
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boundaryField
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{
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maxY
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{
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type fixedValue;
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value $internalField;
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}
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minX
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{
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type fixedValue;
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value $internalField;
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}
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maxX
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{
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type fixedValue;
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value $internalField;
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}
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minZ
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{
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type fixedValue;
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value $internalField;
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}
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maxZ
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{
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type fixedValue;
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value $internalField;
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}
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topAir_to_leftSolid
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{
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type solidWallMixedTemperatureCoupled;
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neighbourFieldName T;
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2015-08-05 11:34:57 +00:00
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Kappa Kappa;
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2010-11-24 23:08:12 +00:00
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value $internalField;
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}
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topAir_to_heater
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{
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type solidWallMixedTemperatureCoupled;
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neighbourFieldName T;
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2015-08-05 11:34:57 +00:00
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Kappa Kappa;
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2010-11-24 23:08:12 +00:00
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value $internalField;
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}
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topAir_to_rightSolid
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{
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type solidWallMixedTemperatureCoupled;
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neighbourFieldName T;
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2015-08-05 11:34:57 +00:00
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Kappa Kappa;
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2010-11-24 23:08:12 +00:00
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value $internalField;
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}
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}
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}
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epsilon
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{
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// Set the value on all bc to non-zero. Not used in simulation
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// since zeroGradient; only used in initialisation.
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boundaryField
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{
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minX
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{
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type fixedValue;
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value $internalField;
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}
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maxX
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{
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type zeroGradient;
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value $internalField;
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}
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minY
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{
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type zeroGradient;
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value $internalField;
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}
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maxY
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{
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type zeroGradient;
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value $internalField;
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}
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minZ
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{
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type zeroGradient;
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value $internalField;
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}
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maxZ
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{
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type zeroGradient;
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value $internalField;
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}
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topAir_to_leftSolid
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{
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type zeroGradient;
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value $internalField;
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}
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topAir_to_heater
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{
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type zeroGradient;
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value $internalField;
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}
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topAir_to_rightSolid
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{
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type zeroGradient;
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value $internalField;
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}
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}
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}
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k
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{
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internalField uniform 0.1;
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boundaryField
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{
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minX
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{
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type fixedValue;
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value $internalField;
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}
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maxX
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{
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type zeroGradient;
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value $internalField;
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}
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maxY
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{
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type zeroGradient;
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value $internalField;
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}
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minZ
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{
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type zeroGradient;
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value $internalField;
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}
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maxZ
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{
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type zeroGradient;
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value $internalField;
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}
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topAir_to_leftSolid
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{
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type zeroGradient;
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value $internalField;
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}
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topAir_to_heater
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{
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type zeroGradient;
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value $internalField;
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}
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topAir_to_rightSolid
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{
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type zeroGradient;
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value $internalField;
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}
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}
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}
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p
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{
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internalField uniform 1E5;
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boundaryField
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{
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minX
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{
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type buoyantPressure;
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value $internalField;
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}
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maxX
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{
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type waveTransmissive;
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field p;
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inletOutlet off;
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correctSupercritical off;
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phi phi;
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rho rho;
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psi psi;
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gamma 1.4; // cp/cv
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fieldInf 1e5;
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lInf 0.40; // double length of domain
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value $internalField;
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}
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maxY
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{
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type buoyantPressure;
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value $internalField;
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}
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minZ
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{
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type buoyantPressure;
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value $internalField;
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}
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maxZ
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{
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type buoyantPressure;
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value $internalField;
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}
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topAir_to_leftSolid
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{
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type buoyantPressure;
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value $internalField;
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}
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topAir_to_heater
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{
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type buoyantPressure;
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value $internalField;
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}
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topAir_to_rightSolid
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{
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type buoyantPressure;
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value $internalField;
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}
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}
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}
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}
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2016-06-21 12:50:08 +00:00
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2010-11-24 23:08:12 +00:00
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// ************************************************************************* //
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