/*--------------------------------*- C++ -*----------------------------------*\ | ========= | | | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox | | \\ / O peration | Version: plus | | \\ / A nd | Web: www.OpenFOAM.com | | \\/ M anipulation | | \*---------------------------------------------------------------------------*/ FoamFile { version 2.0; format ascii; class dictionary; object changeDictionaryDict; } // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // U { internalField uniform (0.1 0 0); boundaryField { ".*" { type fixedValue; value uniform (0 0 0); } minX { type fixedValue; value uniform (0.1 0 0); } maxX { type inletOutlet; inletValue uniform (0 0 0); value uniform (0.1 0 0); } } } T { internalField uniform 300; boundaryField { ".*" { type zeroGradient; } minX { type fixedValue; value uniform 300; } maxX { type inletOutlet; inletValue uniform 300; value uniform 300; } "topAir_to_.*" { type compressible::turbulentTemperatureCoupledBaffleMixed; Tnbr T; kappaMethod fluidThermo; value uniform 300; } } } epsilon { internalField uniform 0.01; boundaryField { ".*" { type epsilonWallFunction; value uniform 0.01; } minX { type fixedValue; value uniform 0.01; } maxX { type inletOutlet; inletValue uniform 0.01; value uniform 0.01; } } } k { internalField uniform 0.1; boundaryField { ".*" { type kqRWallFunction; value uniform 0.1; } minX { type fixedValue; value uniform 0.1; } maxX { type inletOutlet; inletValue uniform 0.1; value uniform 0.1; } } } p_rgh { internalField uniform 1e5; boundaryField { ".*" { type fixedFluxPressure; value uniform 1e5; } maxX { type fixedValue; value uniform 1e5; } } } p { internalField uniform 1e5; boundaryField { ".*" { type calculated; value uniform 1e5; } maxX { type calculated; value uniform 1e5; } } } // ************************************************************************* //