/*--------------------------------*- C++ -*----------------------------------*\ | ========= | | | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox | | \\ / O peration | Version: 1.5 | | \\ / A nd | Web: http://www.OpenFOAM.org | | \\/ M anipulation | | \*---------------------------------------------------------------------------*/ FoamFile { version 2.0; format ascii; class dictionary; object fvSchemes; } // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // // Time derivative discretisation schemes ddtSchemes { // Default scheme default Euler; } // Gradient discretisation schemes gradSchemes { // Default gradient scheme default Gauss linear; grad(p) Gauss linear; } // Convection discretisation schemes divSchemes { // Default scheme default none; div(phi,U) Gauss limitedLinearV 1; div(phid,p) Gauss limitedLinear 1; div(phiU,p) Gauss linear; div(phi,h) Gauss limitedLinear 1; div(phi,k) Gauss limitedLinear 1; div(phi,epsilon) Gauss limitedLinear 1; div(phi,R) Gauss limitedLinear 1; div(phi,omega) Gauss limitedLinear 1; div((rho*R)) Gauss linear; div(R) Gauss linear; div(U) Gauss linear; div((muEff*dev2(grad(U).T()))) Gauss linear; } // Laplacian discretisation schemes laplacianSchemes { // Default scheme default none; laplacian(muEff,U) Gauss linear corrected; laplacian(mut,U) Gauss linear corrected; laplacian(DkEff,k) Gauss linear corrected; laplacian(DepsilonEff,epsilon) Gauss linear corrected; laplacian(DREff,R) Gauss linear corrected; laplacian(DomegaEff,omega) Gauss linear corrected; laplacian((rho*(1|A(U))),p) Gauss linear corrected; laplacian(alphaEff,h) Gauss linear corrected; } // Interpolation schemes interpolationSchemes { // Default scheme default linear; } // Surface normal gradient schemes snGradSchemes { // Default scheme default corrected; } // Calculation of flux fluxRequired { // Create storage for flux for all solved variables? default no; p; } // ************************************************************************* //