multivariateIndependentScheme.C
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28 #include "volFields.H"
29 #include "surfaceFields.H"
30 #include "upwind.H"
31 
32 
33 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
34 
35 template<class Type>
37 (
38  const fvMesh& mesh,
40  fieldTable& fields,
41  const surfaceScalarField& faceFlux,
42  Istream& schemeData
43 )
44 :
46  (
47  mesh,
48  fields,
49  faceFlux,
50  schemeData
51  ),
52  schemes_(schemeData),
53  faceFlux_(faceFlux)
54 {}
55 
56 
57 // ************************************************************************* //
Foam::surfaceFields.
multivariateIndependentScheme(const fvMesh &mesh, const typename multivariateSurfaceInterpolationScheme< Type >::fieldTable &fields, const surfaceScalarField &faceFlux, Istream &schemeData)
Construct for field, faceFlux and Istream.
An Istream is an abstract base class for all input systems (streams, files, token lists etc)...
Definition: Istream.H:57
fvMesh & mesh
Info<< "Reading field p_rgh\"<< endl;volScalarField p_rgh(IOobject("p_rgh", runTime.timeName(), mesh, IOobject::MUST_READ, IOobject::AUTO_WRITE), mesh);pressureReference pressureReference(p, p_rgh, pimple.dict(), thermo.incompressible());mesh.schemes().setFluxRequired(p_rgh.name());hydrostaticInitialisation(p_rgh, p, rho, U, gh, ghf, pRef, thermo, pimple.dict());Info<< "Creating field dpdt\"<< endl;volScalarField dpdt(IOobject("dpdt", runTime.timeName(), mesh), mesh, dimensionedScalar(p.dimensions()/dimTime, 0));Info<< "Creating field kinetic energy K\"<< endl;volScalarField K("K", 0.5 *magSqr(U));dimensionedScalar initialMass=fvc::domainIntegrate(rho);multivariateSurfaceInterpolationScheme< scalar >::fieldTable fields
Definition: createFields.H:131
Mesh data needed to do the Finite Volume discretisation.
Definition: fvMesh.H:95
Abstract base class for multi-variate surface interpolation schemes.