SRFSimpleFoam.C
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25 
26 Application
27  SRFSimpleFoam
28 
29 Group
30  grpIncompressibleSolvers
31 
32 Description
33  Steady-state solver for incompressible, turbulent flow of non-Newtonian
34  fluids in a single rotating frame.
35 
36 \*---------------------------------------------------------------------------*/
37 
38 #include "fvCFD.H"
41 #include "SRFModel.H"
42 #include "simpleControl.H"
43 #include "fvOptions.H"
44 
45 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
46 
47 int main(int argc, char *argv[])
48 {
49  argList::addNote
50  (
51  "Steady-state solver for incompressible, turbulent flow"
52  " of non-Newtonian fluids in a single rotating frame."
53  );
54 
55  #include "postProcess.H"
56 
57  #include "addCheckCaseOptions.H"
58  #include "setRootCaseLists.H"
59  #include "createTime.H"
60  #include "createMesh.H"
61  #include "createControl.H"
62  #include "createFields.H"
63  #include "initContinuityErrs.H"
64 
65  turbulence->validate();
66 
67  // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
68 
69  Info<< "\nStarting time loop\n" << endl;
70 
71  while (simple.loop())
72  {
73  Info<< "Time = " << runTime.timeName() << nl << endl;
74 
75  // --- Pressure-velocity SIMPLE corrector
76  {
77  #include "UrelEqn.H"
78  #include "pEqn.H"
79  }
80 
81  U = Urel + SRF->U();
82 
83  laminarTransport.correct();
84  turbulence->correct();
85 
86  runTime.write();
87 
88  runTime.printExecutionTime(Info);
89  }
90 
91  Info<< "End\n" << endl;
92 
93  return 0;
94 }
95 
96 
97 // ************************************************************************* //
runTime
engineTime & runTime
Definition: createEngineTime.H:13
simple
const dictionary & simple
Definition: readFluidMultiRegionSIMPLEControls.H:1
fvOptions.H
turbulence
Info<< "Reading field U\n"<< endl;volVectorField U(IOobject("U", runTime.timeName(), mesh, IOobject::MUST_READ, IOobject::AUTO_WRITE), mesh);volScalarField rho(IOobject("rho", runTime.timeName(), mesh, IOobject::NO_READ, IOobject::AUTO_WRITE), thermo.rho());volVectorField rhoU(IOobject("rhoU", runTime.timeName(), mesh, IOobject::NO_READ, IOobject::NO_WRITE), rho *U);volScalarField rhoE(IOobject("rhoE", runTime.timeName(), mesh, IOobject::NO_READ, IOobject::NO_WRITE), rho *(e+0.5 *magSqr(U)));surfaceScalarField pos(IOobject("pos", runTime.timeName(), mesh), mesh, dimensionedScalar("pos", dimless, 1.0));surfaceScalarField neg(IOobject("neg", runTime.timeName(), mesh), mesh, dimensionedScalar("neg", dimless, -1.0));surfaceScalarField phi("phi", fvc::flux(rhoU));Info<< "Creating turbulence model\n"<< endl;autoPtr< compressible::turbulenceModel > turbulence(compressible::turbulenceModel::New(rho, U, phi, thermo))
Definition: createFields.H:94
Urel
Urel
Definition: pEqn.H:56
singlePhaseTransportModel.H
turbulentTransportModel.H
Foam::endl
Ostream & endl(Ostream &os)
Add newline and flush stream.
Definition: Ostream.H:369
setRootCaseLists.H
addCheckCaseOptions.H
Required Classes.
Foam::Info
messageStream Info
Information stream (stdout output on master, null elsewhere)
simpleControl.H
postProcess.H
Execute application functionObjects to post-process existing results.
SRFModel.H
U
U
Definition: pEqn.H:72
Foam::nl
constexpr char nl
Definition: Ostream.H:404
SRF
Info<< "Reading field p\n"<< endl;volScalarField p(IOobject("p", runTime.timeName(), mesh, IOobject::MUST_READ, IOobject::AUTO_WRITE), mesh);Info<< "Reading field Urel\n"<< endl;volVectorField Urel(IOobject("Urel", runTime.timeName(), mesh, IOobject::MUST_READ, IOobject::AUTO_WRITE), mesh);Info<< "Reading/calculating face flux field phi\n"<< endl;surfaceScalarField phi(IOobject("phi", runTime.timeName(), mesh, IOobject::READ_IF_PRESENT, IOobject::AUTO_WRITE), linearInterpolate(Urel) &mesh.Sf());label pRefCell=0;scalar pRefValue=0.0;setRefCell(p, pimple.dict(), pRefCell, pRefValue);mesh.setFluxRequired(p.name());Info<< "Creating SRF model\n"<< endl;autoPtr< SRF::SRFModel > SRF(SRF::SRFModel::New(Urel))
createMesh.H
Required Variables.
createTime.H
fvCFD.H
laminarTransport
singlePhaseTransportModel laminarTransport(U, phi)