buoyantPimpleFoam.C
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23 
24 Application
25  buoyantPimpleFoam
26 
27 Description
28  Transient solver for buoyant, turbulent flow of compressible fluids for
29  ventilation and heat-transfer, with optional mesh motion and
30  mesh topology changes.
31 
32  Uses the flexible PIMPLE (PISO-SIMPLE) solution for time-resolved and
33  pseudo-transient simulations.
34 
35 \*---------------------------------------------------------------------------*/
36 
37 #include "fvCFD.H"
38 #include "dynamicFvMesh.H"
39 #include "fluidThermo.H"
42 #include "pimpleControl.H"
43 #include "pressureReference.H"
45 #include "CorrectPhi.H"
46 #include "fvModels.H"
47 #include "fvConstraints.H"
48 #include "localEulerDdtScheme.H"
49 #include "fvcSmooth.H"
50 
51 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
52 
53 int main(int argc, char *argv[])
54 {
55  #include "postProcess.H"
56 
57  #include "setRootCaseLists.H"
58  #include "createTime.H"
59  #include "createDynamicFvMesh.H"
60  #include "createDyMControls.H"
61  #include "initContinuityErrs.H"
62  #include "createFields.H"
63  #include "createFieldRefs.H"
64  #include "createRhoUfIfPresent.H"
65 
66  turbulence->validate();
67 
68  if (!LTS)
69  {
70  #include "compressibleCourantNo.H"
71  #include "setInitialDeltaT.H"
72  }
73 
74  // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
75 
76  Info<< "\nStarting time loop\n" << endl;
77 
78  while (pimple.run(runTime))
79  {
80  #include "readDyMControls.H"
81 
82  // Store divrhoU from the previous mesh so that it can be mapped
83  // and used in correctPhi to ensure the corrected phi has the
84  // same divergence
85  autoPtr<volScalarField> divrhoU;
86  if (correctPhi)
87  {
88  divrhoU = new volScalarField
89  (
90  "divrhoU",
92  );
93  }
94 
95  if (LTS)
96  {
97  #include "setRDeltaT.H"
98  }
99  else
100  {
101  #include "compressibleCourantNo.H"
102  #include "setDeltaT.H"
103  }
104 
105  runTime++;
106 
107  Info<< "Time = " << runTime.timeName() << nl << endl;
108 
109  // --- Pressure-velocity PIMPLE corrector loop
110  while (pimple.loop())
111  {
112  if (!pimple.flow())
113  {
114  if (pimple.models())
115  {
116  fvModels.correct();
117  }
118 
119  if (pimple.thermophysics())
120  {
121  #include "EEqn.H"
122  }
123  }
124  else
125  {
126  if (pimple.firstPimpleIter() || moveMeshOuterCorrectors)
127  {
128  // Store momentum to set rhoUf for introduced faces.
129  autoPtr<volVectorField> rhoU;
130  if (rhoUf.valid())
131  {
132  rhoU = new volVectorField("rhoU", rho*U);
133  }
134 
136 
137  // Do any mesh changes
138  mesh.update();
139 
140  if (mesh.changing())
141  {
142  gh = (g & mesh.C()) - ghRef;
143  ghf = (g & mesh.Cf()) - ghRef;
144 
145  MRF.update();
146 
147  if (correctPhi)
148  {
149  #include "correctPhi.H"
150  }
151 
152  if (checkMeshCourantNo)
153  {
154  #include "meshCourantNo.H"
155  }
156  }
157  }
158 
159  if (pimple.firstPimpleIter() && !pimple.simpleRho())
160  {
161  #include "rhoEqn.H"
162  }
163 
164  if (pimple.models())
165  {
166  fvModels.correct();
167  }
168 
169  #include "UEqn.H"
170 
171  if (pimple.thermophysics())
172  {
173  #include "EEqn.H"
174  }
175 
176  // --- Pressure corrector loop
177  while (pimple.correct())
178  {
179  #include "pEqn.H"
180  }
181 
182  if (pimple.turbCorr())
183  {
184  turbulence->correct();
185  thermophysicalTransport->correct();
186  }
187  }
188  }
189 
190  rho = thermo.rho();
191 
192  runTime.write();
193 
194  Info<< "ExecutionTime = " << runTime.elapsedCpuTime() << " s"
195  << " ClockTime = " << runTime.elapsedClockTime() << " s"
196  << nl << endl;
197  }
198 
199  Info<< "End\n" << endl;
200 
201  return 0;
202 }
203 
204 
205 // ************************************************************************* //
fluidReactionThermo & thermo
Definition: createFields.H:28
pimpleNoLoopControl & pimple
IOMRFZoneList & MRF
tmp< GeometricField< Type, fvPatchField, volMesh > > div(const GeometricField< Type, fvsPatchField, surfaceMesh > &ssf)
Definition: fvcDiv.C:47
virtual void correct()
Correct the fvModels.
Definition: fvModels.C:316
engineTime & runTime
Ostream & endl(Ostream &os)
Add newline and flush stream.
Definition: Ostream.H:251
virtual void preUpdateMesh()
Prepare for mesh update.
Definition: fvModels.C:240
correctPhi
checkMeshCourantNo
GeometricField< vector, fvPatchField, volMesh > volVectorField
Definition: volFieldsFwd.H:58
GeometricField< scalar, fvPatchField, volMesh > volScalarField
Definition: volFieldsFwd.H:57
Creates and initialises the velocity field rhoUf if required.
dynamicFvMesh & mesh
phi
Definition: correctPhi.H:3
Info<< "Reading field U\"<< 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(dimless, 1.0));surfaceScalarField neg(IOobject("neg", runTime.timeName(), mesh), mesh, dimensionedScalar(dimless, -1.0));surfaceScalarField phi("phi", fvc::flux(rhoU));Info<< "Creating turbulence model\"<< endl;autoPtr< compressible::momentumTransportModel > turbulence(compressible::momentumTransportModel::New(rho, U, phi, thermo))
Definition: createFields.H:94
const surfaceScalarField & ghf
static const char nl
Definition: Ostream.H:260
bool LTS
Definition: createRDeltaT.H:1
fluidReactionThermophysicalTransportModel & thermophysicalTransport
moveMeshOuterCorrectors
Foam::fvModels & fvModels
Calculates and outputs the mean and maximum Courant Numbers.
tmp< surfaceScalarField > absolute(const tmp< surfaceScalarField > &tphi, const volVectorField &U)
Return the given relative flux in absolute form.
Definition: fvcMeshPhi.C:188
U
Definition: pEqn.H:72
const volScalarField & gh
messageStream Info
const dimensionedVector & g
Execute application functionObjects to post-process existing results.
autoPtr< surfaceVectorField > rhoUf
Provides functions smooth spread and sweep which use the FaceCellWave algorithm to smooth and redistr...