realizableKE.C
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28 
29 #include "realizableKE.H"
30 #include "fvOptions.H"
31 #include "bound.H"
32 
33 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
34 
35 namespace Foam
36 {
37 namespace RASModels
38 {
39 
40 // * * * * * * * * * * * Protected Member Functions * * * * * * * * * * * * //
41 
42 template<class BasicTurbulenceModel>
44 (
45  const volTensorField& gradU,
46  const volScalarField& S2,
47  const volScalarField& magS
48 )
49 {
50  tmp<volSymmTensorField> tS = dev(symm(gradU));
51  const volSymmTensorField& S = tS();
52 
54  (
55  (2*sqrt(2.0))*((S&S)&&S)
56  /(
57  magS*S2
58  + dimensionedScalar("small", dimensionSet(0, 0, -3, 0, 0), SMALL)
59  )
60  );
61 
62  tS.clear();
63 
65  (
66  (1.0/3.0)*acos(min(max(sqrt(6.0)*W, -scalar(1)), scalar(1)))
67  );
68  volScalarField As(sqrt(6.0)*cos(phis));
69  volScalarField Us(sqrt(S2/2.0 + magSqr(skew(gradU))));
70 
71  return 1.0/(A0_ + As*Us*k_/epsilon_);
72 }
73 
74 
75 template<class BasicTurbulenceModel>
77 (
78  const volTensorField& gradU,
79  const volScalarField& S2,
80  const volScalarField& magS
81 )
82 {
83  this->nut_ = rCmu(gradU, S2, magS)*sqr(k_)/epsilon_;
84  this->nut_.correctBoundaryConditions();
85  fv::options::New(this->mesh_).correct(this->nut_);
86 
87  BasicTurbulenceModel::correctNut();
88 }
89 
90 
91 template<class BasicTurbulenceModel>
93 {
94  tmp<volTensorField> tgradU = fvc::grad(this->U_);
95  volScalarField S2(2*magSqr(dev(symm(tgradU()))));
96  volScalarField magS(sqrt(S2));
97  correctNut(tgradU(), S2, magS);
98 }
99 
100 
101 template<class BasicTurbulenceModel>
103 {
104  return tmp<fvScalarMatrix>
105  (
106  new fvScalarMatrix
107  (
108  k_,
109  dimVolume*this->rho_.dimensions()*k_.dimensions()
110  /dimTime
111  )
112  );
113 }
114 
115 
116 template<class BasicTurbulenceModel>
118 {
119  return tmp<fvScalarMatrix>
120  (
121  new fvScalarMatrix
122  (
123  epsilon_,
124  dimVolume*this->rho_.dimensions()*epsilon_.dimensions()
125  /dimTime
126  )
127  );
128 }
129 
130 
131 // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
132 
133 template<class BasicTurbulenceModel>
135 (
136  const alphaField& alpha,
137  const rhoField& rho,
138  const volVectorField& U,
139  const surfaceScalarField& alphaRhoPhi,
140  const surfaceScalarField& phi,
141  const transportModel& transport,
142  const word& propertiesName,
143  const word& type
144 )
145 :
147  (
148  type,
149  alpha,
150  rho,
151  U,
152  alphaRhoPhi,
153  phi,
154  transport,
155  propertiesName
156  ),
157  A0_
158  (
160  (
161  "A0",
162  this->coeffDict_,
163  4.0
164  )
165  ),
166  C2_
167  (
169  (
170  "C2",
171  this->coeffDict_,
172  1.9
173  )
174  ),
175  sigmak_
176  (
178  (
179  "sigmak",
180  this->coeffDict_,
181  1.0
182  )
183  ),
184  sigmaEps_
185  (
187  (
188  "sigmaEps",
189  this->coeffDict_,
190  1.2
191  )
192  ),
193 
194  k_
195  (
196  IOobject
197  (
198  IOobject::groupName("k", U.group()),
199  this->runTime_.timeName(),
200  this->mesh_,
203  ),
204  this->mesh_
205  ),
206  epsilon_
207  (
208  IOobject
209  (
210  IOobject::groupName("epsilon", U.group()),
211  this->runTime_.timeName(),
212  this->mesh_,
215  ),
216  this->mesh_
217  )
218 {
219  bound(k_, this->kMin_);
220  bound(epsilon_, this->epsilonMin_);
221 
222  if (type == typeName)
223  {
224  this->printCoeffs(type);
225  }
226 }
227 
228 
229 // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
230 
231 template<class BasicTurbulenceModel>
233 {
235  {
236  A0_.readIfPresent(this->coeffDict());
237  C2_.readIfPresent(this->coeffDict());
238  sigmak_.readIfPresent(this->coeffDict());
239  sigmaEps_.readIfPresent(this->coeffDict());
240 
241  return true;
242  }
243 
244  return false;
245 }
246 
247 
248 template<class BasicTurbulenceModel>
250 {
251  if (!this->turbulence_)
252  {
253  return;
254  }
255 
256  // Local references
257  const alphaField& alpha = this->alpha_;
258  const rhoField& rho = this->rho_;
259  const surfaceScalarField& alphaRhoPhi = this->alphaRhoPhi_;
260  const volVectorField& U = this->U_;
261  volScalarField& nut = this->nut_;
262  fv::options& fvOptions(fv::options::New(this->mesh_));
263 
265 
267 
268  tmp<volTensorField> tgradU = fvc::grad(U);
269  volScalarField S2(2*magSqr(dev(symm(tgradU()))));
270  volScalarField magS(sqrt(S2));
271 
272  volScalarField eta(magS*k_/epsilon_);
273  volScalarField C1(max(eta/(scalar(5) + eta), scalar(0.43)));
274 
275  volScalarField G(this->GName(), nut*(tgradU() && dev(twoSymm(tgradU()))));
276 
277  // Update epsilon and G at the wall
278  epsilon_.boundaryFieldRef().updateCoeffs();
279 
280  // SAF: limiting thermo->nu(). If psiThermo is used rho might be < 0
281  // temporarily when p < 0 then nu < 0 which needs limiting
282  volScalarField nuLimited
283  (
284  max
285  (
286  this->nu(),
287  dimensionedScalar(this->nu()().dimensions(), Zero)
288  )
289  );
290 
291  // Dissipation equation
292  tmp<fvScalarMatrix> epsEqn
293  (
294  fvm::ddt(alpha, rho, epsilon_)
295  + fvm::div(alphaRhoPhi, epsilon_)
296  - fvm::laplacian(alpha*rho*DepsilonEff(), epsilon_)
297  ==
298  C1*alpha*rho*magS*epsilon_
299  - fvm::Sp
300  (
301  C2_*alpha*rho*epsilon_/(k_ + sqrt(nuLimited*epsilon_)),
302  epsilon_
303  )
304  + epsilonSource()
305  + fvOptions(alpha, rho, epsilon_)
306  );
307 
308  epsEqn.ref().relax();
309  fvOptions.constrain(epsEqn.ref());
310  epsEqn.ref().boundaryManipulate(epsilon_.boundaryFieldRef());
311  solve(epsEqn);
312  fvOptions.correct(epsilon_);
313  bound(epsilon_, this->epsilonMin_);
314 
315 
316  // Turbulent kinetic energy equation
317 
319  (
320  fvm::ddt(alpha, rho, k_)
321  + fvm::div(alphaRhoPhi, k_)
322  - fvm::laplacian(alpha*rho*DkEff(), k_)
323  ==
324  alpha*rho*G
325  - fvm::SuSp(2.0/3.0*alpha*rho*divU, k_)
326  - fvm::Sp(alpha*rho*epsilon_/k_, k_)
327  + kSource()
328  + fvOptions(alpha, rho, k_)
329  );
330 
331  kEqn.ref().relax();
332  fvOptions.constrain(kEqn.ref());
333  solve(kEqn);
334  fvOptions.correct(k_);
335  bound(k_, this->kMin_);
336 
337  correctNut(tgradU(), S2, magS);
338 }
339 
340 
341 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
342 
343 } // End namespace RASModels
344 } // End namespace Foam
345 
346 // ************************************************************************* //
Foam::IOobject
Defines the attributes of an object for which implicit objectRegistry management is supported,...
Definition: IOobject.H:169
realizableKE.H
Foam::symm
dimensionedSymmTensor symm(const dimensionedSymmTensor &dt)
Definition: dimensionedSymmTensor.C:84
Foam::IOobject::AUTO_WRITE
Definition: IOobject.H:194
Foam::fvc::grad
tmp< GeometricField< typename outerProduct< vector, Type >::type, fvPatchField, volMesh >> grad(const GeometricField< Type, fvsPatchField, surfaceMesh > &ssf)
Definition: fvcGrad.C:54
Foam::RASModels::realizableKE::epsilonSource
virtual tmp< fvScalarMatrix > epsilonSource() const
Definition: realizableKE.C:117
fvOptions.H
Foam::word
A class for handling words, derived from Foam::string.
Definition: word.H:65
Foam::fv::optionList::correct
void correct(GeometricField< Type, fvPatchField, volMesh > &field)
Apply correction to field.
Definition: fvOptionListTemplates.C:355
Foam::tmp::clear
void clear() const noexcept
Definition: tmpI.H:287
Foam::skew
dimensionedTensor skew(const dimensionedTensor &dt)
Definition: dimensionedTensor.C:138
Foam::constant::universal::G
const dimensionedScalar G
Newtonian constant of gravitation.
Foam::tmp
A class for managing temporary objects.
Definition: PtrList.H:61
Foam::Zero
static constexpr const zero Zero
Global zero (0)
Definition: zero.H:131
Foam::RASModel
Templated abstract base class for RAS turbulence models.
Definition: RASModel.H:52
Foam::fv::options::New
static options & New(const fvMesh &mesh)
Construct fvOptions and register to database if not present.
Definition: fvOptions.C:103
Foam::constant::atomic::alpha
const dimensionedScalar alpha
Fine-structure constant: default SI units: [].
Definition: readThermalProperties.H:212
Foam::bound
volScalarField & bound(volScalarField &, const dimensionedScalar &lowerBound)
Bound the given scalar field if it has gone unbounded.
Definition: bound.C:35
Foam::read
bool read(const char *buf, int32_t &val)
Same as readInt32.
Definition: int32.H:108
Foam::RASModels::realizableKE::read
virtual bool read()
Re-read model coefficients if they have changed.
Definition: realizableKE.C:232
Foam::fvc::div
tmp< GeometricField< Type, fvPatchField, volMesh > > div(const GeometricField< Type, fvsPatchField, surfaceMesh > &ssf)
Definition: fvcDiv.C:49
Foam::dimensionSet
Dimension set for the base types, which can be used to implement rigorous dimension checking for alge...
Definition: dimensionSet.H:108
rho
rho
Definition: readInitialConditions.H:88
Foam::min
label min(const labelHashSet &set, label minValue=labelMax)
Find the min value in labelHashSet, optionally limited by second argument.
Definition: hashSets.C:33
Foam::RASModels::realizableKE::rCmu
tmp< volScalarField > rCmu(const volTensorField &gradU, const volScalarField &S2, const volScalarField &magS)
Definition: realizableKE.C:44
Foam::magSqr
dimensioned< typename typeOfMag< Type >::type > magSqr(const dimensioned< Type > &dt)
nu
volScalarField & nu
Definition: readMechanicalProperties.H:176
Foam::dimTime
const dimensionSet dimTime(0, 0, 1, 0, 0, 0, 0)
Definition: dimensionSets.H:53
Foam::fvm::SuSp
tmp< fvMatrix< Type > > SuSp(const volScalarField::Internal &, const GeometricField< Type, fvPatchField, volMesh > &)
Foam::tmp::ref
T & ref() const
Definition: tmpI.H:227
Foam::fvm::Sp
tmp< fvMatrix< Type > > Sp(const volScalarField::Internal &, const GeometricField< Type, fvPatchField, volMesh > &)
fvOptions
fv::options & fvOptions
Definition: setRegionFluidFields.H:23
Foam::RASModels::realizableKE::kSource
virtual tmp< fvScalarMatrix > kSource() const
Definition: realizableKE.C:102
Foam::fvm::laplacian
tmp< fvMatrix< Type > > laplacian(const GeometricField< Type, fvPatchField, volMesh > &vf, const word &name)
Definition: fvmLaplacian.C:48
bound.H
Bound the given scalar field if it has gone unbounded.
correct
fvOptions correct(rho)
Foam::solve
SolverPerformance< Type > solve(faMatrix< Type > &, Istream &)
Solve returning the solution statistics given convergence tolerance.
divU
zeroField divU
Definition: alphaSuSp.H:3
Foam::dimensionedScalar
dimensioned< scalar > dimensionedScalar
Dimensioned scalar obtained from generic dimensioned type.
Definition: dimensionedScalarFwd.H:42
phi
surfaceScalarField & phi
Definition: setRegionFluidFields.H:8
Foam::max
label max(const labelHashSet &set, label maxValue=labelMin)
Find the max value in labelHashSet, optionally limited by second argument.
Definition: hashSets.C:47
Foam::fv::options
Finite-volume options.
Definition: fvOptions.H:55
Foam::RASModel::rhoField
BasicTurbulenceModel::rhoField rhoField
Definition: RASModel.H:98
Foam::dimensioned
Generic dimensioned Type class.
Definition: dimensionedScalarFwd.H:42
Foam
Namespace for OpenFOAM.
Definition: atmBoundaryLayer.C:33
Foam::RASModels::realizableKE::correctNut
virtual void correctNut()
Definition: realizableKE.C:92
Foam::RASModel::alphaField
BasicTurbulenceModel::alphaField alphaField
Definition: RASModel.H:97
Foam::RASModel::transportModel
BasicTurbulenceModel::transportModel transportModel
Definition: RASModel.H:99
U
U
Definition: pEqn.H:72
Foam::fvm::ddt
tmp< fvMatrix< Type > > ddt(const GeometricField< Type, fvPatchField, volMesh > &vf)
Definition: fvmDdt.C:48
Foam::sqr
dimensionedSymmTensor sqr(const dimensionedVector &dv)
Definition: dimensionedSymmTensor.C:51
Foam::sqrt
dimensionedScalar sqrt(const dimensionedScalar &ds)
Definition: dimensionedScalar.C:144
Foam::acos
dimensionedScalar acos(const dimensionedScalar &ds)
Definition: dimensionedScalar.C:268
Us
Us
Definition: createFaFields.H:51
Foam::RASModels::realizableKE::realizableKE
realizableKE(const alphaField &alpha, const rhoField &rho, const volVectorField &U, const surfaceScalarField &alphaRhoPhi, const surfaceScalarField &phi, const transportModel &transport, const word &propertiesName=turbulenceModel::propertiesName, const word &type=typeName)
Construct from components.
Definition: realizableKE.C:135
Foam::type
fileName::Type type(const fileName &name, const bool followLink=true)
Return the file type: DIRECTORY or FILE, normally following symbolic links.
Definition: MSwindows.C:590
Foam::fvMatrix
A special matrix type and solver, designed for finite volume solutions of scalar equations....
Definition: fvPatchField.H:68
Foam::eddyViscosity
Eddy viscosity turbulence model base class.
Definition: eddyViscosity.H:55
Foam::IOobject::groupName
static word groupName(StringType base, const word &group)
Create dot-delimited name.group string.
nut
scalar nut
Definition: evaluateNearWall.H:5
Foam::dimVolume
const dimensionSet dimVolume(pow3(dimLength))
Definition: dimensionSets.H:60
Foam::GeometricField< tensor, fvPatchField, volMesh >
Foam::fvm::div
tmp< fvMatrix< Type > > div(const surfaceScalarField &flux, const GeometricField< Type, fvPatchField, volMesh > &vf, const word &name)
Definition: fvmDiv.C:48
Foam::RASModels::realizableKE::correct
virtual void correct()
Solve the turbulence equations and correct the turbulence viscosity.
Definition: realizableKE.C:249
Foam::twoSymm
dimensionedSymmTensor twoSymm(const dimensionedSymmTensor &dt)
Definition: dimensionedSymmTensor.C:95
Foam::fvc::absolute
tmp< surfaceScalarField > absolute(const tmp< surfaceScalarField > &tphi, const volVectorField &U)
Return the given relative flux in absolute form.
Definition: fvcMeshPhi.C:190
phis
edgeScalarField phis(IOobject("phis", runTime.timeName(), mesh, IOobject::NO_READ, IOobject::NO_WRITE), linearEdgeInterpolate(Us) &aMesh.Le())
Foam::IOobject::MUST_READ
Definition: IOobject.H:185
Foam::dev
dimensionedSymmTensor dev(const dimensionedSymmTensor &dt)
Definition: dimensionedSymmTensor.C:106
Foam::cos
dimensionedScalar cos(const dimensionedScalar &ds)
Definition: dimensionedScalar.C:265