v2WallFunctionFvPatchScalarField.C
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25 
28 #include "turbulenceModel.H"
30 
31 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
32 
33 namespace Foam
34 {
35 namespace RASModels
36 {
37 
38 // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
39 
41 (
42  const fvPatch& p,
44 )
45 :
47 {}
48 
49 
51 (
53  const fvPatch& p,
55  const fvPatchFieldMapper& mapper
56 )
57 :
58  fixedValueFvPatchField<scalar>(ptf, p, iF, mapper)
59 {}
60 
61 
63 (
64  const fvPatch& p,
66  const dictionary& dict
67 )
68 :
70 {}
71 
72 
74 (
76 )
77 :
79 {}
80 
81 
83 (
84  const v2WallFunctionFvPatchScalarField& v2wfpsf,
86 )
87 :
89 {}
90 
91 
92 // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
93 
95 {
96  if (updated())
97  {
98  return;
99  }
100 
101  const label patchi = patch().index();
102 
103  const turbulenceModel& turbModel = db().lookupObject<turbulenceModel>
104  (
106  (
108  internalField().group()
109  )
110  );
111 
113  nutWallFunctionFvPatchScalarField::nutw(turbModel, patchi);
114 
115  const scalarField& y = turbModel.y()[patchi];
116 
117  const tmp<volScalarField> tk = turbModel.k();
118  const volScalarField& k = tk();
119 
120  const tmp<scalarField> tnuw = turbModel.nu(patchi);
121  const scalarField& nuw = tnuw();
122 
123  const scalar Cmu25 = pow025(nutw.Cmu());
124 
125  scalarField& v2 = *this;
126 
127  // Set v2 wall values
128  forAll(v2, facei)
129  {
130  label celli = patch().faceCells()[facei];
131 
132  scalar uTau = Cmu25*sqrt(k[celli]);
133 
134  scalar yPlus = uTau*y[facei]/nuw[facei];
135 
136  if (yPlus > nutw.yPlusLam())
137  {
138  scalar Cv2 = 0.193;
139  scalar Bv2 = -0.94;
140  v2[facei] = Cv2/nutw.kappa()*log(yPlus) + Bv2;
141  }
142  else
143  {
144  scalar Cv2 = 0.193;
145  v2[facei] = Cv2*pow4(yPlus);
146  }
147 
148  v2[facei] *= sqr(uTau);
149  }
150 
152 
153  // TODO: perform averaging for cells sharing more than one boundary face
154 }
155 
156 
157 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
158 
160 (
163 );
164 
165 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
166 
167 } // End namespace RASModels
168 } // End namespace Foam
169 
170 // ************************************************************************* //
const char *const group
Group name for atomic constants.
virtual void updateCoeffs()
Update the coefficients associated with the patch field.
dictionary dict
#define forAll(list, i)
Loop across all elements in list.
Definition: UList.H:434
intWM_LABEL_SIZE_t label
A label is an int32_t or int64_t as specified by the pre-processor macro WM_LABEL_SIZE.
Definition: label.H:59
dimensionedScalar log(const dimensionedScalar &ds)
label index() const
Return the index of this patch in the fvBoundaryMesh.
Definition: fvPatch.H:173
A list of keyword definitions, which are a keyword followed by any number of values (e...
Definition: dictionary.H:158
bool updated() const
Return true if the boundary condition has already been updated.
Definition: fvPatchField.H:356
This boundary condition provides a turbulence stress normal to streamlines wall function condition fo...
dimensionedSymmTensor sqr(const dimensionedVector &dv)
virtual tmp< volScalarField > nu() const =0
Return the laminar viscosity.
dimensionedScalar sqrt(const dimensionedScalar &ds)
A finiteVolume patch using a polyPatch and a fvBoundaryMesh.
Definition: fvPatch.H:61
dimensionedScalar pow025(const dimensionedScalar &ds)
Abstract base class with a fat-interface to all derived classes covering all possible ways in which t...
Definition: fvPatchField.H:66
label k
Boltzmann constant.
const Type & lookupObject(const word &name) const
Lookup and return the object of the given Type.
Abstract base class for turbulence models (RAS, LES and laminar).
Macros for easy insertion into run-time selection tables.
virtual tmp< volScalarField > k() const =0
Return the turbulence kinetic energy.
scalar uTau
scalar y
This boundary condition provides a turbulent kinematic viscosity condition when using wall functions...
static const word propertiesName
Default name of the turbulence properties dictionary.
virtual const labelUList & faceCells() const
Return faceCells.
Definition: fvPatch.C:93
static word groupName(Name name, const word &group)
Foam::fvPatchFieldMapper.
const nearWallDist & y() const
Return the near wall distances.
v2WallFunctionFvPatchScalarField(const fvPatch &, const DimensionedField< scalar, volMesh > &)
Construct from patch and internal field.
const fvPatch & patch() const
Return patch.
Definition: fvPatchField.H:325
makePatchTypeField(fvPatchScalarField, fWallFunctionFvPatchScalarField)
label patchi
scalar yPlus
virtual void updateCoeffs()
Update the coefficients associated with the patch field.
Definition: fvPatchField.C:229
Field with dimensions and associated with geometry type GeoMesh which is used to size the field and a...
dimensionedScalar pow4(const dimensionedScalar &ds)
const objectRegistry & db() const
Return local objectRegistry.
Definition: fvPatchField.C:167
volScalarField & p
A class for managing temporary objects.
Definition: PtrList.H:53
static const nutWallFunctionFvPatchScalarField & nutw(const turbulenceModel &turbModel, const label patchi)
Return the nut patchField for the given wall patch.
Namespace for OpenFOAM.
const DimensionedField< Type, volMesh > & internalField() const
Return dimensioned internal field reference.
Definition: fvPatchField.H:332