jumpCyclicFvPatchField.C
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25 
26 #include "jumpCyclicFvPatchField.H"
27 
28 // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
29 
30 template<class Type>
32 (
33  const fvPatch& p,
35 )
36 :
38 {}
39 
40 
41 template<class Type>
43 (
44  const fvPatch& p,
46  const dictionary& dict
47 )
48 :
50 {
51  // Call this evaluation in derived classes
52  // this->evaluate(Pstream::commsTypes::blocking);
53 }
54 
55 
56 template<class Type>
58 (
60  const fvPatch& p,
62  const fvPatchFieldMapper& mapper
63 )
64 :
65  cyclicFvPatchField<Type>(ptf, p, iF, mapper)
66 {}
67 
68 
69 template<class Type>
71 (
74 )
75 :
77 {}
78 
79 
80 // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
81 
82 template<class Type>
85 {
86  const Field<Type>& iField = this->primitiveField();
87  const labelUList& nbrFaceCells =
88  this->cyclicPatch().neighbFvPatch().faceCells();
89 
90  tmp<Field<Type>> tpnf(new Field<Type>(this->size()));
91  Field<Type>& pnf = tpnf.ref();
92 
93  Field<Type> jf(this->jump());
94  if (!this->cyclicPatch().owner())
95  {
96  jf *= -1.0;
97  }
98 
99  forAll(*this, facei)
100  {
101  pnf[facei] =
102  this->transform().transform(iField[nbrFaceCells[facei]])
103  - jf[facei];
104  }
105 
106  return tpnf;
107 }
108 
109 
110 template<class Type>
112 (
113  scalarField& result,
114  const scalarField& psiInternal,
115  const scalarField& coeffs,
116  const direction cmpt,
117  const Pstream::commsTypes
118 ) const
119 {
121 }
122 
123 
124 template<class Type>
126 (
127  Field<Type>& result,
128  const Field<Type>& psiInternal,
129  const scalarField& coeffs,
130  const Pstream::commsTypes
131 ) const
132 {
133  Field<Type> pnf(this->size());
134 
135  const labelUList& nbrFaceCells =
136  this->cyclicPatch().neighbFvPatch().faceCells();
137 
138  // only apply jump to original field
139  if (&psiInternal == &this->primitiveField())
140  {
141  Field<Type> jf(this->jump());
142 
143  if (!this->cyclicPatch().owner())
144  {
145  jf *= -1.0;
146  }
147 
148  forAll(*this, facei)
149  {
150  pnf[facei] = psiInternal[nbrFaceCells[facei]] - jf[facei];
151  }
152  }
153  else
154  {
155  forAll(*this, facei)
156  {
157  pnf[facei] = psiInternal[nbrFaceCells[facei]];
158  }
159  }
160 
161  // Transform according to the transformation tensors
162  this->transformCoupleField(pnf);
163 
164  // Multiply the field by coefficients and add into the result
165  const labelUList& faceCells = this->cyclicPatch().faceCells();
166  forAll(faceCells, elemI)
167  {
168  result[faceCells[elemI]] -= coeffs[elemI]*pnf[elemI];
169  }
170 }
171 
172 
173 // ************************************************************************* //
dictionary dict
#define forAll(list, i)
Loop across all elements in list.
Definition: UList.H:434
A list of keyword definitions, which are a keyword followed by any number of values (e...
Definition: dictionary.H:156
commsTypes
Types of communications.
Definition: UPstream.H:64
T & ref() const
Return non-const reference or generate a fatal error.
Definition: tmpI.H:181
uint8_t direction
Definition: direction.H:45
A finiteVolume patch using a polyPatch and a fvBoundaryMesh.
Definition: fvPatch.H:62
Pre-declare SubField and related Field type.
Definition: Field.H:56
jumpCyclicFvPatchField(const fvPatch &, const DimensionedField< Type, volMesh > &)
Construct from patch and internal field.
Foam::fvPatchFieldMapper.
This boundary condition provides a base class for coupled-cyclic conditions with a specified &#39;jump&#39; (...
virtual void updateInterfaceMatrix(scalarField &result, const scalarField &psiInternal, const scalarField &coeffs, const direction cmpt, const Pstream::commsTypes commsType) const
Update result field based on interface functionality.
A 1D vector of objects of type <T>, where the size of the vector is known and can be used for subscri...
Definition: HashTable.H:60
This boundary condition enforces a cyclic condition between a pair of boundaries. ...
Field with dimensions and associated with geometry type GeoMesh which is used to size the field and a...
friend dimensionSet transform(const dimensionSet &)
Return the argument; transformations do not change the dimensions.
volScalarField & p
A class for managing temporary objects.
Definition: PtrList.H:53
tmp< Field< Type > > patchNeighbourField() const
Return neighbour coupled given internal cell data.
#define NotImplemented
Issue a FatalErrorIn for a function not currently implemented.
Definition: error.H:370
dimensionSet transform(const dimensionSet &)
Definition: dimensionSet.C:477