searchableSurfaceSelection.C
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28 
31 #include "syncTools.H"
32 #include "searchableSurface.H"
33 #include "fvMesh.H"
34 #include "Time.H"
35 
36 // * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * //
37 
38 namespace Foam
39 {
40 namespace faceSelections
41 {
42  defineTypeNameAndDebug(searchableSurfaceSelection, 0);
44  (
45  faceSelection,
46  searchableSurfaceSelection,
47  dictionary
48  );
49 }
50 }
51 
52 
53 // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
54 
56 (
57  const word& name,
58  const fvMesh& mesh,
59  const dictionary& dict
60 )
61 :
62  faceSelection(name, mesh, dict),
63  surfacePtr_
64  (
65  searchableSurface::New
66  (
67  dict.get<word>("surface"),
68  IOobject
69  (
70  dict.getOrDefault("name", mesh.objectRegistry::db().name()),
71  mesh.time().constant(),
72  "triSurface",
73  mesh.objectRegistry::db(),
74  IOobject::MUST_READ,
75  IOobject::NO_WRITE
76  ),
77  dict
78  )
79  )
80 {}
81 
82 
83 // * * * * * * * * * * * * * * * * Destructor * * * * * * * * * * * * * * * //
84 
86 {}
87 
88 
89 // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
90 
92 (
93  const label zoneID,
94  labelList& faceToZoneID,
95  boolList& faceToFlip
96 ) const
97 {
98  // Get cell-cell centre vectors
99 
100  pointField start(mesh_.nFaces());
101  pointField end(mesh_.nFaces());
102 
103  // Internal faces
104  for (label facei = 0; facei < mesh_.nInternalFaces(); facei++)
105  {
106  start[facei] = mesh_.cellCentres()[mesh_.faceOwner()[facei]];
107  end[facei] = mesh_.cellCentres()[mesh_.faceNeighbour()[facei]];
108  }
109 
110  // Boundary faces
111  vectorField neighbourCellCentres;
113  (
114  mesh_,
115  mesh_.cellCentres(),
116  neighbourCellCentres
117  );
118 
119  const polyBoundaryMesh& pbm = mesh_.boundaryMesh();
120 
121  forAll(pbm, patchi)
122  {
123  const polyPatch& pp = pbm[patchi];
124 
125  if (pp.coupled())
126  {
127  forAll(pp, i)
128  {
129  label facei = pp.start()+i;
130  start[facei] = mesh_.cellCentres()[mesh_.faceOwner()[facei]];
131  end[facei] = neighbourCellCentres[facei-mesh_.nInternalFaces()];
132  }
133  }
134  else
135  {
136  forAll(pp, i)
137  {
138  label facei = pp.start()+i;
139  start[facei] = mesh_.cellCentres()[mesh_.faceOwner()[facei]];
140  end[facei] = mesh_.faceCentres()[facei];
141  }
142  }
143  }
144 
145  List<pointIndexHit> hits;
146  surfacePtr_().findLine(start, end, hits);
147  pointField normals;
148  surfacePtr_().getNormal(hits, normals);
149 
150  //- Note: do not select boundary faces.
151 
152  for (label facei = 0; facei < mesh_.nInternalFaces(); facei++)
153  {
154  if (hits[facei].hit())
155  {
156  faceToZoneID[facei] = zoneID;
157  vector d = end[facei]-start[facei];
158  faceToFlip[facei] = ((normals[facei] & d) < 0);
159  }
160  }
161  forAll(pbm, patchi)
162  {
163  const polyPatch& pp = pbm[patchi];
164 
165  if (pp.coupled())
166  {
167  forAll(pp, i)
168  {
169  label facei = pp.start()+i;
170  if (hits[facei].hit())
171  {
172  faceToZoneID[facei] = zoneID;
173  vector d = end[facei]-start[facei];
174  faceToFlip[facei] = ((normals[facei] & d) < 0);
175  }
176  }
177  }
178  }
179 
180  faceSelection::select(zoneID, faceToZoneID, faceToFlip);
181 }
182 
183 
184 // ************************************************************************* //
List< ReturnType > get(const UPtrList< T > &list, const AccessOp &aop)
List of values generated by applying the access operation to each list item.
const polyBoundaryMesh & pbm
dictionary dict
tmp< DimensionedField< TypeR, GeoMesh > > New(const tmp< DimensionedField< TypeR, GeoMesh >> &tf1, const word &name, const dimensionSet &dimensions, const bool initCopy=false)
Global function forwards to reuseTmpDimensionedField::New.
Macros for easy insertion into run-time selection tables.
#define forAll(list, i)
Loop across all elements in list.
Definition: stdFoam.H:421
vectorField pointField
pointField is a vectorField.
Definition: pointFieldFwd.H:38
dynamicFvMesh & mesh
word name(const expressions::valueTypeCode typeCode)
A word representation of a valueTypeCode. Empty for expressions::valueTypeCode::INVALID.
Definition: exprTraits.C:127
static void swapBoundaryCellPositions(const polyMesh &mesh, const UList< point > &cellData, List< point > &neighbourCellData, const bool parRun=UPstream::parRun())
Extract and swap to obtain neighbour cell positions for all boundary faces.
Definition: syncTools.C:27
Vector< scalar > vector
Definition: vector.H:57
virtual void select(const label zoneID, labelList &, boolList &) const
constexpr auto end(C &c) -> decltype(c.end())
Return iterator to the end of the container c.
Definition: stdFoam.H:201
defineTypeNameAndDebug(combustionModel, 0)
virtual void select(const label, labelList &, boolList &) const =0
Field< vector > vectorField
Specialisation of Field<T> for vector.
searchableSurfaceSelection(const word &name, const fvMesh &mesh, const dictionary &dict)
Construct from dictionary.
List< label > labelList
A List of labels.
Definition: List.H:62
List< bool > boolList
A List of bools.
Definition: List.H:60
uindirectPrimitivePatch pp(UIndirectList< face >(mesh.faces(), faceLabels), mesh.points())
Namespace for OpenFOAM.
addToRunTimeSelectionTable(functionObject, pointHistory, dictionary)