Intrepid
Intrepid_CubatureControlVolumeBoundary.hpp
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43 
49 #ifndef INTREPID_CUBATURE_CONTROLVOLUMEBOUNDARY_HPP
50 #define INTREPID_CUBATURE_CONTROLVOLUMEBOUNDARY_HPP
51 
52 #include "Intrepid_Cubature.hpp"
53 #include "Teuchos_Assert.hpp"
54 #include "Shards_CellTopology.hpp"
55 #include "Intrepid_CellTools.hpp"
58 
59 namespace Intrepid{
60 
68  template<class Scalar, class ArrayPoint, class ArrayWeight>
69  class CubatureControlVolumeBoundary : public Intrepid::Cubature<Scalar,ArrayPoint,ArrayWeight>{
70  public:
71 
77  CubatureControlVolumeBoundary(const Teuchos::RCP<const shards::CellTopology>& cellTopology, int cellSide=0);
78 
85  void getCubature(ArrayPoint& cubPoints,
86  ArrayWeight& cubWeights) const;
87 
95  void getCubature(ArrayPoint& cubPoints,
96  ArrayWeight& cubWeights,
97  ArrayPoint& cellCoords) const;
98 
101  int getNumPoints() const;
102 
105  int getDimension() const;
106 
110  void getAccuracy(std::vector<int> & accuracy) const;
111 
112 
113  virtual ~CubatureControlVolumeBoundary() {}
114 
115  private:
116 
117 
120  Teuchos::RCP<const shards::CellTopology> primaryCellTopo_;
121 
124  Teuchos::RCP<const shards::CellTopology> subCVCellTopo_;
125 
128  int degree_;
129 
133 
137 
141 
142  }; // end class CubatureControlVolumeBoundary
143 
144 } // end namespace Intrepid
145 
147 
148 #endif
149 
Teuchos::RCP< const shards::CellTopology > primaryCellTopo_
The topology of the primary cell side.
Definition file for the Intrepid::CubatureControlVolumeBoundary class.
Header file for the Intrepid::CellTools class.
void getAccuracy(std::vector< int > &accuracy) const
Returns max. degree of polynomials that are integrated exactly. The return vector has size 1...
Defines cubature (integration) rules over Neumann boundaries for control volume method.
Header file for the abstract base class Intrepid::DefaultCubatureFactory.
Header file for the Intrepid::FunctionSpaceTools class.
CubatureControlVolumeBoundary(const Teuchos::RCP< const shards::CellTopology > &cellTopology, int cellSide=0)
int getDimension() const
Returns dimension of integration domain.
int degree_
The degree of the polynomials that are integrated exactly.
Defines the base class for cubature (integration) rules in Intrepid.
int getNumPoints() const
Returns the number of cubature points.
void getCubature(ArrayPoint &cubPoints, ArrayWeight &cubWeights) const
Returns cubature points and weights Method for reference space cubature - throws an exception...
Header file for the Intrepid::Cubature class.
Teuchos::RCP< const shards::CellTopology > subCVCellTopo_
The topology of the sub-control volume.