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fei3dwedgelin.h
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34 
35 
36 #ifndef fei3dwedgelin_h
37 #define fei3dwedgelin_h
38 
39 #include "feinterpol3d.h"
40 
41 namespace oofem {
48 class OOFEM_EXPORT FEI3dWedgeLin : public FEInterpolation3d
49 {
50 protected:
51 
52 public:
54 
55  virtual integrationDomain giveIntegrationDomain() const { return _Wedge; }
56  virtual Element_Geometry_Type giveGeometryType() const { return EGT_wedge_1; }
58  if (ib <= 2) return _Triangle;
59  else return _Square; }
60  virtual integrationDomain giveBoundarySurfaceIntegrationDomain(int isurf) const { return this->giveBoundaryIntegrationDomain(isurf); }
61  virtual integrationDomain giveBoundaryEdgeIntegrationDomain(int iedge) const { return _Line; }
62 
63 
64 
65  // Bulk
66  virtual void evalN(FloatArray &answer, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
67  virtual double evaldNdx(FloatMatrix &answer, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
68  virtual void local2global(FloatArray &answer, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
69  virtual int global2local(FloatArray &answer, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
70  virtual double giveTransformationJacobian(const FloatArray &lcoords, const FEICellGeometry &cellgeo);
71  virtual void giveJacobianMatrixAt(FloatMatrix &jacobianMatrix, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
72  virtual double giveCharacteristicLength(const FEICellGeometry &cellgeo) const;
73 
74  // Edge
75  virtual void edgeEvalN(FloatArray &answer, int iedge, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
76  virtual void edgeEvaldNdx(FloatMatrix &answer, int iedge,
77  const FloatArray &lcoords, const FEICellGeometry &cellgeo);
78  virtual void edgeLocal2global(FloatArray &answer, int iedge,
79  const FloatArray &lcoords, const FEICellGeometry &cellgeo);
80  virtual double edgeGiveTransformationJacobian(int iedge, const FloatArray &lcoords,
81  const FEICellGeometry &cellgeo);
82  virtual void computeLocalEdgeMapping(IntArray &edgeNodes, int iedge);
83 
84  // Surface
85  virtual void surfaceEvalN(FloatArray &answer, int isurf, const FloatArray &lcoords, const FEICellGeometry &cellgeo);
86  //virtual void surfaceEvaldNdx (FloatMatrix&answer, int iedge,
87  // const FloatArray& lcoords, const FEICellGeometry& cellgeo);
88  virtual void surfaceLocal2global(FloatArray &answer, int iedge,
89  const FloatArray &lcoords, const FEICellGeometry &cellgeo);
90  virtual double surfaceGiveTransformationJacobian(int isurf, const FloatArray &lcoords,
91  const FEICellGeometry &cellgeo);
92  virtual void computeLocalSurfaceMapping(IntArray &nodes, int iSurf);
93 
94  virtual IntegrationRule *giveIntegrationRule(int order);
95  virtual IntegrationRule *giveBoundaryIntegrationRule(int order, int boundary);
96  virtual IntegrationRule *giveSurfaceIntegrationRule(int order, int isurf)
97  { return giveBoundaryIntegrationRule(order, isurf); }
98 
99  virtual int giveNumberOfNodes() const { return 6; }
100 
101 protected:
102  double edgeComputeLength(IntArray &edgeNodes, const FEICellGeometry &cellgeo);
103  void giveLocalDerivative(FloatMatrix &dN, const FloatArray &lcoords);
104 };
105 } // end namespace oofem
106 #endif
integrationDomain
Used by integrator class to supply integration points for proper domain to be integrated (Area...
Class representing implementation of linear wedge interpolation class.
Definition: fei3dwedgelin.h:48
Element_Geometry_Type
Enumerative type used to classify element geometry Possible values are: EGT_point - point in space EG...
Class representing a general abstraction for cell geometry.
Definition: feinterpol.h:62
virtual IntegrationRule * giveSurfaceIntegrationRule(int order, int isurf)
Definition: fei3dwedgelin.h:96
virtual integrationDomain giveBoundaryIntegrationDomain(int ib) const
Returns boundary integration domain.
Definition: fei3dwedgelin.h:57
virtual integrationDomain giveBoundarySurfaceIntegrationDomain(int isurf) const
Returns boundary integration domain.
Definition: fei3dwedgelin.h:60
virtual integrationDomain giveBoundaryEdgeIntegrationDomain(int iedge) const
Returns boundary integration domain.
Definition: fei3dwedgelin.h:61
virtual Element_Geometry_Type giveGeometryType() const
Returns the geometry type fo the interpolator.
Definition: fei3dwedgelin.h:56
Class implementing an array of integers.
Definition: intarray.h:61
Abstract base class representing integration rule.
virtual int giveNumberOfNodes() const
Returns the number of geometric nodes of the receiver.
Definition: fei3dwedgelin.h:99
Class representing vector of real numbers.
Definition: floatarray.h:82
Implementation of matrix containing floating point numbers.
Definition: floatmatrix.h:94
Class representing a general abstraction for surface finite element interpolation class...
Definition: feinterpol3d.h:44
the oofem namespace is to define a context or scope in which all oofem names are defined.
virtual integrationDomain giveIntegrationDomain() const
Returns the integration domain of the interpolator.
Definition: fei3dwedgelin.h:55

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