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00020 #ifndef P1_TETRAHEDRON_FINITE_ELEMENT_HPP
00021 #define P1_TETRAHEDRON_FINITE_ELEMENT_HPP
00022
00023 #include <TinyVector.hpp>
00024 #include <TinyMatrix.hpp>
00025
00026 #include <QuadratureFormula.hpp>
00027 #include <ConformTransformation.hpp>
00028
00029 #include <LagrangianFiniteElement.hpp>
00030 #include <ThreadStaticBase.hpp>
00031
00032 class P1TetrahedronFiniteElement
00033 : public ThreadStaticBase<P1TetrahedronFiniteElement>,
00034 public LagrangianFiniteElement<4, P1TetrahedronFiniteElement,
00035 QuadratureFormulaP1Tetrahedron>
00036 {
00037 private:
00038 static TinyVector<3, real_t> __massCenter;
00040 public:
00041 enum {
00042 numberOfDegreesOfFreedom = 4,
00043 numberOfVertexDegreesOfFreedom = 1,
00044 numberOfEdgeDegreesOfFreedom = 0,
00045 numberOfFaceDegreesOfFreedom = 0,
00046 numberOfVolumeDegreesOfFreedom = 0,
00047 numberOfFaceLivingDegreesOfFreedom = 3
00048 };
00049
00053 static const size_t facesDOF[Tetrahedron::NumberOfFaces][numberOfFaceLivingDegreesOfFreedom];
00054
00060 static const TinyVector<3, real_t>& massCenter()
00061 {
00062 return __massCenter;
00063 }
00064
00065
00066 real_t W (const size_t& i, const TinyVector<3>& X) const;
00067 real_t dxW(const size_t& i, const TinyVector<3>& X) const;
00068 real_t dyW(const size_t& i, const TinyVector<3>& X) const;
00069 real_t dzW(const size_t& i, const TinyVector<3>& X) const;
00070
00071 inline const
00072 TinyVector<QuadratureType::numberOfQuadraturePoints,
00073 TinyVector<3> >&
00074 integrationVertices() const
00075 {
00076 return QuadratureType::instance().vertices();
00077 }
00078
00079 P1TetrahedronFiniteElement()
00080 {
00081 ;
00082 }
00083
00084 ~P1TetrahedronFiniteElement()
00085 {
00086 ;
00087 }
00088 };
00089
00090 #endif // P1_TETRAHEDRON_FINITE_ELEMENT_HPP