BELFEM 0.9.0
Berkeley Lab Finite Element Framework
Loading...
Searching...
No Matches
cl_IFG_TRI3B.hpp
Go to the documentation of this file.
1/*
2 * BELFEM -- The Berkeley Lab Finite Element Framework
3 * Copyright (c) 2026, The Regents of the University of California,
4 * through Lawrence Berkeley National Laboratory (subject to receipt of any required
5 * approvals from the U.S. Dept. of Energy). All rights reserved.
6 *
7 * Developers: Christian Messe, Gregory Giard
8 *
9 * See the top-level LICENSE file for the complete license and disclaimer.
10 */
11
12#ifndef BELFEM_CL_IFG_TRI3B_HPP
13#define BELFEM_CL_IFG_TRI3B_HPP
14
16
17namespace belfem
18{
19 namespace fem
20 {
21//------------------------------------------------------------------------------
26//------------------------------------------------------------------------------
27
28 template<>
36
37//------------------------------------------------------------------------------
38
39 template<>
44 {
45 return ElementType::TRI3;
46 }
47
48//------------------------------------------------------------------------------
49
50
51 template<>
52 void
55 ::param_coords( Matrix <real> & aXiHat ) const
56 {
57 aXiHat.set_size( 2, 1 );
58
59 aXiHat( 0, 0 ) = 0.0;
60 aXiHat( 1, 0 ) = 0.5;
61 }
62
63//------------------------------------------------------------------------------
64
65 template<>
66 void
69 const Vector <real> & aXi,
70 Matrix <real> & aN ) const
71 {
72 const real xi = aXi( 0 );
73 const real eta = aXi( 1 );
74 const real zeta = 1.0 - xi - eta ;
75
76 aN.set_size( 1, 1 );
77 aN( 0, 0 ) = 4.0 * eta * zeta ;
78 }
79
80
81//------------------------------------------------------------------------------
82
83 template<>
84 void
87 const Vector <real> & aXi,
88 Matrix <real> & adNdXi ) const
89 {
90 const real xi = aXi( 0 );
91 const real eta = aXi( 1 );
92 const real zeta = 1.0 - xi - eta ;
93 adNdXi.set_size( 2, 1 );
94 adNdXi( 0, 0 ) = -4.0 * eta ; // dN/dxi
95 adNdXi( 1, 0 ) = 4.0 * (zeta-eta); // dN/deta
96 }
97
98//------------------------------------------------------------------------------
99
100
101 template<>
102 void
105 const Vector <real> & aXi,
106 Matrix <real> & ad2NdXi2 ) const
107 {
108 ad2NdXi2.set_size( 3, 1 );
109 ad2NdXi2( 0, 0 ) = 0.0 ; // d²N/dxi²
110 ad2NdXi2( 1, 0 ) = -8.0 ; // d²N/deta²
111 ad2NdXi2( 2, 0 ) = -4.0 ; // d²N/(dxi*deta)
112 }
113
114//------------------------------------------------------------------------------
115 }
116}
117#endif //BELFEM_CL_IFG_LINE2_HPP
void set_size(const size_t aNumRows, const size_t aNumCols)
Definition cl_AR_Matrix.hpp:186
shape function templated class G : Geometry T : Type D : Dimension B : Number of Basis
Definition cl_IF_InterpolationFunctionTemplate.hpp:25
void param_coords(Matrix< real > &aXiHat) const override
returns a matrix containing the parameter coordinates of the nodes < number of dimensions x number of...
Definition cl_IF_InterpolationFunctionTemplate.hpp:49
InterpolationOrder interpolation_order() const override
returns the interpolation order
Definition cl_IF_InterpolationFunctionTemplate.hpp:145
void d2NdXi2(const Vector< real > &aXi, Matrix< real > &ad2NdXi2) const override
calculates the second derivative of the shape function in parameter space
Definition cl_IF_InterpolationFunctionTemplate.hpp:110
void dNdXi(const Vector< real > &aXi, Matrix< real > &adNdXi) const override
calculates the first derivative of the shape function in parameter space
Definition cl_IF_InterpolationFunctionTemplate.hpp:89
void N(const Vector< real > &aXi, Matrix< real > &aN) const override
evaluates the shape function at a given point
Definition cl_IF_InterpolationFunctionTemplate.hpp:68
Definition cl_IFB_LINE3.hpp:21
USER GUIDES:
Definition cl_Capacitor.cpp:16
@ BubbleEdge1
Definition Mesh_Enums.hpp:104
ElementType element_type(const std::string &aStr)
Definition Mesh_Enums.hpp:370
ElementType
Element types.
Definition Mesh_Enums.hpp:27
@ TRI3
Definition Mesh_Enums.hpp:30
InterpolationOrder
Definition Mesh_Enums.hpp:85
@ QUADRATIC
Definition Mesh_Enums.hpp:88
double real
Definition typedefs.hpp:36
@ TRI
Definition Mesh_Enums.hpp:73