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FE_C_Q_M4_2D.h
1 // ***********************************************************************
2 // UL4S element, conforming, 2D
3 // ***********************************************************************
4 
5 // number of degrees of freedom
6 static int C_Q_M4_2D_NDOF = 17;
7 
8 // number of dofs on the closure of the joints
9 static int C_Q_M4_2D_JointDOF = 5;
10 
11 // which local dofs are on the joints
12 static int C_Q_M4_2D_J0[5] = { 0, 1, 2, 3, 4 };
13 static int C_Q_M4_2D_J1[5] = { 4, 5, 6, 7, 8 };
14 static int C_Q_M4_2D_J2[5] = { 8, 9, 10, 11, 12 };
15 static int C_Q_M4_2D_J3[5] = { 12, 13, 14, 15, 0 };
16 
17 static int *C_Q_M4_2D_J[4] = { C_Q_M4_2D_J0, C_Q_M4_2D_J1,
18  C_Q_M4_2D_J2, C_Q_M4_2D_J3 };
19 
20 // number of inner dofs
21 static int C_Q_M4_2D_NInner = 1;
22 
23 // array containing the numbers for the inner dofs
24 static int C_Q_M4_2D_Inner[1] = { 16 };
25 
26 // number of outer dofs
27 static int C_Q_M4_2D_NOuter = 16;
28 
29 // array containing the numbers for the outer dofs
30 static int C_Q_M4_2D_Outer[16] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
31  10, 11, 12, 13, 14, 15 };
32 
33 static char C_Q_M4_2D_String[] = "C_Q_M4_2D";
34 
35 TFEDesc2D *FE_C_Q_M4_2D_Obj=new TFEDesc2D(C_Q_M4_2D_String, C_Q_M4_2D_NDOF,
36  C_Q_M4_2D_JointDOF, C_Q_M4_2D_J,
37  C_Q_M4_2D_NInner, C_Q_M4_2D_Inner,
38  C_Q_M4_2D_NOuter, C_Q_M4_2D_Outer);
Definition: FEDesc2D.h:15