Table of Contents
Penalty solution, TUBE56C1
Problem
Mesh
element | type | nodes |
---|---|---|
1 | 56 | 1 23 25 3 55 61 59 57 22 26 24 2 54 60 58 56 65 64 63 62 |
2 | 56 | 3 25 28 5 57 59 69 67 24 29 27 4 56 58 68 66 63 72 71 70 |
3 | 56 | 5 28 31 7 67 69 76 74 27 32 30 6 66 68 75 73 71 79 78 77 |
4 | 56 | 7 31 34 9 74 76 83 81 30 35 33 8 73 75 82 80 78 86 85 84 |
5 | 56 | 9 34 37 11 81 83 90 88 33 38 36 10 80 82 89 87 85 93 92 91 |
6 | 56 | 11 37 40 13 88 90 97 95 36 41 39 12 87 89 96 94 92 100 99 98 |
7 | 56 | 13 40 43 15 95 97 104 102 39 44 42 14 94 96 103 101 99 107 106 105 |
8 | 56 | 15 43 46 17 102 104 111 109 42 47 45 16 101 103 110 108 106 114 113 112 |
9 | 56 | 17 46 49 19 109 111 118 116 45 50 48 18 108 110 117 115 113 121 120 119 |
10 | 56 | 19 49 52 21 116 118 125 123 48 53 51 20 115 117 124 122 120 128 127 126 |
Boundary conditions
$v=0$ at all nodes (plain strain condition)
$v=w=0$ at nodes 1 to 53 ($z=0$ plane)
$u_n=0$ at nodes 55, 57, 59 (symmetry plane)
$\mathbf{n}(\text{symmetry plane})=\{-\sin\alpha\quad0\quad\cos\alpha\},$ where $\alpha=3.1481^\circ$
Solution
The task lying ahead is to define an axisymmetric problem as viewed in 3D space. To this end, we consider a segment created by the rotation of a certain area about the axis of revolution with the symmetry condition imposed on both meridian faces of the segment.
In this particular example the mesh TUBE56 has been generated by a clockwise rotation of $3.1481$ degrees about the $y$-axis of the 2D mesh TUBE7. Therefore the symmetry condition $u_n=0,$ where $u_n$ is the displacement component normal to the symmetry plane, must be enforced on plane $z=0$ and the one defined by the unit normal $\mathbf{n}.$
Since the normal direction on the $\mathbf{n}$-plane does not coincide with any coordinate axis, the symmetry condition takes on a character of a general linear constraint. There are two common ways to handle such constraints in PMD: we can either employ a “periodicity” approach, setting parameters $\mathtt{KPER},$ $\mathtt{NPER}$ and $\mathtt{ALPHA}$ in the .i1
input file, or use the penalty method. The first method is only available for the solution of heat transfer and linear elastic problems, therefore, we have to resort to the latter one.
The penalty method can be thought of as a prescription of very stiff springs acting on nodes in the constraint direction. The spring stiffness should be large enough to enforce the constraint with sufficient accuracy but not excessively large so as not to spoil conditioning of the stiffness matrix. Typically we may opt for numbers exceeding by six or seven orders of magnitude the “average” stiffness of the body computed as
$$K=EL$$
where $E$ is the Young modulus and $L$ a characteristic dimension. Substituting
$$E=2\times10^{11}\text{ Pa},\quad L=1\text{ m}$$
and enhancing the stiffness by $10^7$ we arrive at the penalty value $10^{18}\text{ N/m}$ which has been used in the .i2
input file.
It should be noted that the displacement field computed with the aid of the penalty method agrees up to three digits with the axisymmetric solution. This can be viewed as a good result, having in mind the problem is highly nonlinear, involving nearly one percent inelastic strain.
- tube56c1.bat
rmd3 tube56c1.i1 rpd3 tube56c1.i2 srh3 tube56c1.i3 fefs tube56c1.i4 hpp3 tube56c1.iP hpls tube56c1.iL str2 tube56c1.i5
Input
- tube56c1.i1
; NELEM NNOD ITED IP 10 128 56 ; CRIT SCALE RP 1.03 1 XY C 1 1.0000000 0.00 0.00000000 C 2 1.0500000 0.00 0.00000000 C 3 1.1000000 0.00 0.00000000 C 4 1.1500000 0.00 0.00000000 C 5 1.2000000 0.00 0.00000000 C 6 1.2500000 0.00 0.00000000 C 7 1.3000000 0.00 0.00000000 C 8 1.3500000 0.00 0.00000000 C 9 1.4000000 0.00 0.00000000 C 10 1.4500000 0.00 0.00000000 C 11 1.5000000 0.00 0.00000000 C 12 1.5500000 0.00 0.00000000 C 13 1.6000000 0.00 0.00000000 C 14 1.6500000 0.00 0.00000000 C 15 1.7000000 0.00 0.00000000 C 16 1.7500000 0.00 0.00000000 C 17 1.8000000 0.00 0.00000000 C 18 1.8500000 0.00 0.00000000 C 19 1.9000000 0.00 0.00000000 C 20 1.9500000 0.00 0.00000000 C 21 2.0000000 0.00 0.00000000 C 22 1.0000000 -0.05 0.00000000 C 23 1.0000000 -0.10 0.00000000 C 24 1.1000000 -0.05 0.00000000 C 25 1.1000000 -0.10 0.00000000 C 26 1.0500000 -0.10 0.00000000 C 27 1.2000000 -0.05 0.00000000 C 28 1.2000000 -0.10 0.00000000 C 29 1.1500000 -0.10 0.00000000 C 30 1.3000000 -0.05 0.00000000 C 31 1.3000000 -0.10 0.00000000 C 32 1.2500000 -0.10 0.00000000 C 33 1.4000000 -0.05 0.00000000 C 34 1.4000000 -0.10 0.00000000 C 35 1.3500000 -0.10 0.00000000 C 36 1.5000000 -0.05 0.00000000 C 37 1.5000000 -0.10 0.00000000 C 38 1.4500000 -0.10 0.00000000 C 39 1.6000000 -0.05 0.00000000 C 40 1.6000000 -0.10 0.00000000 C 41 1.5500000 -0.10 0.00000000 C 42 1.7000000 -0.05 0.00000000 C 43 1.7000000 -0.10 0.00000000 C 44 1.6500000 -0.10 0.00000000 C 45 1.8000000 -0.05 0.00000000 C 46 1.8000000 -0.10 0.00000000 C 47 1.7500000 -0.10 0.00000000 C 48 1.9000000 -0.05 0.00000000 C 49 1.9000000 -0.10 0.00000000 C 50 1.8500000 -0.10 0.00000000 C 51 2.0000000 -0.05 0.00000000 C 52 2.0000000 -0.10 0.00000000 C 53 1.9500000 -0.10 0.00000000 C 54 0.9996226 0.00 0.02746826 C 55 0.9984909 0.00 0.05491579 C 56 1.0995850 0.00 0.03021628 C 57 1.0983400 0.00 0.06040976 C 58 1.0995850 -0.10 0.03021628 C 59 1.0983400 -0.10 0.06040976 C 60 0.9996226 -0.10 0.02746826 C 61 0.9984909 -0.10 0.05491579 C 62 1.0484160 0.00 0.05766158 C 63 1.0983400 -0.05 0.06040976 C 64 1.0484160 -0.10 0.05766158 C 65 0.9984909 -0.05 0.05491579 C 66 1.1995470 0.00 0.03296257 C 67 1.1981890 0.00 0.06590025 C 68 1.1995470 -0.10 0.03296257 C 69 1.1981890 -0.10 0.06590025 C 70 1.1482650 0.00 0.06315565 C 71 1.1981890 -0.05 0.06590025 C 72 1.1482650 -0.10 0.06315565 C 73 1.2995100 0.00 0.03570945 C 74 1.2980380 0.00 0.07139194 C 75 1.2995100 -0.10 0.03570945 C 76 1.2980380 -0.10 0.07139194 C 77 1.2481140 0.00 0.06864610 C 78 1.2980380 -0.05 0.07139194 C 79 1.2481140 -0.10 0.06864610 C 80 1.3994720 0.00 0.03845633 C 81 1.3978870 0.00 0.07688363 C 82 1.3994720 -0.10 0.03845633 C 83 1.3978870 -0.10 0.07688363 C 84 1.3479630 0.00 0.07413779 C 85 1.3978870 -0.05 0.07688363 C 86 1.3479630 -0.10 0.07413779 C 87 1.4994340 0.00 0.04120402 C 88 1.4977360 0.00 0.08237695 C 89 1.4994340 -0.10 0.04120402 C 90 1.4977360 -0.10 0.08237695 C 91 1.4478120 0.00 0.07963105 C 92 1.4977360 -0.05 0.08237695 C 93 1.4478120 -0.10 0.07963105 C 94 1.5993960 0.00 0.04395009 C 95 1.5975860 0.00 0.08786700 C 96 1.5993960 -0.10 0.04395009 C 97 1.5975860 -0.10 0.08786700 C 98 1.5476610 0.00 0.08512284 C 99 1.5975860 -0.05 0.08786700 C 100 1.5476610 -0.10 0.08512284 C 101 1.6993590 0.00 0.04669697 C 102 1.6974350 0.00 0.09335869 C 103 1.6993590 -0.10 0.04669697 C 104 1.6974350 -0.10 0.09335869 C 105 1.6475100 0.00 0.09061285 C 106 1.6974350 -0.05 0.09335869 C 107 1.6475100 -0.10 0.09061285 C 108 1.7993210 0.00 0.04944483 C 109 1.7972840 0.00 0.09885234 C 110 1.7993210 -0.10 0.04944483 C 111 1.7972840 -0.10 0.09885234 C 112 1.7473590 0.00 0.09610454 C 113 1.7972840 -0.05 0.09885234 C 114 1.7473590 -0.10 0.09610454 C 115 1.8992830 0.00 0.05219073 C 116 1.8971330 0.00 0.10434210 C 117 1.8992830 -0.10 0.05219073 C 118 1.8971330 -0.10 0.10434210 C 119 1.8472080 0.00 0.10159620 C 120 1.8971330 -0.05 0.10434210 C 121 1.8472080 -0.10 0.10159620 C 122 1.9992450 0.00 0.05493652 C 123 1.9969820 0.00 0.10983160 C 124 1.9992450 -0.10 0.05493652 C 125 1.9969820 -0.10 0.10983160 C 126 1.9470570 0.00 0.10709000 C 127 1.9969820 -0.05 0.10983160 C 128 1.9470570 -0.10 0.10709000 EL E 1:10 N 1 23 25 3 55 61 59 57 22 26 24 2 54 60 58 56 65 64 63 62 3 25 28 5 57 59 69 67 24 29 27 4 56 58 68 66 63 72 71 70 5 28 31 7 67 69 76 74 27 32 30 6 66 68 75 73 71 79 78 77 7 31 34 9 74 76 83 81 30 35 33 8 73 75 82 80 78 86 85 84 9 34 37 11 81 83 90 88 33 38 36 10 80 82 89 87 85 93 92 91 11 37 40 13 88 90 97 95 36 41 39 12 87 89 96 94 92 100 99 98 13 40 43 15 95 97 104 102 39 44 42 14 94 96 103 101 99 107 106 105 15 43 46 17 102 104 111 109 42 47 45 16 101 103 110 108 106 114 113 112 17 46 49 19 109 111 118 116 45 50 48 18 108 110 117 115 113 121 120 119 19 49 52 21 116 118 125 123 48 53 51 20 115 117 124 122 120 128 127 126 EN EN
- tube56c1.i2
; KREST IP 1 ; polynomial dependence on effective stress MP 1 T -1 I 9 ; E α ν ρ σY QY V 2e11 V 1e-5 V 0.3 V 0 V 0 V 0 ; effective strain rate V 0 0 0 2e-28 SV 1 T 6 V -100e6 ; p = 100 MPa NV 1 T 2 N 55 V 1e18 0 -0.0549169 0 0.9984909 0 NV 2 T 2 N 57 V 1e18 0 -0.0549169 0 0.9984909 0 NV 3 T 2 N 59 V 1e18 0 -0.0549169 0 0.9984909 0 NV 4 T 2 N 61 V 1e18 0 -0.0549169 0 0.9984909 0 NV 5 T 2 N 62 V 1e18 0 -0.0549169 0 0.9984909 0 NV 6 T 2 N 63 V 1e18 0 -0.0549169 0 0.9984909 0 NV 7 T 2 N 64 V 1e18 0 -0.0549169 0 0.9984909 0 NV 8 T 2 N 65 V 1e18 0 -0.0549169 0 0.9984909 0 NV 9 T 2 N 67 V 1e18 0 -0.0549169 0 0.9984909 0 NV 10 T 2 N 69 V 1e18 0 -0.0549169 0 0.9984909 0 NV 11 T 2 N 70 V 1e18 0 -0.0549169 0 0.9984909 0 NV 12 T 2 N 71 V 1e18 0 -0.0549169 0 0.9984909 0 NV 13 T 2 N 72 V 1e18 0 -0.0549169 0 0.9984909 0 NV 14 T 2 N 74 V 1e18 0 -0.0549169 0 0.9984909 0 NV 15 T 2 N 76 V 1e18 0 -0.0549169 0 0.9984909 0 NV 16 T 2 N 77 V 1e18 0 -0.0549169 0 0.9984909 0 NV 17 T 2 N 78 V 1e18 0 -0.0549169 0 0.9984909 0 NV 18 T 2 N 79 V 1e18 0 -0.0549169 0 0.9984909 0 NV 19 T 2 N 81 V 1e18 0 -0.0549169 0 0.9984909 0 NV 20 T 2 N 83 V 1e18 0 -0.0549169 0 0.9984909 0 NV 21 T 2 N 84 V 1e18 0 -0.0549169 0 0.9984909 0 NV 22 T 2 N 85 V 1e18 0 -0.0549169 0 0.9984909 0 NV 23 T 2 N 86 V 1e18 0 -0.0549169 0 0.9984909 0 NV 24 T 2 N 88 V 1e18 0 -0.0549169 0 0.9984909 0 NV 25 T 2 N 90 V 1e18 0 -0.0549169 0 0.9984909 0 NV 26 T 2 N 91 V 1e18 0 -0.0549169 0 0.9984909 0 NV 27 T 2 N 92 V 1e18 0 -0.0549169 0 0.9984909 0 NV 28 T 2 N 93 V 1e18 0 -0.0549169 0 0.9984909 0 NV 29 T 2 N 95 V 1e18 0 -0.0549169 0 0.9984909 0 NV 30 T 2 N 97 V 1e18 0 -0.0549169 0 0.9984909 0 NV 31 T 2 N 98 V 1e18 0 -0.0549169 0 0.9984909 0 NV 32 T 2 N 99 V 1e18 0 -0.0549169 0 0.9984909 0 NV 33 T 2 N 100 V 1e18 0 -0.0549169 0 0.9984909 0 NV 34 T 2 N 102 V 1e18 0 -0.0549169 0 0.9984909 0 NV 35 T 2 N 104 V 1e18 0 -0.0549169 0 0.9984909 0 NV 36 T 2 N 105 V 1e18 0 -0.0549169 0 0.9984909 0 NV 37 T 2 N 106 V 1e18 0 -0.0549169 0 0.9984909 0 NV 38 T 2 N 107 V 1e18 0 -0.0549169 0 0.9984909 0 NV 39 T 2 N 109 V 1e18 0 -0.0549169 0 0.9984909 0 NV 40 T 2 N 111 V 1e18 0 -0.0549169 0 0.9984909 0 NV 41 T 2 N 112 V 1e18 0 -0.0549169 0 0.9984909 0 NV 42 T 2 N 113 V 1e18 0 -0.0549169 0 0.9984909 0 NV 43 T 2 N 114 V 1e18 0 -0.0549169 0 0.9984909 0 NV 44 T 2 N 116 V 1e18 0 -0.0549169 0 0.9984909 0 NV 45 T 2 N 118 V 1e18 0 -0.0549169 0 0.9984909 0 NV 46 T 2 N 119 V 1e18 0 -0.0549169 0 0.9984909 0 NV 47 T 2 N 120 V 1e18 0 -0.0549169 0 0.9984909 0 NV 48 T 2 N 121 V 1e18 0 -0.0549169 0 0.9984909 0 NV 49 T 2 N 123 V 1e18 0 -0.0549169 0 0.9984909 0 NV 50 T 2 N 125 V 1e18 0 -0.0549169 0 0.9984909 0 NV 51 T 2 N 126 V 1e18 0 -0.0549169 0 0.9984909 0 NV 52 T 2 N 127 V 1e18 0 -0.0549169 0 0.9984909 0 NV 53 T 2 N 128 V 1e18 0 -0.0549169 0 0.9984909 0 AS 1 /M 1 /B 0 C 2 N 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 /B 0 C 2 3 N 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 ; springs enforcing the symmetry condition /N 1 E 1 /N 2 E 1 /N 3 E 1 /N 4 E 1 /N 5 E 1 /N 6 E 1 /N 7 E 1 /N 8 E 1 /N 9 E 2 /N 10 E 2 /N 11 E 2 /N 12 E 2 /N 13 E 2 /N 14 E 3 /N 15 E 3 /N 16 E 3 /N 17 E 3 /N 18 E 3 /N 19 E 4 /N 20 E 4 /N 21 E 4 /N 22 E 4 /N 23 E 4 /N 24 E 5 /N 25 E 5 /N 26 E 5 /N 27 E 5 /N 28 E 5 /N 29 E 6 /N 30 E 6 /N 31 E 6 /N 32 E 6 /N 33 E 6 /N 34 E 7 /N 35 E 7 /N 36 E 7 /N 37 E 7 /N 38 E 7 /N 39 E 8 /N 40 E 8 /N 41 E 8 /N 42 E 8 /N 43 E 8 /N 44 E 9 /N 45 E 9 /N 46 E 9 /N 47 E 9 /N 48 E 9 /N 49 E 10 /N 50 E 10 /N 51 E 10 /N 52 E 10 /N 53 E 10 /R 0 600 600 ; stiffness matrix for T = 600 °C AS 2 /S 1 E 1 S2 /R 0 600 600 ; reference T = current T = 600 °C EN EN
- tube56c1.i3
; KREST IP 1 EN EN
- tube56c1.i4
; KREST IP 1 EN EN
- tube56c1.iP
; KREST NLC NCYC KMOD KCRP ... IP 1 2 0 0 1 5*0 ; load case sequence 2 2 RP 10*0 ; creep times in hours 0 10 EN EN
- tube56c1.iL
; KMET KOUT NSUBI NITER NINT KTPR IP 0 1 0 0 0 0 ; UTOL RTOL XTOL PENAL RP 0 0 0 0 EN EN
- tube56c1.i5
; KLC 0 KOUT ILC ... KPROB KGRAF IP 3 0 1 2 6*0 2 2 EN EN
Output
- tube56c1.o5
; KLC 0 KOUT ILC ... KPROB KGRAF IP 3 0 1 2 6*0 2 2 EN EN 1TH LOAD CASE DISPLACEMENTS NODE U V W ALPHA BETA GAMMA [m] [m] [m] [rad] [rad] [rad] 1 0.7693661E-02 0.0000000E+00 0.0000000E+00 2 0.7325255E-02 0.0000000E+00 0.0000000E+00 3 0.6991862E-02 0.0000000E+00 0.0000000E+00 4 0.6688957E-02 0.0000000E+00 0.0000000E+00 5 0.6412735E-02 0.0000000E+00 0.0000000E+00 6 0.6160015E-02 0.0000000E+00 0.0000000E+00 7 0.5928099E-02 0.0000000E+00 0.0000000E+00 8 0.5714695E-02 0.0000000E+00 0.0000000E+00 9 0.5517831E-02 0.0000000E+00 0.0000000E+00 10 0.5335811E-02 0.0000000E+00 0.0000000E+00 11 0.5167161E-02 0.0000000E+00 0.0000000E+00 12 0.5010595E-02 0.0000000E+00 0.0000000E+00 13 0.4864989E-02 0.0000000E+00 0.0000000E+00 14 0.4729353E-02 0.0000000E+00 0.0000000E+00 15 0.4602819E-02 0.0000000E+00 0.0000000E+00 16 0.4484610E-02 0.0000000E+00 0.0000000E+00 17 0.4374042E-02 0.0000000E+00 0.0000000E+00 18 0.4270497E-02 0.0000000E+00 0.0000000E+00 19 0.4173427E-02 0.0000000E+00 0.0000000E+00 20 0.4082338E-02 0.0000000E+00 0.0000000E+00 21 0.3996783E-02 0.0000000E+00 0.0000000E+00 22 0.7693661E-02 0.0000000E+00 0.0000000E+00 23 0.7693661E-02 0.0000000E+00 0.0000000E+00 24 0.6991862E-02 0.0000000E+00 0.0000000E+00 25 0.6991862E-02 0.0000000E+00 0.0000000E+00 26 0.7325255E-02 0.0000000E+00 0.0000000E+00 27 0.6412735E-02 0.0000000E+00 0.0000000E+00 28 0.6412735E-02 0.0000000E+00 0.0000000E+00 29 0.6688957E-02 0.0000000E+00 0.0000000E+00 30 0.5928099E-02 0.0000000E+00 0.0000000E+00 31 0.5928099E-02 0.0000000E+00 0.0000000E+00 32 0.6160015E-02 0.0000000E+00 0.0000000E+00 33 0.5517831E-02 0.0000000E+00 0.0000000E+00 34 0.5517831E-02 0.0000000E+00 0.0000000E+00 35 0.5714695E-02 0.0000000E+00 0.0000000E+00 36 0.5167161E-02 0.0000000E+00 0.0000000E+00 37 0.5167161E-02 0.0000000E+00 0.0000000E+00 38 0.5335811E-02 0.0000000E+00 0.0000000E+00 39 0.4864989E-02 0.0000000E+00 0.0000000E+00 40 0.4864989E-02 0.0000000E+00 0.0000000E+00 41 0.5010595E-02 0.0000000E+00 0.0000000E+00 42 0.4602819E-02 0.0000000E+00 0.0000000E+00 43 0.4602819E-02 0.0000000E+00 0.0000000E+00 44 0.4729353E-02 0.0000000E+00 0.0000000E+00 45 0.4374042E-02 0.0000000E+00 0.0000000E+00 46 0.4374042E-02 0.0000000E+00 0.0000000E+00 47 0.4484610E-02 0.0000000E+00 0.0000000E+00 48 0.4173427E-02 0.0000000E+00 0.0000000E+00 49 0.4173427E-02 0.0000000E+00 0.0000000E+00 50 0.4270497E-02 0.0000000E+00 0.0000000E+00 51 0.3996783E-02 0.0000000E+00 0.0000000E+00 52 0.3996783E-02 0.0000000E+00 0.0000000E+00 53 0.4082338E-02 0.0000000E+00 0.0000000E+00 54 0.7690757E-02 0.0000000E+00 0.2113330E-03 DISPLACEMENTS NODE U V W ALPHA BETA GAMMA [m] [m] [m] [rad] [rad] [rad] 55 0.7682056E-02 0.0000000E+00 0.4225123E-03 56 0.6989218E-02 0.0000000E+00 0.1920598E-03 57 0.6981306E-02 0.0000000E+00 0.3839712E-03 58 0.6989218E-02 0.0000000E+00 0.1920598E-03 59 0.6981306E-02 0.0000000E+00 0.3839712E-03 60 0.7690757E-02 0.0000000E+00 0.2113330E-03 61 0.7682056E-02 0.0000000E+00 0.4225123E-03 62 0.7314190E-02 0.0000000E+00 0.4022797E-03 63 0.6981306E-02 0.0000000E+00 0.3839712E-03 64 0.7314190E-02 0.0000000E+00 0.4022797E-03 65 0.7682056E-02 0.0000000E+00 0.4225123E-03 66 0.6410314E-02 0.0000000E+00 0.1761496E-03 67 0.6403060E-02 0.0000000E+00 0.3521677E-03 68 0.6410314E-02 0.0000000E+00 0.1761496E-03 69 0.6403060E-02 0.0000000E+00 0.3521677E-03 70 0.6678863E-02 0.0000000E+00 0.3673368E-03 71 0.6403060E-02 0.0000000E+00 0.3521677E-03 72 0.6678863E-02 0.0000000E+00 0.3673368E-03 73 0.5925857E-02 0.0000000E+00 0.1628380E-03 74 0.5919154E-02 0.0000000E+00 0.3255529E-03 75 0.5925857E-02 0.0000000E+00 0.1628380E-03 76 0.5919154E-02 0.0000000E+00 0.3255529E-03 77 0.6150717E-02 0.0000000E+00 0.3382888E-03 78 0.5919154E-02 0.0000000E+00 0.3255529E-03 79 0.6150717E-02 0.0000000E+00 0.3382888E-03 80 0.5515746E-02 0.0000000E+00 0.1515678E-03 81 0.5509505E-02 0.0000000E+00 0.3030222E-03 82 0.5515746E-02 0.0000000E+00 0.1515678E-03 83 0.5509505E-02 0.0000000E+00 0.3030222E-03 84 0.5706070E-02 0.0000000E+00 0.3138333E-03 85 0.5509505E-02 0.0000000E+00 0.3030222E-03 86 0.5706070E-02 0.0000000E+00 0.3138333E-03 87 0.5165209E-02 0.0000000E+00 0.1419361E-03 88 0.5159364E-02 0.0000000E+00 0.2837645E-03 89 0.5165209E-02 0.0000000E+00 0.1419361E-03 90 0.5159364E-02 0.0000000E+00 0.2837645E-03 91 0.5327757E-02 0.0000000E+00 0.2930261E-03 92 0.5159364E-02 0.0000000E+00 0.2837645E-03 93 0.5327757E-02 0.0000000E+00 0.2930261E-03 94 0.4863153E-02 0.0000000E+00 0.1336353E-03 95 0.4857646E-02 0.0000000E+00 0.2671700E-03 96 0.4863153E-02 0.0000000E+00 0.1336353E-03 97 0.4857646E-02 0.0000000E+00 0.2671700E-03 98 0.5003034E-02 0.0000000E+00 0.2751663E-03 99 0.4857646E-02 0.0000000E+00 0.2671700E-03 100 0.5003034E-02 0.0000000E+00 0.2751663E-03 101 0.4601080E-02 0.0000000E+00 0.1264338E-03 102 0.4595871E-02 0.0000000E+00 0.2527725E-03 103 0.4601080E-02 0.0000000E+00 0.1264338E-03 104 0.4595871E-02 0.0000000E+00 0.2527725E-03 105 0.4722216E-02 0.0000000E+00 0.2597214E-03 106 0.4595871E-02 0.0000000E+00 0.2527725E-03 107 0.4722216E-02 0.0000000E+00 0.2597214E-03 108 0.4372390E-02 0.0000000E+00 0.1201502E-03 DISPLACEMENTS NODE U V W ALPHA BETA GAMMA [m] [m] [m] [rad] [rad] [rad] 109 0.4367441E-02 0.0000000E+00 0.2402088E-03 110 0.4372390E-02 0.0000000E+00 0.1201502E-03 111 0.4367441E-02 0.0000000E+00 0.2402088E-03 112 0.4477843E-02 0.0000000E+00 0.2462809E-03 113 0.4367441E-02 0.0000000E+00 0.2402088E-03 114 0.4477843E-02 0.0000000E+00 0.2462809E-03 115 0.4171851E-02 0.0000000E+00 0.1146385E-03 116 0.4167129E-02 0.0000000E+00 0.2291917E-03 117 0.4171851E-02 0.0000000E+00 0.1146385E-03 118 0.4167129E-02 0.0000000E+00 0.2291917E-03 119 0.4264054E-02 0.0000000E+00 0.2345226E-03 120 0.4167129E-02 0.0000000E+00 0.2291917E-03 121 0.4264054E-02 0.0000000E+00 0.2345226E-03 122 0.3995273E-02 0.0000000E+00 0.1097855E-03 123 0.3990745E-02 0.0000000E+00 0.2194906E-03 124 0.3995273E-02 0.0000000E+00 0.1097855E-03 125 0.3990745E-02 0.0000000E+00 0.2194906E-03 126 0.4076175E-02 0.0000000E+00 0.2241892E-03 127 0.3990745E-02 0.0000000E+00 0.2194906E-03 128 0.4076175E-02 0.0000000E+00 0.2241892E-03 STRESSES AT GAUSSPOINTS IE IGP XG YG ZG SIG-X SIG-Y SIG-Z SIG-XY SIG-YZ SIG-XZ SIG-HMH EPSP DMG [m] [m] [m] [MPa] [MPa] [MPa] [MPa] [MPa] [MPa] [MPa] [-] [%] 1 1 0.1011E+01 -0.1127E-01 0.6263E-02 -95.6 -6.3 83.2 0.0 0.0 -1.1 154.8 0.804E-02 0.00 2 0.1011E+01 -0.5000E-01 0.6263E-02 -95.6 -6.3 83.2 0.0 0.0 -1.1 154.8 0.804E-02 0.00 3 0.1011E+01 -0.8873E-01 0.6263E-02 -95.6 -6.3 83.2 0.0 0.0 -1.1 154.8 0.804E-02 0.00 4 0.1011E+01 -0.1127E-01 0.2778E-01 -95.5 -6.3 83.0 0.0 0.0 -4.9 154.8 0.804E-02 0.00 5 0.1011E+01 -0.5000E-01 0.2778E-01 -95.5 -6.3 83.0 0.0 0.0 -4.9 154.8 0.804E-02 0.00 6 0.1011E+01 -0.8873E-01 0.2778E-01 -95.5 -6.3 83.0 -0.0 0.0 -4.9 154.8 0.804E-02 0.00 7 0.1010E+01 -0.1127E-01 0.4928E-01 -95.2 -6.3 82.7 0.0 0.0 -8.7 154.8 0.804E-02 0.00 8 0.1010E+01 -0.5000E-01 0.4928E-01 -95.2 -6.3 82.7 -0.0 0.0 -8.7 154.8 0.804E-02 0.00 9 0.1010E+01 -0.8873E-01 0.4928E-01 -95.2 -6.3 82.7 -0.0 -0.0 -8.7 154.8 0.804E-02 0.00 10 0.1050E+01 -0.1127E-01 0.6503E-02 -94.2 -6.8 80.3 -0.0 0.0 -1.1 151.1 0.743E-02 0.00 11 0.1050E+01 -0.5000E-01 0.6503E-02 -94.2 -6.8 80.3 -0.0 0.0 -1.1 151.1 0.743E-02 0.00 12 0.1050E+01 -0.8873E-01 0.6503E-02 -94.2 -6.8 80.3 -0.0 0.0 -1.1 151.1 0.743E-02 0.00 13 0.1050E+01 -0.1127E-01 0.2884E-01 -94.0 -6.8 80.2 0.0 0.0 -4.8 151.1 0.743E-02 0.00 14 0.1050E+01 -0.5000E-01 0.2884E-01 -94.0 -6.8 80.2 0.0 0.0 -4.8 151.1 0.743E-02 0.00 15 0.1050E+01 -0.8873E-01 0.2884E-01 -94.0 -6.8 80.2 -0.0 0.0 -4.8 151.1 0.743E-02 0.00 16 0.1049E+01 -0.1127E-01 0.5117E-01 -93.8 -6.8 79.9 0.0 0.0 -8.5 151.1 0.743E-02 0.00 17 0.1049E+01 -0.5000E-01 0.5117E-01 -93.8 -6.8 79.9 0.0 0.0 -8.5 151.1 0.743E-02 0.00 18 0.1049E+01 -0.8873E-01 0.5117E-01 -93.8 -6.8 79.9 -0.0 -0.0 -8.5 151.1 0.743E-02 0.00 19 0.1089E+01 -0.1127E-01 0.6743E-02 -83.0 2.1 87.2 -0.0 -0.0 -1.1 147.4 0.685E-02 0.00 20 0.1089E+01 -0.5000E-01 0.6743E-02 -83.0 2.1 87.2 0.0 -0.0 -1.1 147.4 0.685E-02 0.00 21 0.1089E+01 -0.8873E-01 0.6743E-02 -83.0 2.1 87.2 0.0 -0.0 -1.1 147.4 0.685E-02 0.00 22 0.1088E+01 -0.1127E-01 0.2991E-01 -82.8 2.0 87.1 0.0 -0.0 -4.7 147.4 0.685E-02 0.00 23 0.1088E+01 -0.5000E-01 0.2991E-01 -82.8 2.0 87.1 0.0 -0.0 -4.7 147.4 0.685E-02 0.00 24 0.1088E+01 -0.8873E-01 0.2991E-01 -82.8 2.0 87.1 -0.0 -0.0 -4.7 147.4 0.685E-02 0.00 25 0.1087E+01 -0.1127E-01 0.5306E-01 -82.6 2.1 86.8 0.0 0.0 -8.3 147.4 0.685E-02 0.00 26 0.1087E+01 -0.5000E-01 0.5306E-01 -82.6 2.1 86.8 0.0 -0.0 -8.3 147.4 0.685E-02 0.00 27 0.1087E+01 -0.8873E-01 0.5306E-01 -82.6 2.1 86.8 -0.0 -0.0 -8.3 147.4 0.685E-02 0.00 2 1 0.1111E+01 -0.1127E-01 0.6883E-02 -80.0 3.9 87.9 0.0 -0.0 -1.0 145.4 0.655E-02 0.00 2 0.1111E+01 -0.5000E-01 0.6883E-02 -80.0 3.9 87.9 0.0 -0.0 -1.0 145.4 0.655E-02 0.00 3 0.1111E+01 -0.8873E-01 0.6883E-02 -80.0 3.9 87.9 0.0 -0.0 -1.0 145.4 0.655E-02 0.00 4 0.1111E+01 -0.1127E-01 0.3053E-01 -79.8 3.9 87.8 0.0 -0.0 -4.6 145.4 0.655E-02 0.00 5 0.1111E+01 -0.5000E-01 0.3053E-01 -79.8 3.9 87.8 0.0 -0.0 -4.6 145.4 0.655E-02 0.00 6 0.1111E+01 -0.8873E-01 0.3053E-01 -79.8 3.9 87.8 -0.0 -0.0 -4.6 145.4 0.655E-02 0.00 7 0.1110E+01 -0.1127E-01 0.5416E-01 -79.6 3.9 87.5 0.0 -0.0 -8.2 145.4 0.655E-02 0.00 8 0.1110E+01 -0.5000E-01 0.5416E-01 -79.6 3.9 87.5 -0.0 -0.0 -8.2 145.4 0.655E-02 0.00 9 0.1110E+01 -0.8873E-01 0.5416E-01 -79.6 3.9 87.5 -0.0 -0.0 -8.2 145.4 0.655E-02 0.00 10 0.1150E+01 -0.1127E-01 0.7123E-02 -77.9 4.2 86.2 0.0 0.0 -1.0 142.2 0.609E-02 0.00 11 0.1150E+01 -0.5000E-01 0.7123E-02 -77.9 4.2 86.2 0.0 0.0 -1.0 142.2 0.609E-02 0.00 12 0.1150E+01 -0.8873E-01 0.7123E-02 -77.9 4.2 86.2 0.0 0.0 -1.0 142.2 0.609E-02 0.00 13 0.1150E+01 -0.1127E-01 0.3159E-01 -77.8 4.2 86.1 0.0 0.0 -4.5 142.2 0.609E-02 0.00 14 0.1150E+01 -0.5000E-01 0.3159E-01 -77.8 4.2 86.1 0.0 0.0 -4.5 142.2 0.609E-02 0.00 15 0.1150E+01 -0.8873E-01 0.3159E-01 -77.8 4.2 86.1 -0.0 0.0 -4.5 142.2 0.609E-02 0.00 16 0.1149E+01 -0.1127E-01 0.5604E-01 -77.5 4.2 85.9 0.0 0.0 -8.0 142.2 0.609E-02 0.00 17 0.1149E+01 -0.5000E-01 0.5604E-01 -77.5 4.2 85.9 0.0 0.0 -8.0 142.2 0.609E-02 0.00 18 0.1149E+01 -0.8873E-01 0.5604E-01 -77.5 4.2 85.9 -0.0 -0.0 -8.0 142.2 0.609E-02 0.00 19 0.1189E+01 -0.1127E-01 0.7362E-02 -69.1 11.1 91.4 0.0 0.0 -1.0 139.0 0.565E-02 0.00 20 0.1189E+01 -0.5000E-01 0.7362E-02 -69.1 11.1 91.4 0.0 0.0 -1.0 139.0 0.565E-02 0.00 21 0.1189E+01 -0.8873E-01 0.7362E-02 -69.1 11.1 91.4 0.0 0.0 -1.0 139.0 0.565E-02 0.00 22 0.1188E+01 -0.1127E-01 0.3265E-01 -69.0 11.1 91.3 0.0 0.0 -4.4 139.0 0.565E-02 0.00 23 0.1188E+01 -0.5000E-01 0.3265E-01 -69.0 11.1 91.3 0.0 0.0 -4.4 139.0 0.565E-02 0.00 24 0.1188E+01 -0.8873E-01 0.3265E-01 -69.0 11.1 91.3 -0.0 0.0 -4.4 139.0 0.565E-02 0.00 25 0.1187E+01 -0.1127E-01 0.5793E-01 -68.7 11.1 91.1 0.0 0.0 -7.8 139.0 0.565E-02 0.00 26 0.1187E+01 -0.5000E-01 0.5793E-01 -68.7 11.1 91.1 0.0 0.0 -7.8 139.0 0.565E-02 0.00 27 0.1187E+01 -0.8873E-01 0.5793E-01 -68.7 11.1 91.1 -0.0 0.0 -7.8 139.0 0.565E-02 0.00 3 1 0.1211E+01 -0.1127E-01 0.7502E-02 -66.4 12.8 92.1 -0.0 0.0 -1.0 137.3 0.542E-02 0.00 2 0.1211E+01 -0.5000E-01 0.7502E-02 -66.4 12.8 92.1 -0.0 0.0 -1.0 137.3 0.542E-02 0.00 3 0.1211E+01 -0.8873E-01 0.7502E-02 -66.4 12.8 92.1 -0.0 0.0 -1.0 137.3 0.542E-02 0.00 4 0.1211E+01 -0.1127E-01 0.3327E-01 -66.3 12.8 92.0 0.0 0.0 -4.4 137.3 0.542E-02 0.00 5 0.1211E+01 -0.5000E-01 0.3327E-01 -66.3 12.8 92.0 -0.0 0.0 -4.4 137.3 0.542E-02 0.00 6 0.1211E+01 -0.8873E-01 0.3327E-01 -66.3 12.8 92.0 -0.0 0.0 -4.4 137.3 0.542E-02 0.00 7 0.1210E+01 -0.1127E-01 0.5903E-01 -66.0 12.8 91.7 0.0 0.0 -7.7 137.3 0.542E-02 0.00 8 0.1210E+01 -0.5000E-01 0.5903E-01 -66.0 12.8 91.7 0.0 0.0 -7.7 137.3 0.542E-02 0.00 9 0.1210E+01 -0.8873E-01 0.5903E-01 -66.0 12.8 91.7 0.0 0.0 -7.7 137.3 0.542E-02 0.00 10 0.1250E+01 -0.1127E-01 0.7742E-02 -64.1 13.7 91.2 -0.0 0.0 -1.0 134.5 0.506E-02 0.00 11 0.1250E+01 -0.5000E-01 0.7742E-02 -64.1 13.7 91.2 -0.0 0.0 -1.0 134.5 0.506E-02 0.00 12 0.1250E+01 -0.8873E-01 0.7742E-02 -64.1 13.7 91.2 -0.0 0.0 -1.0 134.5 0.506E-02 0.00 13 0.1250E+01 -0.1127E-01 0.3434E-01 -63.9 13.7 91.1 0.0 0.0 -4.3 134.5 0.506E-02 0.00 14 0.1250E+01 -0.5000E-01 0.3434E-01 -63.9 13.7 91.1 0.0 0.0 -4.3 134.5 0.506E-02 0.00 15 0.1250E+01 -0.8873E-01 0.3434E-01 -63.9 13.7 91.1 -0.0 0.0 -4.3 134.5 0.506E-02 0.00 16 0.1249E+01 -0.1127E-01 0.6091E-01 -63.7 13.7 90.9 0.0 0.0 -7.6 134.5 0.506E-02 0.00 17 0.1249E+01 -0.5000E-01 0.6091E-01 -63.7 13.7 90.9 0.0 0.0 -7.6 134.5 0.506E-02 0.00 18 0.1249E+01 -0.8873E-01 0.6091E-01 -63.7 13.7 90.9 0.0 0.0 -7.6 134.5 0.506E-02 0.00 19 0.1289E+01 -0.1127E-01 0.7982E-02 -56.9 19.1 95.2 -0.0 -0.0 -0.9 131.7 0.472E-02 0.00 20 0.1289E+01 -0.5000E-01 0.7982E-02 -56.9 19.1 95.2 -0.0 -0.0 -0.9 131.7 0.472E-02 0.00 21 0.1289E+01 -0.8873E-01 0.7982E-02 -56.9 19.1 95.2 -0.0 -0.0 -0.9 131.7 0.472E-02 0.00 22 0.1288E+01 -0.1127E-01 0.3540E-01 -56.8 19.1 95.1 -0.0 -0.0 -4.2 131.7 0.472E-02 0.00 23 0.1288E+01 -0.5000E-01 0.3540E-01 -56.8 19.1 95.1 -0.0 -0.0 -4.2 131.7 0.472E-02 0.00 24 0.1288E+01 -0.8873E-01 0.3540E-01 -56.8 19.1 95.1 0.0 -0.0 -4.2 131.7 0.472E-02 0.00 25 0.1287E+01 -0.1127E-01 0.6280E-01 -56.5 19.1 94.9 0.0 -0.0 -7.4 131.7 0.472E-02 0.00 26 0.1287E+01 -0.5000E-01 0.6280E-01 -56.5 19.1 94.9 0.0 -0.0 -7.4 131.7 0.472E-02 0.00 27 0.1287E+01 -0.8873E-01 0.6280E-01 -56.5 19.1 94.9 0.0 -0.0 -7.4 131.7 0.472E-02 0.00 4 1 0.1311E+01 -0.1127E-01 0.8121E-02 -54.5 20.7 95.9 -0.0 -0.0 -0.9 130.2 0.454E-02 0.00 2 0.1311E+01 -0.5000E-01 0.8121E-02 -54.5 20.7 95.9 -0.0 -0.0 -0.9 130.2 0.454E-02 0.00 3 0.1311E+01 -0.8873E-01 0.8121E-02 -54.5 20.7 95.9 -0.0 -0.0 -0.9 130.2 0.454E-02 0.00 4 0.1311E+01 -0.1127E-01 0.3602E-01 -54.3 20.7 95.8 -0.0 -0.0 -4.1 130.2 0.454E-02 0.00 5 0.1311E+01 -0.5000E-01 0.3602E-01 -54.3 20.7 95.8 0.0 -0.0 -4.1 130.2 0.454E-02 0.00 6 0.1311E+01 -0.8873E-01 0.3602E-01 -54.3 20.7 95.8 0.0 -0.0 -4.1 130.2 0.454E-02 0.00 7 0.1310E+01 -0.1127E-01 0.6390E-01 -54.1 20.7 95.5 0.0 -0.0 -7.3 130.2 0.454E-02 0.00 8 0.1310E+01 -0.5000E-01 0.6390E-01 -54.1 20.7 95.5 0.0 -0.0 -7.3 130.2 0.454E-02 0.00 9 0.1310E+01 -0.8873E-01 0.6390E-01 -54.1 20.7 95.5 0.0 -0.0 -7.3 130.2 0.454E-02 0.00 10 0.1350E+01 -0.1127E-01 0.8361E-02 -52.0 21.8 95.5 0.0 -0.0 -0.9 127.8 0.426E-02 0.00 11 0.1350E+01 -0.5000E-01 0.8361E-02 -52.0 21.8 95.5 0.0 -0.0 -0.9 127.8 0.426E-02 0.00 12 0.1350E+01 -0.8873E-01 0.8361E-02 -52.0 21.8 95.5 0.0 -0.0 -0.9 127.8 0.426E-02 0.00 13 0.1349E+01 -0.1127E-01 0.3708E-01 -51.9 21.8 95.4 0.0 -0.0 -4.1 127.8 0.426E-02 0.00 14 0.1349E+01 -0.5000E-01 0.3708E-01 -51.9 21.8 95.4 0.0 -0.0 -4.1 127.8 0.426E-02 0.00 15 0.1349E+01 -0.8873E-01 0.3708E-01 -51.9 21.8 95.4 0.0 -0.0 -4.1 127.8 0.426E-02 0.00 16 0.1348E+01 -0.1127E-01 0.6579E-01 -51.7 21.8 95.1 0.0 -0.0 -7.2 127.8 0.426E-02 0.00 17 0.1348E+01 -0.5000E-01 0.6579E-01 -51.7 21.8 95.1 0.0 -0.0 -7.2 127.8 0.426E-02 0.00 18 0.1348E+01 -0.8873E-01 0.6579E-01 -51.7 21.8 95.1 0.0 -0.0 -7.2 127.8 0.426E-02 0.00 19 0.1389E+01 -0.1127E-01 0.8601E-02 -46.1 26.3 98.6 0.0 -0.0 -0.9 125.3 0.399E-02 0.00 20 0.1389E+01 -0.5000E-01 0.8601E-02 -46.1 26.3 98.6 0.0 -0.0 -0.9 125.3 0.399E-02 0.00 21 0.1389E+01 -0.8873E-01 0.8601E-02 -46.1 26.3 98.6 0.0 -0.0 -0.9 125.3 0.399E-02 0.00 22 0.1388E+01 -0.1127E-01 0.3815E-01 -46.0 26.3 98.5 0.0 -0.0 -4.0 125.3 0.399E-02 0.00 23 0.1388E+01 -0.5000E-01 0.3815E-01 -46.0 26.3 98.5 0.0 -0.0 -4.0 125.3 0.399E-02 0.00 24 0.1388E+01 -0.8873E-01 0.3815E-01 -46.0 26.3 98.5 0.0 -0.0 -4.0 125.3 0.399E-02 0.00 25 0.1387E+01 -0.1127E-01 0.6768E-01 -45.7 26.3 98.3 0.0 -0.0 -7.0 125.3 0.399E-02 0.00 26 0.1387E+01 -0.5000E-01 0.6768E-01 -45.7 26.3 98.3 0.0 -0.0 -7.0 125.3 0.399E-02 0.00 27 0.1387E+01 -0.8873E-01 0.6768E-01 -45.7 26.3 98.3 0.0 -0.0 -7.0 125.3 0.399E-02 0.00 5 1 0.1411E+01 -0.1127E-01 0.8741E-02 -43.9 27.7 99.3 0.0 -0.0 -0.9 124.0 0.385E-02 0.00 2 0.1411E+01 -0.5000E-01 0.8741E-02 -43.9 27.7 99.3 0.0 -0.0 -0.9 124.0 0.385E-02 0.00 3 0.1411E+01 -0.8873E-01 0.8741E-02 -43.9 27.7 99.3 0.0 -0.0 -0.9 124.0 0.385E-02 0.00 4 0.1411E+01 -0.1127E-01 0.3877E-01 -43.8 27.7 99.2 0.0 -0.0 -3.9 124.0 0.385E-02 0.00 5 0.1411E+01 -0.5000E-01 0.3877E-01 -43.8 27.7 99.2 0.0 -0.0 -3.9 124.0 0.385E-02 0.00 6 0.1411E+01 -0.8873E-01 0.3877E-01 -43.8 27.7 99.2 0.0 -0.0 -3.9 124.0 0.385E-02 0.00 7 0.1410E+01 -0.1127E-01 0.6877E-01 -43.5 27.7 98.9 0.0 -0.0 -7.0 124.0 0.385E-02 0.00 8 0.1410E+01 -0.5000E-01 0.6877E-01 -43.5 27.7 98.9 -0.0 -0.0 -7.0 124.0 0.385E-02 0.00 9 0.1410E+01 -0.8873E-01 0.6877E-01 -43.5 27.7 98.9 -0.0 -0.0 -7.0 124.0 0.385E-02 0.00 10 0.1450E+01 -0.1127E-01 0.8981E-02 -41.5 28.9 99.2 0.0 0.0 -0.9 121.8 0.362E-02 0.00 11 0.1450E+01 -0.5000E-01 0.8981E-02 -41.5 28.9 99.2 0.0 0.0 -0.9 121.8 0.362E-02 0.00 12 0.1450E+01 -0.8873E-01 0.8981E-02 -41.5 28.9 99.2 0.0 0.0 -0.9 121.8 0.362E-02 0.00 13 0.1449E+01 -0.1127E-01 0.3983E-01 -41.4 28.9 99.1 0.0 0.0 -3.9 121.8 0.362E-02 0.00 14 0.1449E+01 -0.5000E-01 0.3983E-01 -41.4 28.9 99.1 0.0 0.0 -3.9 121.8 0.362E-02 0.00 15 0.1449E+01 -0.8873E-01 0.3983E-01 -41.4 28.9 99.1 0.0 0.0 -3.9 121.8 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111.8 -0.0 -0.0 -3.2 101.3 0.189E-02 0.00 5 0.1911E+01 -0.5000E-01 0.5250E-01 -4.9 53.3 111.8 -0.0 -0.0 -3.2 101.3 0.189E-02 0.00 6 0.1911E+01 -0.8873E-01 0.5250E-01 -4.9 53.3 111.8 0.0 -0.0 -3.2 101.3 0.189E-02 0.00 7 0.1909E+01 -0.1127E-01 0.9314E-01 -4.7 53.3 111.6 -0.0 -0.0 -5.7 101.3 0.189E-02 0.00 8 0.1909E+01 -0.5000E-01 0.9314E-01 -4.7 53.3 111.6 -0.0 -0.0 -5.7 101.3 0.189E-02 0.00 9 0.1909E+01 -0.8873E-01 0.9314E-01 -4.7 53.3 111.6 -0.0 -0.0 -5.7 101.3 0.189E-02 0.00 10 0.1950E+01 -0.1127E-01 0.1208E-01 -3.1 54.4 112.3 -0.0 -0.0 -0.7 99.9 0.180E-02 0.00 11 0.1950E+01 -0.5000E-01 0.1208E-01 -3.1 54.4 112.3 -0.0 -0.0 -0.7 99.9 0.180E-02 0.00 12 0.1950E+01 -0.8873E-01 0.1208E-01 -3.1 54.4 112.3 0.0 -0.0 -0.7 99.9 0.180E-02 0.00 13 0.1949E+01 -0.1127E-01 0.5357E-01 -3.1 54.4 112.2 -0.0 -0.0 -3.2 100.0 0.180E-02 0.00 14 0.1949E+01 -0.5000E-01 0.5357E-01 -3.1 54.4 112.2 -0.0 -0.0 -3.2 100.0 0.180E-02 0.00 15 0.1949E+01 -0.8873E-01 0.5357E-01 -3.1 54.4 112.2 0.0 -0.0 -3.2 100.0 0.180E-02 0.00 16 0.1948E+01 -0.1127E-01 0.9503E-01 -2.9 54.4 112.0 -0.0 -0.0 -5.6 100.0 0.180E-02 0.00 17 0.1948E+01 -0.5000E-01 0.9503E-01 -2.9 54.4 112.0 -0.0 -0.0 -5.6 100.0 0.180E-02 0.00 18 0.1948E+01 -0.8873E-01 0.9503E-01 -2.9 54.4 112.0 -0.0 -0.0 -5.6 100.0 0.180E-02 0.00 19 0.1989E+01 -0.1127E-01 0.1232E-01 -0.4 56.2 113.4 -0.0 -0.0 -0.7 98.6 0.172E-02 0.00 20 0.1989E+01 -0.5000E-01 0.1232E-01 -0.4 56.2 113.4 0.0 -0.0 -0.7 98.6 0.172E-02 0.00 21 0.1989E+01 -0.8873E-01 0.1232E-01 -0.4 56.2 113.4 0.0 -0.0 -0.7 98.6 0.172E-02 0.00 22 0.1988E+01 -0.1127E-01 0.5463E-01 -0.4 56.2 113.3 -0.0 -0.0 -3.1 98.6 0.172E-02 0.00 23 0.1988E+01 -0.5000E-01 0.5463E-01 -0.4 56.2 113.3 -0.0 -0.0 -3.1 98.6 0.172E-02 0.00 24 0.1988E+01 -0.8873E-01 0.5463E-01 -0.4 56.2 113.3 0.0 -0.0 -3.1 98.6 0.172E-02 0.00 25 0.1986E+01 -0.1127E-01 0.9691E-01 -0.2 56.2 113.2 -0.0 -0.0 -5.5 98.6 0.172E-02 0.00 26 0.1986E+01 -0.5000E-01 0.9691E-01 -0.2 56.2 113.2 -0.0 -0.0 -5.5 98.6 0.172E-02 0.00 27 0.1986E+01 -0.8873E-01 0.9691E-01 -0.2 56.2 113.2 -0.0 -0.0 -5.5 98.6 0.172E-02 0.00 * END OF STR3 * TOTAL CPU: 00:00:00