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AFLR3 GG : Nodes, Elements   =    858360   4862787
AFLR3 GG : Nodes, Elements   =    858360   4858186
AFLR3 GG : Nodes, Elements   =    862426   4870389
AFLR3 GG : Nodes, Elements   =    862426   4886510
AFLR3 GG : Nodes, Elements   =    862426   4882240
AFLR3 GG : Nodes, Elements   =    865970   4892872
AFLR3 GG : Nodes, Elements   =    865970   4906556
AFLR3 GG : Nodes, Elements   =    865970   4903186
AFLR3 GG : Nodes, Elements   =    869079   4912519
AFLR3 GG : Nodes, Elements   =    869079   4924546
AFLR3 GG : Nodes, Elements   =    869079   4921496
AFLR3 GG : Nodes, Elements   =    871727   4929441
AFLR3 GG : Nodes, Elements   =    871727   4939749
AFLR3 GG : Nodes, Elements   =    871727   4937169
AFLR3 GG : Nodes, Elements   =    873897   4943682
AFLR3 GG : Nodes, Elements   =    873897   4952190
AFLR3 GG : Nodes, Elements   =    873897   4949987
AFLR3 GG : Nodes, Elements   =    875556   4954966
AFLR3 GG : Nodes, Elements   =    875556   4961597
AFLR3 GG : Nodes, Elements   =    875556   4959782
AFLR3 GG : Nodes, Elements   =    876770   4963425
AFLR3 GG : Nodes, Elements   =    876770   4968199
AFLR3 GG : Nodes, Elements   =    876770   4966923
AFLR3 GG : Nodes, Elements   =    877602   4969423
AFLR3 GG : Nodes, Elements   =    877602   4972665
AFLR3 GG : Nodes, Elements   =    877602   4971787
AFLR3 GG : Nodes, Elements   =    878108   4973305
AFLR3 GG : Nodes, Elements   =    878108   4975268
AFLR3 GG : Nodes, Elements   =    878108   4974714
AFLR3 GG : Nodes, Elements   =    878387   4975552
AFLR3 GG : Nodes, Elements   =    878387   4976665
AFLR3 GG : Nodes, Elements   =    878387   4976319
AFLR3 GG : Nodes, Elements   =    878544   4976790
AFLR3 GG : Nodes, Elements   =    878544   4977455
AFLR3 GG : Nodes, Elements   =    878544   4977234
AFLR3 GG : Nodes, Elements   =    878631   4977495
AFLR3 GG : Nodes, Elements   =    878631   4977848
AFLR3 GG : Nodes, Elements   =    878631   4977721
AFLR3 GG : Nodes, Elements   =    878687   4977889
AFLR3 GG : Nodes, Elements   =    878687   4978126
AFLR3 GG : Nodes, Elements   =    878687   4978037
AFLR3 GG : Nodes, Elements   =    878722   4978142
AFLR3 GG : Nodes, Elements   =    878722   4978289
AFLR3 GG : Nodes, Elements   =    878722   4978238
AFLR3 GG : Nodes, Elements   =    878746   4978310
AFLR3 GG : Nodes, Elements   =    878746   4978403
AFLR3 GG : Nodes, Elements   =    878746   4978373
AFLR3 GG : Nodes, Elements   =    878766   4978433
AFLR3 GG : Nodes, Elements   =    878766   4978522
AFLR3 GG : Nodes, Elements   =    878766   4978484
AFLR3 GG : Nodes, Elements   =    878785   4978541
AFLR3 GG : Nodes, Elements   =    878785   4978614
AFLR3 GG : Nodes, Elements   =    878785   4978595
AFLR3 GG : Nodes, Elements   =    878793   4978619
AFLR3 GG : Nodes, Elements   =    878793   4978654
AFLR3 GG : Nodes, Elements   =    878793   4978636
AFLR3 GG : Nodes, Elements   =    878795   4978642
AFLR3 GG : Nodes, Elements   =    878795   4978649
AFLR3 GG : Nodes, Elements   =    878795   4978646
AFLR3 GG : Nodes, Elements   =    878930   4979051
AFLR3 GG : Nodes, Elements   =    878930   4979690
AFLR3 GG : Nodes, Elements   =    878930   4979398
AFLR3 GG : Nodes, Elements   =    878983   4979557
AFLR3 GG : Nodes, Elements   =    878983   4979723
AFLR3 GG : Nodes, Elements   =    878983   4979674
AFLR3 GG : Nodes, Elements   =    879002   4979731
AFLR3 GG : Nodes, Elements   =    879002   4979795
AFLR3 GG : Nodes, Elements   =    879002   4979778
AFLR3 GG : Nodes, Elements   =    879007   4979793
AFLR3 GG : Nodes, Elements   =    879007   4979811
AFLR3 GG : Nodes, Elements   =    879007   4979804
 
AFLR3    : CPU Time          =     1.959   minutes
 
AFLR3 QI : QUALITY IMPROVEMENT
 
AFLR3 QI : Nodes, Elements   =    879007   4979804
AFLR3 QI : Nodes, Elements   =    872139   4941328
AFLR3 QI : Nodes, Elements   =    870068   4929616
AFLR3 QI : Nodes, Elements   =    869401   4925872
AFLR3 QI : Nodes, Elements   =    869242   4924981
AFLR3 QI : Nodes, Elements   =    869215   4924823
AFLR3 QI : Nodes, Elements   =    869212   4924805
AFLR3 QI : Nodes, Elements   =    869212   4945229
AFLR3 QI : Nodes, Elements   =    869212   4922255
AFLR3 QI : Nodes, Elements   =    869212   4912769
AFLR3 QI : Nodes, Elements   =    869212   4927916
AFLR3 QI : Nodes, Elements   =    869212   4912557
AFLR3 QI : Nodes, Elements   =    869212   4912067
AFLR3 QI : Nodes, Elements   =    869212   4926194
AFLR3 QI : Nodes, Elements   =    869212   4912315
AFLR3 QI : Nodes, Elements   =    869212   4911995
AFLR3 QI : Nodes, Elements   =    869212   4916957
AFLR3 QI : Nodes, Elements   =    869212   4911244
AFLR3 QI : Nodes, Elements   =    869212   4910830
AFLR3 QI : Nodes, Elements   =    869212   4913686
AFLR3 QI : Nodes, Elements   =    869212   4910459
AFLR3 QI : Nodes, Elements   =    869212   4910187
 
AFLR3    : CPU Time          =    27.869   seconds
 
AFLR3 QRG: QUALITY GRID RE-GENERATION
 
AFLR3 QRG: Nodes, Elements   =    869212   4910187
AFLR3 QRG: Nodes, Elements   =    869211   4910183
AFLR3 QRG: Nodes, Elements   =    869210   4910179
AFLR3 QRG: Nodes, Elements   =    869209   4910176
AFLR3 QRG: Nodes, Elements   =    869208   4910172
AFLR3 QRG: Nodes, Elements   =    869207   4910168
 
AFLR3    : CPU Time          =     0.985   seconds
 
AFLR3    : DONE

UG3      : DIHEDRAL ANGLE CHECK

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Ang      =     5.869     164.4
UG3      : Average Angle     =      70.2
UG3      : No. Angle>160.0   =        17
UG3      : No. Angle>179.9   =         0

UG3      : VOL CHECK

UG3      : Total-Volume      =  5.96e+10

UG3      : No. Tet Elems     =   4910168
UG3      : Min Vol           =  1.78e-05
UG3      : Average Vol       =  1.21e+04
UG3      : Total-Tet-Vol     =  5.96e+10
UG3      : No. Vol<TOL       =         0

UG3      : Q VOL-LENGTH-RATIO CHECK
                      2/3        2
UG3      : Q = c * Vol   / sum( L  )
UG3      : 0 <= Q <= 1

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Q        =    0.0363         1
UG3      : Average Q         =     0.891
UG3      : No. Q<       0.1  =        32
UG3      : No. Q<      0.01  =         0

OVERALL  : CPU Time          =     2.583   minutes

UG3      : DIHEDRAL ANGLE CHECK

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Ang      =     5.869     164.4
UG3      : Average Angle     =      70.2
UG3      : No. Angle>160.0   =        17
UG3      : No. Angle>179.9   =         0

UG3      : VOL CHECK

UG3      : Total-Volume      =  5.96e+10

UG3      : No. Tet Elems     =   4910168
UG3      : Min Vol           =  1.78e-05
UG3      : Average Vol       =  1.21e+04
UG3      : Total-Tet-Vol     =  5.96e+10
UG3      : No. Vol<TOL       =         0

UG3      : Q VOL-LENGTH-RATIO CHECK
                      2/3        2
UG3      : Q = c * Vol   / sum( L  )
UG3      : 0 <= Q <= 1
UG3      : Note that L includes scaling for BL-aspect=ratio

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Q        =     0.202         1
UG3      : Average Q         =     0.854
UG3      : No. Q<       0.1  =         0
UG3      : No. Q<      0.01  =         0

UG3      : CPU Time          =     0.000   seconds

EGADS    : ---------------------------------------
EGADS    : Engineering Geometry Aircraft Design System
EGADS    : Version 1.26
EGADS    : OpenCASCADE Version 7.8.0
EGADS    : ---------------------------------------

EGADS    : CREATE EGADS TESS FROM AFLR3 DATA

EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 1
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 2
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 3
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 4
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 5
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 6
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 7
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 8
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 9
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 10
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 11
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 12
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 13
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 14
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 15
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 16
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 17
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 18

EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 1
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 2
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 3
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 4
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 5
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 6
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 7
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 8
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 9
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 10

EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 19
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 20
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 21
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 22
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 23
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 24
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 25
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 26
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 27
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 28
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 29
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 30

EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 11
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 12
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 13
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 14
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 15
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 16

EGADS    : EGADS TESS CREATED

EGADS    : CHECK TESS FACE NODE MAP

EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 1
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 2
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 3
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 4
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 5
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 6
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 7
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 8
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 9
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 10
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 11
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 12
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 13
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 14
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 15
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 16
Volume mesh:
	Number of nodes          = 869207
	Number of elements       = 5061876
	Number of triangles      = 151708
	Number of quadrilatarals = 0
	Number of tetrahedrals   = 4910168
	Number of pyramids       = 0
	Number of prisms         = 0
	Number of hexahedrals    = 0

Writing SU2 file ....
Finished writing SU2 file

Getting CFD boundary conditions
	Boundary condition name - Farfield
	Boundary condition name - Wing
	Done getting CFD boundary conditions
Warning: The su2 cfg file will be overwritten!
Write SU2 configuration file for version "BlackBird (7.5.1) "


Running SU2......
/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/io/config.py:142: ResourceWarning: unclosed file <_io.TextIOWrapper name='inviscidWing.cfg' mode='r' encoding='UTF-8'>
  konfig = read_config(filename)
ResourceWarning: Enable tracemalloc to get the object allocation traceback
/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/io/config.py:933: ResourceWarning: unclosed file <_io.TextIOWrapper name='config_CFD.cfg_tmp' mode='r' encoding='UTF-8'>
  for raw_line in open(temp_filename):
ResourceWarning: Enable tracemalloc to get the object allocation traceback

-------------------------------------------------------------------------
|    ___ _   _ ___                                                      |
|   / __| | | |_  )   Release 8.0.0 "Harrier"                           |
|   \__ \ |_| |/ /                                                      |
|   |___/\___//___|   Suite (Computational Fluid Dynamics Code)         |
|                                                                       |
-------------------------------------------------------------------------
| SU2 Project Website: https://su2code.github.io                        |
|                                                                       |
| The SU2 Project is maintained by the SU2 Foundation                   |
| (http://su2foundation.org)                                            |
-------------------------------------------------------------------------
| Copyright 2012-2023, SU2 Contributors                                 |
|                                                                       |
| SU2 is free software; you can redistribute it and/or                  |
| modify it under the terms of the GNU Lesser General Public            |
| License as published by the Free Software Foundation; either          |
| version 2.1 of the License, or (at your option) any later version.    |
|                                                                       |
| SU2 is distributed in the hope that it will be useful,                |
| but WITHOUT ANY WARRANTY; without even the implied warranty of        |
| MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU      |
| Lesser General Public License for more details.                       |
|                                                                       |
| You should have received a copy of the GNU Lesser General Public      |
| License along with SU2. If not, see <http://www.gnu.org/licenses/>.   |
-------------------------------------------------------------------------

Parsing config file for zone 0

----------------- Physical Case Definition ( Zone 0 ) -------------------
Compressible Euler equations.
Mach number: 0.5.
Angle of attack (AoA): 1 deg, and angle of sideslip (AoS): 0 deg.
No restart solution, use the values at infinity (freestream).
Dimensional simulation.
The reference area is 4240 m^2.
The semi-span will be computed using the max y(3D) value.
The reference length is 195.346 m.
Reference origin for moment evaluation is (55.4263, 0, 0).
Surface(s) where the force coefficients are evaluated: BC_1.

Surface(s) plotted in the output file: BC_1.
Input mesh file name: ../aflr3/aflr3_CAPS.su2

--------------- Space Numerical Integration ( Zone 0 ) ------------------
Roe (with entropy fix = 0.001) solver for the flow inviscid terms.
Standard Roe without low-dissipation function.
Second order integration in space, with slope limiter.
Venkatakrishnan slope-limiting method, with constant: 0.05.
The reference element size is: 1. 
Gradient for upwind reconstruction: inverse-distance weighted Least-Squares.
Gradient for viscous and source terms: inverse-distance weighted Least-Squares.

--------------- Time Numerical Integration  ( Zone 0 ) ------------------
Local time stepping (steady state simulation).
Euler implicit method for the flow equations.
FGMRES is used for solving the linear system.
Using a ILU(0) preconditioning.
Convergence criteria of the linear solver: 1e-06.
Max number of linear iterations: 10.
V Multigrid Cycle, with 2 multigrid levels.
Damping factor for the residual restriction: 0.75.
Damping factor for the correction prolongation: 0.75.
No CFL adaptation.
+-------------------------------------------+
|  MG Level| Presmooth|PostSmooth|CorrectSmo|
+-------------------------------------------+
|         0|         1|         0|         0|
|         1|         2|         0|         0|
|         2|         3|         0|         0|
+-------------------------------------------+
Courant-Friedrichs-Lewy number:       10

------------------ Convergence Criteria  ( Zone 0 ) ---------------------
Maximum number of solver subiterations: 10.
Begin convergence monitoring at iteration 5.
Residual minimum value: 1e-8.
Cauchy series min. value: 1e-10.
Number of Cauchy elements: 100.
Begin windowed time average at iteration 0.

-------------------- Output Information ( Zone 0 ) ----------------------
File writing frequency: 
+------------------------------------+
|                     File| Frequency|
+------------------------------------+
|                  RESTART|       250|
|              SURFACE_CSV|       250|
|                 PARAVIEW|       250|
|         SURFACE_PARAVIEW|       250|
+------------------------------------+
Writing the convergence history file every 1 inner iterations.
Writing the screen convergence history every 1 inner iterations.
The tabular file format is CSV (.csv).
Convergence history file name: history.
Forces breakdown file name: forces_breakdown_inviscidWing.dat.
Surface file name: surface_flow_inviscidWing.
Volume file name: flow_inviscidWing.
Restart file name: restart_flow_inviscidWing.dat.

------------- Config File Boundary Information ( Zone 0 ) ---------------
+-----------------------------------------------------------------------+
|                        Marker Type|                        Marker Name|
+-----------------------------------------------------------------------+
|                         Euler wall|                               BC_1|
+-----------------------------------------------------------------------+
|                          Far-field|                               BC_2|
+-----------------------------------------------------------------------+

-------------------- Output Preprocessing ( Zone 0 ) --------------------

WARNING: SURFACE_PRESSURE_DROP can only be computed for at least 2 surfaces (outlet, inlet, ...)

Screen output fields: TIME_ITER, OUTER_ITER, INNER_ITER, CUR_TIME, TIME_STEP, WALL_TIME, RMS_DENSITY, RMS_MOMENTUM-X, RMS_MOMENTUM-Y, RMS_ENERGY, EFFICIENCY
History output group(s): ITER, TIME_DOMAIN, WALL_TIME, RMS_RES, AERO_COEFF
Convergence field(s): RMS_DENSITY
Warning: No (valid) fields chosen for time convergence monitoring. Time convergence monitoring inactive.
Volume output fields: COORDINATES, SOLUTION, PRIMITIVE

------------------- Geometry Preprocessing ( Zone 0 ) -------------------
Three dimensional problem.
869207 grid points.
4910168 volume elements.
2 surface markers.
151672 boundary elements in index 0 (Marker = BC_1).
36 boundary elements in index 1 (Marker = BC_2).
4910168 tetrahedra.
Setting point connectivity.
Renumbering points (Reverse Cuthill McKee Ordering).
Recomputing point connectivity.
Setting element connectivity.
Checking the numerical grid orientation.
All volume elements are correctly orientend.
All surface elements are correctly orientend.
Identifying edges and vertices.
Setting the control volume structure.
Volume of the computational grid: 5.96352e+10.
Searching for the closest normal neighbors to the surfaces.
Storing a mapping from global to local point index.
Compute the surface curvature.
Max K: 122.726. Mean K: 4.02927. Standard deviation K: 11.959.
Checking for periodicity.
Computing mesh quality statistics for the dual control volumes.
+--------------------------------------------------------------+
|           Mesh Quality Metric|        Minimum|        Maximum|
+--------------------------------------------------------------+
|    Orthogonality Angle (deg.)|        42.0582|        87.4998|
|     CV Face Area Aspect Ratio|        1.02246|        6063.72|
|           CV Sub-Volume Ratio|        1.00664|        97979.3|
+--------------------------------------------------------------+
Setting the multigrid structure.
+-------------------------------------------+
|  MG Level|       CVs|Aggl. Rate|       CFL|
+-------------------------------------------+
|         0|    869207|    1/1.00|        10|
|         1|    142422|     1/6.1|    8.2081|
|         2|     21672|    1/6.57|   6.57316|
+-------------------------------------------+
Finding max control volume width.
Semi-span length = 97.6729 m.
Wetted area = 8795.17 m^2.
Area projection in the x-plane = 681.447 m^2, y-plane = 449.382 m^2, z-plane = 4224.13 m^2.
Max. coordinate in the x-direction = 123.552 m, y-direction = 97.6729 m, z-direction = 4.71806 m.
Min. coordinate in the x-direction = 49.9621 m, y-direction = -97.6729 m, z-direction = -8.47903 m.
Checking if Euler & Symmetry markers are straight/plane:
Boundary marker BC_1 is NOT a single plane.
Computing wall distances.

-------------------- Solver Preprocessing ( Zone 0 ) --------------------
Inviscid flow: Computing density based on free-stream
temperature and pressure using the ideal gas law.
Force coefficients computed using free-stream values.

-- Models:
+------------------------------------------------------------------------------+
|          Viscosity Model|        Conductivity Model|              Fluid Model|
+------------------------------------------------------------------------------+
|                        -|                         -|             STANDARD_AIR|
+------------------------------------------------------------------------------+
-- Fluid properties:
+------------------------------------------------------------------------------+
|                  Name|    Dim. value|    Ref. value|      Unit|Non-dim. value|
+------------------------------------------------------------------------------+
|          Gas Constant|       287.058|             1|  N.m/kg.K|       287.058|
|      Spec. Heat Ratio|             -|             -|         -|           1.4|
+------------------------------------------------------------------------------+
-- Initial and free-stream conditions:
+------------------------------------------------------------------------------+
|                  Name|    Dim. value|    Ref. value|      Unit|Non-dim. value|
+------------------------------------------------------------------------------+
|       Static Pressure|        101325|             1|        Pa|        101325|
|               Density|       1.22498|             1|    kg/m^3|       1.22498|
|           Temperature|        288.15|             1|         K|        288.15|
|          Total Energy|        221265|             1|   m^2/s^2|        221265|
|            Velocity-X|       170.123|             1|       m/s|       170.123|
|            Velocity-Y|             0|             1|       m/s|             0|
|            Velocity-Z|        2.9695|             1|       m/s|        2.9695|
|    Velocity Magnitude|       170.149|             1|       m/s|       170.149|
+------------------------------------------------------------------------------+
|           Mach Number|             -|             -|         -|           0.5|
+------------------------------------------------------------------------------+
Initialize Jacobian structure (Euler). MG level: 0.
Initialize Jacobian structure (Euler). MG level: 1.
Initialize Jacobian structure (Euler). MG level: 2.

------------------- Numerics Preprocessing ( Zone 0 ) -------------------

----------------- Integration Preprocessing ( Zone 0 ) ------------------

------------------- Iteration Preprocessing ( Zone 0 ) ------------------
Euler/Navier-Stokes/RANS fluid iteration.

------------------------------ Begin Solver -----------------------------

Simulation Run using the Single-zone Driver
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
+----------------------------------------------------------------------------------------------------------------------------------------------+
|   Time_Iter|  Outer_Iter|  Inner_Iter|    Cur_Time|   Time_Step|   Time(sec)|    rms[Rho]|   rms[RhoU]|   rms[RhoV]|   rms[RhoE]|        CEff|
+----------------------------------------------------------------------------------------------------------------------------------------------+
|           0|           0|           0|  0.0000e+00|  0.0000e+00|  3.0845e+01|    0.368330|    2.648238|    2.121327|    5.851176|   -0.410308|
|           0|           0|           1|  0.0000e+00|  0.0000e+00|  2.8939e+01|    2.535891|    5.048674|    4.743726|    8.017676|   -0.061400|
|           0|           0|           2|  0.0000e+00|  0.0000e+00|  2.7807e+01|    4.002957|    6.556330|    6.228550|    9.495336|    1.359163|
|           0|           0|           3|  0.0000e+00|  0.0000e+00|  2.7264e+01|    5.533471|    8.048225|    7.830955|   11.027353|   -4.557569|
|           0|           0|           4|  0.0000e+00|  0.0000e+00|  2.6929e+01|    6.253620|    8.891330|    8.699682|   11.768084|    2.534539|
|           0|           0|           5|  0.0000e+00|  0.0000e+00|  2.6660e+01|    6.493163|    8.882225|    8.893144|   11.883202|  -60.520242|
|           0|           0|           6|  0.0000e+00|  0.0000e+00|  2.6754e+01|    9.200667|   11.738524|   11.988387|   14.912223|  -44.365071|
|           0|           0|           7|  0.0000e+00|  0.0000e+00|  2.6571e+01|    8.651940|   11.071123|   11.325719|   14.421711|  -44.906622|
|           0|           0|           8|  0.0000e+00|  0.0000e+00|  2.6435e+01|    7.975125|   10.276237|   10.558965|   13.778098|  -50.173087|
|           0|           0|           9|  0.0000e+00|  0.0000e+00|  2.6324e+01|    7.947052|   10.255228|   10.669433|   13.780858|  -63.785246|

----------------------------- Solver Exit -------------------------------

Maximum number of iterations reached (ITER = 10) before convergence.
+-----------------------------------------------------------------------+
|      Convergence Field     |     Value    |   Criterion  |  Converged |
+-----------------------------------------------------------------------+
|                    rms[Rho]|       7.94705|          < -8|          No|
+-----------------------------------------------------------------------+
-------------------------------------------------------------------------
+-----------------------------------------------------------------------+
|        File Writing Summary       |              Filename             |
+-----------------------------------------------------------------------+
|SU2 binary restart                 |restart_flow_inviscidWing.dat      |

Writing the forces breakdown file (forces_breakdown_inviscidWing.dat).
|CSV file                           |surface_flow_inviscidWing.csv      |

Writing the forces breakdown file (forces_breakdown_inviscidWing.dat).
|Paraview                           |flow_inviscidWing.vtu              |

Writing the forces breakdown file (forces_breakdown_inviscidWing.dat).
|Paraview surface                   |surface_flow_inviscidWing.vtu      |

Writing the forces breakdown file (forces_breakdown_inviscidWing.dat).
+-----------------------------------------------------------------------+
Warning: there are 224 non-physical points in the solution.
Warning: 72 reconstructed states for upwinding are non-physical.

--------------------------- Finalizing Solver ---------------------------
Deleted CNumerics container.
Deleted CIntegration container.
Deleted CSolver container.
Deleted CIteration container.
Deleted CInterface container.
Deleted CGeometry container.
Deleted CFreeFormDefBox class.
Deleted CSurfaceMovement class.
Deleted CVolumetricMovement class.
Deleted CConfig container.
Deleted nInst container.
Deleted COutput class.
-------------------------------------------------------------------------

------------------------- Exit Success (SU2_CFD) ------------------------

/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/run/interface.py:114: ResourceWarning: unclosed file <_io.BufferedReader name=4>
  run_command(the_Command)
ResourceWarning: Enable tracemalloc to get the object allocation traceback

==> Total Forces and Moments
--> Cl =  -122.955647 Cd =  1.92765
--> Cmx =  1.112673 Cmy =  19.458061 Cmz =  0.9617
--> Cx =  4.073229 Cy =  2.512085 Cz =  -122.903279
-----------------------------------------------------
Suppressions used:
  count      bytes template
      2         96 *PyFloat_FromDouble*
      3        240 *numpy*
-----------------------------------------------------


real	9m42.959s
user	9m33.479s
sys	0m9.763s
+ status=0
+ set +x

=================================================
data/session08/2_su2_InviscidWing.py passed (as expected)
=================================================


=================================================
1_astros_ModalCantilever.py test;
+ python 1_astros_ModalCantilever.py
+ tee -a /jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64/CAPS/training/2023/training.log

==> Loading geometry from file "../ESP/transport.csm"...

==> Running mASTROS pre-analysis...

MESSAGE:: Building wingOml


MESSAGE:: Building wingWaffle

Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 2
	Name = wingSpar1, index = 1
	Name = wingSpar2, index = 2
Getting surface mesh for body 1 (of 1)
Body 1 (of 1)
Number of nodes    = 425
Number of elements = 482
Number of triangle elements      = 0
Number of quadrilateral elements = 482
----------------------------
Total number of nodes    = 425
Total number of elements = 482
Mapping Csys attributes ................
	Number of unique Csys attributes = 2
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2

Getting FEA coordinate systems.......
	Number of coordinate systems - 2
	Coordinate system name - leftWingSkin
	Coordinate system name - riteWingSkin
Mapping capsConstraint attributes ................
	Number of unique capsConstraint attributes = 1
	Name = rootConstraint, index = 1
Mapping capsLoad attributes ................
	Number of unique capsLoad attributes = 4
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2
	Name = leftPointLoad, index = 3
	Name = ritePointLoad, index = 4
Mapping capsBound attributes ................
	Number of unique capsBound attributes = 4
	Name = upperWing, index = 1
	Name = lowerWing, index = 2
	Name = leftTip, index = 3
	Name = riteTip, index = 4
Mapping capsConnect attributes ................
	Number of unique capsConnect attributes = 0
Mapping capsResponse attributes ................
	Number of unique capsResponse attributes = 0
Mapping capsReference attributes ................
	Number of unique capsReference attributes = 0
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Setting FEA Data
	Mesh for body = 0
	Number of nodal coordinates = 425
	Number of elements = 482
	Elemental Nodes = 0
	Elemental Rods  = 0
	Elemental Tria3 = 0
	Elemental Quad4 = 482
Aero_Reference value is NULL - No aero reference parameters set

Getting FEA materials.......
	Number of materials - 2
	Material name - Madeupium
	Material name - Unobtainium
	No "materialType" specified for Material tuple Unobtainium, defaulting to "Isotropic"
	Done getting FEA materials

Getting FEA properties.......
	Number of properties - 5
	Property name - leftWingSkin
	Property name - riteWingSkin
	Property name - wingRib
	Property name - wingSpar1
	Property name - wingSpar2
	Done getting FEA properties
Updating mesh element types based on properties input

Getting FEA constraints.......
	Number of constraints - 1
	Constraint name - rootConstraint
	No "constraintType" specified for Constraint tuple rootConstraint, defaulting to "ZeroDisplacement"
	No "groupName" specified for Constraint tuple rootConstraint, going to use constraint name
	Done getting FEA constraints
Support tuple is NULL - No supports applied
Connect tuple is NULL - Using defaults
Load tuple is NULL - No loads applied
Optimization Control tuple is NULL - Default optimization control is used

Getting FEA optimization control.......
Done getting FEA Optimization Control
Design_Variable tuple is NULL - No design variables applied
Design_Constraint tuple is NULL - No design constraints applied

Getting FEA analyses.......
	Number of analyses - 1
	Analysis name - EigenAnalysis
	Done getting FEA analyses

Writing Astros grid and connectivity file (in large field format) ....
Finished writing Astros grid file

Writing subElement types (if any) - appending mesh file

Writing Astros instruction file....
	Warning: No constraints specified for case EigenAnalysis, assuming all constraints are applied!!!!
	Writing analysis cards
	Writing constraint cards--all constraints for each subcase
	Writing material cards
	Writing property cards
	Writing coordinate system cards

==> Running mASTROS...

==> Running mASTROS post-analysis...
Reading Astros OUT file - extracting Eigen-Values!
	Number of Eigen-Values = 10
	Loading Eigen-Value = 1
	Loading Eigen-Value = 2
	Loading Eigen-Value = 3
	Loading Eigen-Value = 4
	Loading Eigen-Value = 5
	Loading Eigen-Value = 6
	Loading Eigen-Value = 7
	Loading Eigen-Value = 8
	Loading Eigen-Value = 9
	Loading Eigen-Value = 10

--> Eigen-frequencies:
    1 : 0.00145606
    2 : 0.0014575
    3 : 0.00332859
    4 : 0.00333096
    5 : 0.00445176
    6 : 0.00445507
    7 : 0.00894917
    8 : 0.0089521
    9 : 0.0110353
    10: 0.0110413
-----------------------------------------------------
Suppressions used:
  count      bytes template
      2         96 *PyFloat_FromDouble*
      3        240 *numpy*
-----------------------------------------------------


real	1m4.205s
user	1m52.775s
sys	9m6.266s
+ status=0
+ set +x

=================================================
data/session09/1_astros_ModalCantilever.py passed (as expected)
=================================================


=================================================
2_astros_ModalSupport.py test;
+ python 2_astros_ModalSupport.py
+ tee -a /jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64/CAPS/training/2023/training.log

==> Loading geometry from file "../ESP/transport.csm"...

==> Running mASTROS pre-analysis...

MESSAGE:: Building wingOml


MESSAGE:: Building wingWaffle

Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 6
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
	Name = ribSupport, index = 6
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 2
	Name = wingSpar1, index = 1
	Name = wingSpar2, index = 2
Getting surface mesh for body 1 (of 2)
Getting surface mesh for body 2 (of 2)
Body 1 (of 2)
Number of nodes    = 832
Number of elements = 963
Number of triangle elements      = 0
Number of quadrilateral elements = 963
Body 2 (of 2)
Number of nodes    = 1
Number of elements = 0
Number of triangle elements      = 0
Number of quadrilateral elements = 0
----------------------------
Total number of nodes    = 833
Total number of elements = 963
Mapping Csys attributes ................
	Number of unique Csys attributes = 2
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2

Getting FEA coordinate systems.......
	Number of coordinate systems - 2
	Coordinate system name - leftWingSkin
	Coordinate system name - riteWingSkin
Mapping capsConstraint attributes ................
	Number of unique capsConstraint attributes = 1
	Name = ribRootPoint, index = 1
Mapping capsLoad attributes ................
	Number of unique capsLoad attributes = 2
	Name = leftPointLoad, index = 1
	Name = ritePointLoad, index = 2
Mapping capsBound attributes ................
	Number of unique capsBound attributes = 4
	Name = upperWing, index = 1
	Name = lowerWing, index = 2
	Name = leftTip, index = 3
	Name = riteTip, index = 4
Mapping capsConnect attributes ................
	Number of unique capsConnect attributes = 1
	Name = ribRoot, index = 1
Mapping capsResponse attributes ................
	Number of unique capsResponse attributes = 0
Mapping capsReference attributes ................
	Number of unique capsReference attributes = 0
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 6
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
	Name = ribSupport, index = 6
Setting FEA Data
	Mesh for body = 0
	Number of nodal coordinates = 832
	Number of elements = 963
	Elemental Nodes = 0
	Elemental Rods  = 0
	Elemental Tria3 = 0
	Elemental Quad4 = 963
Setting FEA Data
	Mesh for body = 1
	Number of nodal coordinates = 1
	Number of elements = 1
	Elemental Nodes = 1
	Elemental Rods  = 0
	Elemental Tria3 = 0
	Elemental Quad4 = 0
Combining multiple FEA meshes!
	Combined Number of nodal coordinates = 833
	Combined Number of elements = 964
	Combined Elemental Nodes = 1
	Combined Elemental Rods  = 0
	Combined Elemental Tria3 = 0
	Combined Elemental Quad4 = 963
Aero_Reference value is NULL - No aero reference parameters set

Getting FEA materials.......
	Number of materials - 2
	Material name - Madeupium
	Material name - Unobtainium
	No "materialType" specified for Material tuple Unobtainium, defaulting to "Isotropic"
	Done getting FEA materials

Getting FEA properties.......
	Number of properties - 6
	Property name - leftWingSkin
	Property name - ribSupport
	Property name - riteWingSkin
	Property name - wingRib
	Property name - wingSpar1
	Property name - wingSpar2
	Done getting FEA properties
Updating mesh element types based on properties input

Getting FEA constraints.......
	Number of constraints - 1
	Constraint name - ribRootPoint
	No "constraintType" specified for Constraint tuple ribRootPoint, defaulting to "ZeroDisplacement"
	No "groupName" specified for Constraint tuple ribRootPoint, going to use constraint name
	Done getting FEA constraints

Getting FEA supports.......
	Number of supports - 1
	Support name - ribRootPoint
	No "groupName" specified for Support tuple ribRootPoint, going to use support name
	Done getting FEA supports

Getting FEA connections.......
	Number of connection tuples - 1
	Connection name - ribRoot
	No "groupName" specified for Connection tuple ribRoot!
	Looking for automatic connections from the use of capsConnectLink for ribRoot
	9 automatic connections were made for capsConnect ribRoot (node id 833)
	Done getting FEA connections
Load tuple is NULL - No loads applied
Optimization Control tuple is NULL - Default optimization control is used

Getting FEA optimization control.......
Done getting FEA Optimization Control
Design_Variable tuple is NULL - No design variables applied
Design_Constraint tuple is NULL - No design constraints applied

Getting FEA analyses.......
	Number of analyses - 1
	Analysis name - EigenAnalysis
	Done getting FEA analyses

Writing Astros grid and connectivity file (in large field format) ....
Finished writing Astros grid file

Writing subElement types (if any) - appending mesh file
Writing connection cards - appending mesh file

Writing Astros instruction file....
	Warning: No constraints specified for case EigenAnalysis, assuming all constraints are applied!!!!
	Writing analysis cards
	Writing constraint cards--all constraints for each subcase
	Writing support cards
	Writing material cards
	Writing property cards
	Writing coordinate system cards

==> Running mASTROS...

==> Running mASTROS post-analysis...
Reading Astros OUT file - extracting Eigen-Values!
	Number of Eigen-Values = 10
	Loading Eigen-Value = 1
	Loading Eigen-Value = 2
	Loading Eigen-Value = 3
	Loading Eigen-Value = 4
	Loading Eigen-Value = 5
	Loading Eigen-Value = 6
	Loading Eigen-Value = 7
	Loading Eigen-Value = 8
	Loading Eigen-Value = 9
	Loading Eigen-Value = 10

--> Eigen-frequencies:
    1 : 0.00141994
    2 : 0.0017446
    3 : 0.00322974
    4 : 0.00324319
    5 : 0.00432862
    6 : 0.00512378
    7 : 0.0087335
    8 : 0.0100598
    9 : 0.010673
    10: 0.0107176
-----------------------------------------------------
Suppressions used:
  count      bytes template
      2         96 *PyFloat_FromDouble*
      3        240 *numpy*
-----------------------------------------------------


real	2m21.190s
user	3m49.222s
sys	16m55.723s
+ status=0
+ set +x

=================================================
data/session09/2_astros_ModalSupport.py passed (as expected)
=================================================


=================================================
3_astros_StaticCantilever.py test;
+ python 3_astros_StaticCantilever.py
+ tee -a /jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64/CAPS/training/2023/training.log

==> Loading geometry from file "../ESP/transport.csm"...

==> Running mASTROS pre-analysis...

MESSAGE:: Building wingOml


MESSAGE:: Building wingWaffle

Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 2
	Name = wingSpar1, index = 1
	Name = wingSpar2, index = 2
Getting surface mesh for body 1 (of 1)
Body 1 (of 1)
Number of nodes    = 425
Number of elements = 482
Number of triangle elements      = 0
Number of quadrilateral elements = 482
----------------------------
Total number of nodes    = 425
Total number of elements = 482
Mapping Csys attributes ................
	Number of unique Csys attributes = 2
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2

Getting FEA coordinate systems.......
	Number of coordinate systems - 2
	Coordinate system name - leftWingSkin
	Coordinate system name - riteWingSkin
Mapping capsConstraint attributes ................
	Number of unique capsConstraint attributes = 1
	Name = rootConstraint, index = 1
Mapping capsLoad attributes ................
	Number of unique capsLoad attributes = 4
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2
	Name = leftPointLoad, index = 3
	Name = ritePointLoad, index = 4
Mapping capsBound attributes ................
	Number of unique capsBound attributes = 4
	Name = upperWing, index = 1
	Name = lowerWing, index = 2
	Name = leftTip, index = 3
	Name = riteTip, index = 4
Mapping capsConnect attributes ................
	Number of unique capsConnect attributes = 0
Mapping capsResponse attributes ................
	Number of unique capsResponse attributes = 0
Mapping capsReference attributes ................
	Number of unique capsReference attributes = 0
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Setting FEA Data
	Mesh for body = 0
	Number of nodal coordinates = 425
	Number of elements = 482
	Elemental Nodes = 0
	Elemental Rods  = 0
	Elemental Tria3 = 0
	Elemental Quad4 = 482
Aero_Reference value is NULL - No aero reference parameters set

Getting FEA materials.......
	Number of materials - 2
	Material name - Madeupium
	Material name - Unobtainium
	No "materialType" specified for Material tuple Unobtainium, defaulting to "Isotropic"
	Done getting FEA materials

Getting FEA properties.......
	Number of properties - 5
	Property name - leftWingSkin
	Property name - riteWingSkin
	Property name - wingRib
	Property name - wingSpar1
	Property name - wingSpar2
	Done getting FEA properties
Updating mesh element types based on properties input

Getting FEA constraints.......
	Number of constraints - 1
	Constraint name - rootConstraint
	No "constraintType" specified for Constraint tuple rootConstraint, defaulting to "ZeroDisplacement"
	No "groupName" specified for Constraint tuple rootConstraint, going to use constraint name
	Done getting FEA constraints
Support tuple is NULL - No supports applied
Connect tuple is NULL - Using defaults

Getting FEA loads.......
	Number of loads - 2
	Load name - leftPointLoad
	No "groupName" specified for Load tuple leftPointLoad, going to use load name
	Load name - ritePointLoad
	No "groupName" specified for Load tuple ritePointLoad, going to use load name
	Done getting FEA loads
Optimization Control tuple is NULL - Default optimization control is used

Getting FEA optimization control.......
Done getting FEA Optimization Control
Design_Variable tuple is NULL - No design variables applied
Design_Constraint tuple is NULL - No design constraints applied
Analysis tuple is NULL

Getting FEA analyses.......
	Number of analyses - 1
	Analysis name - Default
	Done getting FEA analyses

Writing Astros grid and connectivity file (in large field format) ....
Finished writing Astros grid file

Writing subElement types (if any) - appending mesh file

Writing Astros instruction file....
	Writing analysis cards
	Writing load ADD cards
	Writing constraint cards--each subcase individually
	Writing load cards
	Writing material cards
	Writing property cards
	Writing coordinate system cards

==> Running mASTROS...

==> Running mASTROS post-analysis...

--> Maximum displacements:
--> Tmax 238433.3403112283
--> T1max 16861.9
--> T2max 16414.9
--> T3max 237286.0
-----------------------------------------------------
Suppressions used:
  count      bytes template
      2         96 *PyFloat_FromDouble*
      3        240 *numpy*
-----------------------------------------------------


real	1m2.120s
user	1m49.630s
sys	8m40.029s
+ status=0
+ set +x

=================================================
data/session09/3_astros_StaticCantilever.py passed (as expected)
=================================================


=================================================
4_astros_Composite.py test;
+ python 4_astros_Composite.py
+ tee -a /jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64/CAPS/training/2023/training.log

==> Loading geometry from file "../ESP/transport.csm"...

MESSAGE:: Building wingOml


MESSAGE:: Building wingWaffle


==> Running mASTROS pre-analysis...
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 2
	Name = wingSpar1, index = 1
	Name = wingSpar2, index = 2
Getting surface mesh for body 1 (of 1)
Body 1 (of 1)
Number of nodes    = 425
Number of elements = 482
Number of triangle elements      = 0
Number of quadrilateral elements = 482
----------------------------
Total number of nodes    = 425
Total number of elements = 482
Mapping Csys attributes ................
	Number of unique Csys attributes = 2
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2

Getting FEA coordinate systems.......
	Number of coordinate systems - 2
	Coordinate system name - leftWingSkin
	Coordinate system name - riteWingSkin
Mapping capsConstraint attributes ................
	Number of unique capsConstraint attributes = 1
	Name = rootConstraint, index = 1
Mapping capsLoad attributes ................
	Number of unique capsLoad attributes = 4
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2
	Name = leftPointLoad, index = 3
	Name = ritePointLoad, index = 4
Mapping capsBound attributes ................
	Number of unique capsBound attributes = 4
	Name = upperWing, index = 1
	Name = lowerWing, index = 2
	Name = leftTip, index = 3
	Name = riteTip, index = 4
Mapping capsConnect attributes ................
	Number of unique capsConnect attributes = 0
Mapping capsResponse attributes ................
	Number of unique capsResponse attributes = 0
Mapping capsReference attributes ................
	Number of unique capsReference attributes = 0
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Setting FEA Data
	Mesh for body = 0
	Number of nodal coordinates = 425
	Number of elements = 482
	Elemental Nodes = 0
	Elemental Rods  = 0
	Elemental Tria3 = 0
	Elemental Quad4 = 482
Aero_Reference value is NULL - No aero reference parameters set

Getting FEA materials.......
	Number of materials - 2
	Material name - Aluminum
	No "materialType" specified for Material tuple Aluminum, defaulting to "Isotropic"
	Material name - Graphite_epoxy
	Done getting FEA materials

Getting FEA properties.......
	Number of properties - 5
	Property name - leftWingSkin
	Property name - riteWingSkin
	Property name - wingRib
	Property name - wingSpar1
	Property name - wingSpar2
	Done getting FEA properties
Updating mesh element types based on properties input

Getting FEA constraints.......
	Number of constraints - 1
	Constraint name - rootConstraint
	No "constraintType" specified for Constraint tuple rootConstraint, defaulting to "ZeroDisplacement"
	No "groupName" specified for Constraint tuple rootConstraint, going to use constraint name
	Done getting FEA constraints
Support tuple is NULL - No supports applied
Connect tuple is NULL - Using defaults

Getting FEA loads.......
	Number of loads - 2
	Load name - leftPointLoad
	No "groupName" specified for Load tuple leftPointLoad, going to use load name
	Load name - ritePointLoad
	No "groupName" specified for Load tuple ritePointLoad, going to use load name
	Done getting FEA loads
Optimization Control tuple is NULL - Default optimization control is used

Getting FEA optimization control.......
Done getting FEA Optimization Control
Design_Variable tuple is NULL - No design variables applied
Design_Constraint tuple is NULL - No design constraints applied
Analysis tuple is NULL

Getting FEA analyses.......
	Number of analyses - 1
	Analysis name - Default
	Done getting FEA analyses

Writing Astros grid and connectivity file (in large field format) ....
Finished writing Astros grid file

Writing subElement types (if any) - appending mesh file

Writing Astros instruction file....
	Writing analysis cards
	Writing load ADD cards
	Writing constraint cards--each subcase individually
	Writing load cards
	Writing material cards
	Writing property cards
	Writing coordinate system cards

==> Running mASTROS...

==> Running mASTROS post-analysis...

--> Maximum displacements:
--> Tmax 52594.60117638786
--> T1max 4359.68
--> T2max 3216.5
--> T3max 52322.2
-----------------------------------------------------
Suppressions used:
  count      bytes template
      2         96 *PyFloat_FromDouble*
      3        240 *numpy*
-----------------------------------------------------


real	1m2.559s
user	1m50.776s
sys	10m10.936s
+ status=0
+ set +x

=================================================
data/session09/4_astros_Composite.py passed (as expected)
=================================================

Traceback (most recent call last):
  File "<string>", line 1, in <module>
ModuleNotFoundError: No module named 'tacs'

=================================================
2_aeroelastic_Iterative_SU2_Astros.py test;
+ python 2_aeroelastic_Iterative_SU2_Astros.py
+ tee -a /jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64/CAPS/training/2023/training.log

MESSAGE:: Building wingOml


MESSAGE:: Building wingWaffle


==> Running SU2 pre-analysis...
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 2
	Name = Wing, index = 1
	Name = Farfield, index = 2
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 3
	Name = leftWing, index = 1
	Name = riteWing, index = 2
	Name = Farfield, index = 3

Getting mesh sizing parameters
	Mesh sizing name - Farfield
	Mesh sizing name - leftWing
	Mesh sizing name - riteWing
	Done getting mesh sizing parameters
 
AFLR2    : ---------------------------------------
AFLR2    : AFLR2 LIBRARY
AFLR2    : ADVANCING-FRONT/LOCAL-RECONNECTION
AFLR2    : TRIA/QUAD GRID GENERATOR
AFLR2    : Version Number 9.18.1
AFLR2    : Version Date   06/11/24 @ 05:52PM
AFLR2    : Compile OS     Linux 3.10.0-1160.88.1.el7.x86_64 x86_64
AFLR2    : Compile Date   06/11/24 @ 06:33PM
AFLR2    : Copyright 1994-2021, D.L. Marcum
AFLR2    : ---------------------------------------
 
AFLR4    : ---------------------------------------
AFLR4    : AFLR4 LIBRARY
AFLR4    : ADVANCING-FRONT/LOCAL-RECONNECTION
AFLR4    : TRIA/QUAD SURFACE GRID GENERATOR
AFLR4    : Version Number 11.5.15
AFLR4    : Version Date   07/19/24 @ 07:04PM
AFLR4    : Compile OS     Linux 3.10.0-1160.88.1.el7.x86_64 x86_64
AFLR4    : Compile Date   07/19/24 @ 07:42PM
AFLR4    : Copyright 1994-2021, D.L. Marcum
AFLR4    : ---------------------------------------

EGADS    : ---------------------------------------
EGADS    : Engineering Geometry Aircraft Design System
EGADS    : Version 1.26
EGADS    : OpenCASCADE Version 7.8.0
EGADS    : ---------------------------------------

EGADS    : EGADS CAD Geometry Setup

EGADS    : Model has 2 Active Bodies

EGADS    : Body 0 is a SolidBody
EGADS    : Body 0 has 1 Shells
EGADS    : Body 0 has 10 Faces
EGADS    : Body 0 has 18 Edges
EGADS    : Body 0 has 10 Loops
EGADS    : Body 0 has 10 Nodes
EGADS    : Body 1 is a SolidBody
EGADS    : Body 1 has 1 Shells
EGADS    : Body 1 has 6 Faces
EGADS    : Body 1 has 12 Edges
EGADS    : Body 1 has 6 Loops
EGADS    : Body 1 has 8 Nodes

EGADS    : Check Grid BCs

EGADS    : Grid BCs are OK

EGADS    : Face Neighbor-Faces Information

EGADS    : QC  = Face Quad Combination Flag
EGADS    : IER = Face Isolated Edge Refinement Flag
EGADS    : ER  = Face Edge Refinement Factor
EGADS    :       Not applicable for Faces with a FarField Grid BC.
EGADS    : SF  = Face Scale Factor
EGADS    :       Not applicable for Faces with a FarField Grid BC.

EGADS    :   Face          Body    QC   IER       ER    Scale   Neighbor
EGADS    :     ID  Active    ID  Flag  Flag   Weight   Factor   Faces
EGADS    :      1     Yes     0     0     1        1        1   2 3 6
EGADS    :      2     Yes     0     0     1        1        1   1 4 5
EGADS    :      3     Yes     0     0     1        1        1   1 4 8
EGADS    :      4     Yes     0     0     1        1        1   2 3 5
EGADS    :      5     Yes     0     0     1        1        1   2 4
EGADS    :      6     Yes     0     0     1        1        1   1 7 8
EGADS    :      7     Yes     0     0     1        1        1   6 9 10
EGADS    :      8     Yes     0     0     1        1        1   3 6 9
EGADS    :      9     Yes     0     0     1        1        1   7 8 10
EGADS    :     10     Yes     0     0     1        1        1   7 9
EGADS    :     11     Yes     1     0     1       NA       NA   13 14 15 16
EGADS    :     12     Yes     1     0     1       NA       NA   13 14 15 16
EGADS    :     13     Yes     1     0     1       NA       NA   11 12 15 16
EGADS    :     14     Yes     1     0     1       NA       NA   11 12 15 16
EGADS    :     15     Yes     1     0     1       NA       NA   11 12 13 14
EGADS    :     16     Yes     1     0     1       NA       NA   11 12 13 14

EGADS    : Face Edges Information

EGADS    :   Face   Edges
EGADS    :      1   -1 2 3 -4
EGADS    :      2   -5 4 6 -7
EGADS    :      3   -3 8 1 -9
EGADS    :      4   -6 9 5 -10
EGADS    :      5   7 10
EGADS    :      6   11 13 -12 -2
EGADS    :      7   14 16 -15 -13
EGADS    :      8   12 17 -11 -8
EGADS    :      9   15 18 -14 -17
EGADS    :     10   -16 -18
EGADS    :     11   19 20 -21 -22
EGADS    :     12   -23 26 25 -24
EGADS    :     13   27 23 -28 -19
EGADS    :     14   -29 21 30 -25
EGADS    :     15   22 29 -26 -27
EGADS    :     16   -20 28 24 -30

EGADS    : Face Loops Information

EGADS    :   Face   Loops
EGADS    :      1   1
EGADS    :      2   2
EGADS    :      3   3
EGADS    :      4   4
EGADS    :      5   5
EGADS    :      6   6
EGADS    :      7   7
EGADS    :      8   8
EGADS    :      9   9
EGADS    :     10   10
EGADS    :     11   11
EGADS    :     12   12
EGADS    :     13   13
EGADS    :     14   14
EGADS    :     15   15
EGADS    :     16   16

EGADS    : Loop Edges Information

EGADS    :   Loop  Active   Edges
EGADS    :      1     Yes   -1 2 3 -4
EGADS    :      2     Yes   -5 4 6 -7
EGADS    :      3     Yes   -3 8 1 -9
EGADS    :      4     Yes   -6 9 5 -10
EGADS    :      5     Yes   7 10
EGADS    :      6     Yes   11 13 -12 -2
EGADS    :      7     Yes   14 16 -15 -13
EGADS    :      8     Yes   12 17 -11 -8
EGADS    :      9     Yes   15 18 -14 -17
EGADS    :     10     Yes   -16 -18
EGADS    :     11     Yes   19 20 -21 -22
EGADS    :     12     Yes   -23 26 25 -24
EGADS    :     13     Yes   27 23 -28 -19
EGADS    :     14     Yes   -29 21 30 -25
EGADS    :     15     Yes   22 29 -26 -27
EGADS    :     16     Yes   -20 28 24 -30

EGADS    : Edge Node, Scale Factor, and Neighbor-Faces Information

EGADS    : ESF = Edge Scale Factor
EGADS    :       Not applicable for DEGENERATE Edges or Edges with a FarField
EGADS    :       Grid BC Neighbor Face.

EGADS    :                                             Neighbor
EGADS    :   Edge  Body  Active Node1 Node2      ESF   Faces
EGADS    :      1     0     Yes     1     2        1   1 3
EGADS    :      2     0     Yes     1     3        1   1 6
EGADS    :      3     0     Yes     3     4        1   1 3
EGADS    :      4     0     Yes     2     4        1   1 2
EGADS    :      5     0     Yes     2     5        1   2 4
EGADS    :      6     0     Yes     4     6        1   2 4
EGADS    :      7     0     Yes     5     6        1   2 5
EGADS    :      8     0     Yes     3     1        1   3 8
EGADS    :      9     0     Yes     4     2        1   3 4
EGADS    :     10     0     Yes     6     5        1   4 5
EGADS    :     11     0     Yes     1     7        1   6 8
EGADS    :     12     0     Yes     3     8        1   6 8
EGADS    :     13     0     Yes     7     8        1   6 7
EGADS    :     14     0     Yes     7     9        1   7 9
EGADS    :     15     0     Yes     8    10        1   7 9
EGADS    :     16     0     Yes     9    10        1   7 10
EGADS    :     17     0     Yes     8     7        1   8 9
EGADS    :     18     0     Yes    10     9        1   9 10
EGADS    :     19     1     Yes    12    11       NA   11 13
EGADS    :     20     1     Yes    11    13       NA   11 16
EGADS    :     21     1     Yes    14    13       NA   11 14
EGADS    :     22     1     Yes    12    14       NA   11 15
EGADS    :     23     1     Yes    16    15       NA   12 13
EGADS    :     24     1     Yes    15    17       NA   12 16
EGADS    :     25     1     Yes    18    17       NA   12 14
EGADS    :     26     1     Yes    16    18       NA   12 15
EGADS    :     27     1     Yes    12    16       NA   13 15
EGADS    :     28     1     Yes    11    15       NA   13 16
EGADS    :     29     1     Yes    14    18       NA   14 15
EGADS    :     30     1     Yes    13    17       NA   14 16

EGADS    : Node Information

EGADS    :   Node  Active      Coordinates
EGADS    :      1     Yes       97.2007855                0                0
EGADS    :      2     Yes       97.9335611                0                0
EGADS    :      3     Yes               50                0                0
EGADS    :      4     Yes       75.3047874                0                0
EGADS    :      5     Yes       123.552357                0        4.7180639
EGADS    :      6     Yes       118.391317                0       3.99272703
EGADS    :      7     Yes       97.9335611       36.1389817                0
EGADS    :      8     Yes       75.3047874       36.1389817                0
EGADS    :      9     Yes       123.552357       97.6729236        4.7180639
EGADS    :     10     Yes       118.391317       97.6729236       3.99272703
EGADS    :     11     Yes                0                0       1951.57774
EGADS    :     12     Yes                0                0                0
EGADS    :     13     Yes                0       1953.45847       1951.57774
EGADS    :     14     Yes                0       1953.45847                0
EGADS    :     15     Yes       2040.21562                0       1951.57774
EGADS    :     16     Yes       2040.21562                0                0
EGADS    :     17     Yes       2040.21562       1953.45847       1951.57774
EGADS    :     18     Yes       2040.21562       1953.45847                0

EGADS    : Face and Edge Match Information

EGADS    : No Face Matches Found

AFLR4    : Surface Mesh Spacing Setup

AFLR4    : Max Bounding Box Length     = 3906.92
AFLR4    : Min Bounding Box Length     = 3906.92
AFLR4    : Max Ref Bounding Box Length = 195.346
AFLR4    : Min Ref Bounding Box Length = 13.1976
AFLR4    : Reference Length            = 21.7051
AFLR4    : BL Thickness                = 0
AFLR4    : FarField Spacing            = 2651.51
AFLR4    : Abs Min Surf Spacing        = 0.0542627
AFLR4    : Min Surf Spacing            = 0.108525
AFLR4    : Max Surf Spacing            = 2.17051
AFLR4    : Global Scale Factor         = 5

AFLR4    : Geometry Definition Information

AFLR4    : Definition              Definition   Composite             Grid BC
AFLR4    :         ID                    Type          ID                Type
AFLR4    :          0     glue-only composite           -                   -
AFLR4    :          1            CAD geometry           0            STD w/BL
AFLR4    :          2            CAD geometry           0            STD w/BL
AFLR4    :          3            CAD geometry           0            STD w/BL
AFLR4    :          4            CAD geometry           0            STD w/BL
AFLR4    :          5            CAD geometry           0            STD w/BL
AFLR4    :          6            CAD geometry           0            STD w/BL
AFLR4    :          7            CAD geometry           0            STD w/BL
AFLR4    :          8            CAD geometry           0            STD w/BL
AFLR4    :          9            CAD geometry           0            STD w/BL
AFLR4    :         10            CAD geometry           0            STD w/BL
AFLR4    :         11            CAD geometry           0            FARFIELD
AFLR4    :         12            CAD geometry           0            FARFIELD
AFLR4    :         13            CAD geometry           0            FARFIELD
AFLR4    :         14            CAD geometry           0            FARFIELD
AFLR4    :         15            CAD geometry           0            FARFIELD
AFLR4    :         16            CAD geometry           0            FARFIELD

AFLR4    : Define CAD surface definition 1
AFLR4    : Define CAD surface definition 2
AFLR4    : Define CAD surface definition 3
AFLR4    : Define CAD surface definition 4
AFLR4    : Define CAD surface definition 5
AFLR4    : Define CAD surface definition 6
AFLR4    : Define CAD surface definition 7
AFLR4    : Define CAD surface definition 8
AFLR4    : Define CAD surface definition 9
AFLR4    : Define CAD surface definition 10
AFLR4    : Define CAD surface definition 11
AFLR4    : Define CAD surface definition 12
AFLR4    : Define CAD surface definition 13
AFLR4    : Define CAD surface definition 14
AFLR4    : Define CAD surface definition 15
AFLR4    : Define CAD surface definition 16

AFLR4    : Surface Grid Generation

AFLR4    : Generate optimal mesh on surface definition 1
AFLR2    : Nodes, Trias,Quads=      1107      2082         0
AFLR4    : Nodes, Trias,Quads=       685      1238         0

AFLR4    : Generate optimal mesh on surface definition 2
AFLR2    : Nodes, Trias,Quads=      1473      2759         0
AFLR4    : Nodes, Trias,Quads=       721      1255         0

AFLR4    : Generate optimal mesh on surface definition 3
AFLR2    : Nodes, Trias,Quads=      1116      2100         0
AFLR4    : Nodes, Trias,Quads=       671      1210         0

AFLR4    : Generate optimal mesh on surface definition 4
AFLR2    : Nodes, Trias,Quads=      1458      2729         0
AFLR4    : Nodes, Trias,Quads=       714      1241         0

AFLR4    : Generate optimal mesh on surface definition 5
AFLR2    : Nodes, Trias,Quads=        20        24         0
AFLR4    : Nodes, Trias,Quads=        14        12         0

AFLR4    : Generate optimal mesh on surface definition 6
AFLR2    : Nodes, Trias,Quads=      1108      2084         0
AFLR4    : Nodes, Trias,Quads=       683      1234         0

AFLR4    : Generate optimal mesh on surface definition 7
AFLR2    : Nodes, Trias,Quads=      1488      2789         0
AFLR4    : Nodes, Trias,Quads=       714      1241         0

AFLR4    : Generate optimal mesh on surface definition 8
AFLR2    : Nodes, Trias,Quads=      1112      2092         0
AFLR4    : Nodes, Trias,Quads=       653      1174         0

AFLR4    : Generate optimal mesh on surface definition 9
AFLR2    : Nodes, Trias,Quads=      1456      2725         0
AFLR4    : Nodes, Trias,Quads=       708      1229         0

AFLR4    : Generate optimal mesh on surface definition 10
AFLR2    : Nodes, Trias,Quads=        20        24         0
AFLR4    : Nodes, Trias,Quads=        14        12         0

AFLR4    : Generate optimal mesh on surface definition 11
AFLR2    : Nodes, Trias,Quads=         5         4         0
AFLR4    : Nodes, Trias,Quads=         4         2         0

AFLR4    : Generate optimal mesh on surface definition 12
AFLR2    : Nodes, Trias,Quads=         5         4         0
AFLR4    : Nodes, Trias,Quads=         4         2         0

AFLR4    : Generate optimal mesh on surface definition 13
AFLR2    : Nodes, Trias,Quads=         5         4         0
AFLR4    : Nodes, Trias,Quads=         4         2         0

AFLR4    : Generate optimal mesh on surface definition 14
AFLR2    : Nodes, Trias,Quads=         5         4         0
AFLR4    : Nodes, Trias,Quads=         4         2         0

AFLR4    : Generate optimal mesh on surface definition 15
AFLR2    : Nodes, Trias,Quads=         5         4         0
AFLR4    : Nodes, Trias,Quads=         4         2         0

AFLR4    : Generate optimal mesh on surface definition 16
AFLR2    : Nodes, Trias,Quads=         5         4         0
AFLR4    : Nodes, Trias,Quads=         4         2         0

DGEOM    : Add surface definitions to composite definition 0
DGEOM    : Glue composite surface definition 0
DGEOM    : Nodes,Faces,BEdges=      4933      9858      1312

AFLR4    : Curvature BG Surface Grid Generation

AFLR4    : Nodes, Faces      =      4933      9858

AFLR4    : Surface Grid Generation

AFLR4    : Generate optimal mesh on surface definition 1
AFLR2    : Nodes, Trias,Quads=     12796     24695         0
AFLR4    : Nodes, Trias,Quads=      7764     14631         0

AFLR4    : Generate optimal mesh on surface definition 2
AFLR2    : Nodes, Trias,Quads=     29245     57075         0
AFLR4    : Nodes, Trias,Quads=     12448     23481         0

AFLR4    : Generate optimal mesh on surface definition 3
AFLR2    : Nodes, Trias,Quads=     12136     23411         0
AFLR4    : Nodes, Trias,Quads=      7447     14033         0

AFLR4    : Generate optimal mesh on surface definition 4
AFLR2    : Nodes, Trias,Quads=     29424     57435         0
AFLR4    : Nodes, Trias,Quads=     12399     23385         0

AFLR4    : Generate optimal mesh on surface definition 5
AFLR2    : Nodes, Trias,Quads=       196       293         0
AFLR4    : Nodes, Trias,Quads=       188       277         0

AFLR4    : Generate optimal mesh on surface definition 6
AFLR2    : Nodes, Trias,Quads=     12819     24741         0
AFLR4    : Nodes, Trias,Quads=      7725     14553         0

AFLR4    : Generate optimal mesh on surface definition 7
AFLR2    : Nodes, Trias,Quads=     29449     57483         0
AFLR4    : Nodes, Trias,Quads=     12413     23411         0

AFLR4    : Generate optimal mesh on surface definition 8
AFLR2    : Nodes, Trias,Quads=     12144     23427         0
AFLR4    : Nodes, Trias,Quads=      7471     14081         0

AFLR4    : Generate optimal mesh on surface definition 9
AFLR2    : Nodes, Trias,Quads=     29445     57477         0
AFLR4    : Nodes, Trias,Quads=     12478     23543         0

AFLR4    : Generate optimal mesh on surface definition 10
AFLR2    : Nodes, Trias,Quads=       196       293         0
AFLR4    : Nodes, Trias,Quads=       188       277         0

AFLR4    : Generate optimal mesh on surface definition 11
AFLR2    : Nodes, Trias,Quads=        12        14         0
AFLR4    : Nodes, Trias,Quads=         8         6         0

AFLR4    : Generate optimal mesh on surface definition 12
AFLR2    : Nodes, Trias,Quads=        12        14         0
AFLR4    : Nodes, Trias,Quads=         8         6         0

AFLR4    : Generate optimal mesh on surface definition 13
AFLR2    : Nodes, Trias,Quads=        12        14         0
AFLR4    : Nodes, Trias,Quads=         8         6         0

AFLR4    : Generate optimal mesh on surface definition 14
AFLR2    : Nodes, Trias,Quads=        12        14         0
AFLR4    : Nodes, Trias,Quads=         8         6         0

AFLR4    : Generate optimal mesh on surface definition 15
AFLR2    : Nodes, Trias,Quads=        12        14         0
AFLR4    : Nodes, Trias,Quads=         8         6         0

AFLR4    : Generate optimal mesh on surface definition 16
AFLR2    : Nodes, Trias,Quads=        12        14         0
AFLR4    : Nodes, Trias,Quads=         8         6         0

DGEOM    : Add surface definitions to composite definition 0
DGEOM    : Glue composite surface definition 0
DGEOM    : Nodes,Faces,BEdges=     75858    151708      9398

OVERALL  : CPU Time          =     2.577   seconds
Body 1 (of 2)
Number of nodes    = 75838
Number of elements = 151672
Number of triangle elements      = 151672
Number of quadrilateral elements = 0
Body 2 (of 2)
Number of nodes    = 20
Number of elements = 36
Number of triangle elements      = 36
Number of quadrilateral elements = 0
----------------------------
Total number of nodes    = 75858
Total number of elements = 151708
Total number of triangle elements      = 151708
Total number of quadrilateral elements = 0
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 3
	Name = leftWing, index = 1
	Name = riteWing, index = 2
	Name = Farfield, index = 3
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 2
	Name = Wing, index = 1
	Name = Farfield, index = 2
Getting volume mesh
 
UG PARAM : SETTING INPUT PARAMETERS FROM ARGUMENT VECTOR
 
UG PARAM : mrecm                       = 3         
UG PARAM : mrecqm                      = 3         
UG PARAM : mpfrmt                      = 0         
 
AFLR2    : ---------------------------------------
AFLR2    : AFLR2 LIBRARY
AFLR2    : ADVANCING-FRONT/LOCAL-RECONNECTION
AFLR2    : TRIA/QUAD GRID GENERATOR
AFLR2    : Version Number 9.18.1
AFLR2    : Version Date   06/11/24 @ 05:52PM
AFLR2    : Compile OS     Linux 3.10.0-1160.88.1.el7.x86_64 x86_64
AFLR2    : Compile Date   06/11/24 @ 06:33PM
AFLR2    : Copyright 1994-2021, D.L. Marcum
AFLR2    : ---------------------------------------
 
AFLR4    : ---------------------------------------
AFLR4    : AFLR4 LIBRARY
AFLR4    : ADVANCING-FRONT/LOCAL-RECONNECTION
AFLR4    : TRIA/QUAD SURFACE GRID GENERATOR
AFLR4    : Version Number 11.5.15
AFLR4    : Version Date   07/19/24 @ 07:04PM
AFLR4    : Compile OS     Linux 3.10.0-1160.88.1.el7.x86_64 x86_64
AFLR4    : Compile Date   07/19/24 @ 07:42PM
AFLR4    : Copyright 1994-2021, D.L. Marcum
AFLR4    : ---------------------------------------

EGADS    : ---------------------------------------
EGADS    : Engineering Geometry Aircraft Design System
EGADS    : Version 1.26
EGADS    : OpenCASCADE Version 7.8.0
EGADS    : ---------------------------------------

EGADS    : EGADS CAD Geometry Setup

EGADS    : Model has 2 Active Bodies

EGADS    : Body 0 is a SolidBody
EGADS    : Body 0 has 1 Shells
EGADS    : Body 0 has 10 Faces
EGADS    : Body 0 has 18 Edges
EGADS    : Body 0 has 10 Loops
EGADS    : Body 0 has 10 Nodes
EGADS    : Body 1 is a SolidBody
EGADS    : Body 1 has 1 Shells
EGADS    : Body 1 has 6 Faces
EGADS    : Body 1 has 12 Edges
EGADS    : Body 1 has 6 Loops
EGADS    : Body 1 has 8 Nodes

EGADS    : Check Grid BCs

EGADS    : Grid BCs are OK

EGADS    : Face Neighbor-Faces Information

EGADS    : QC  = Face Quad Combination Flag
EGADS    : IER = Face Isolated Edge Refinement Flag
EGADS    : ER  = Face Edge Refinement Factor
EGADS    :       Not applicable for Faces with a FarField Grid BC.
EGADS    : SF  = Face Scale Factor
EGADS    :       Not applicable for Faces with a FarField Grid BC.

EGADS    :   Face          Body    QC   IER       ER    Scale   Neighbor
EGADS    :     ID  Active    ID  Flag  Flag   Weight   Factor   Faces
EGADS    :      1     Yes     0     0     1        1        1   2 3 6
EGADS    :      2     Yes     0     0     1        1        1   1 4 5
EGADS    :      3     Yes     0     0     1        1        1   1 4 8
EGADS    :      4     Yes     0     0     1        1        1   2 3 5
EGADS    :      5     Yes     0     0     1        1        1   2 4
EGADS    :      6     Yes     0     0     1        1        1   1 7 8
EGADS    :      7     Yes     0     0     1        1        1   6 9 10
EGADS    :      8     Yes     0     0     1        1        1   3 6 9
EGADS    :      9     Yes     0     0     1        1        1   7 8 10
EGADS    :     10     Yes     0     0     1        1        1   7 9
EGADS    :     11     Yes     1     0     1       NA       NA   13 14 15 16
EGADS    :     12     Yes     1     0     1       NA       NA   13 14 15 16
EGADS    :     13     Yes     1     0     1       NA       NA   11 12 15 16
EGADS    :     14     Yes     1     0     1       NA       NA   11 12 15 16
EGADS    :     15     Yes     1     0     1       NA       NA   11 12 13 14
EGADS    :     16     Yes     1     0     1       NA       NA   11 12 13 14

EGADS    : Face Edges Information

EGADS    :   Face   Edges
EGADS    :      1   -1 2 3 -4
EGADS    :      2   -5 4 6 -7
EGADS    :      3   -3 8 1 -9
EGADS    :      4   -6 9 5 -10
EGADS    :      5   7 10
EGADS    :      6   11 13 -12 -2
EGADS    :      7   14 16 -15 -13
EGADS    :      8   12 17 -11 -8
EGADS    :      9   15 18 -14 -17
EGADS    :     10   -16 -18
EGADS    :     11   19 20 -21 -22
EGADS    :     12   -23 26 25 -24
EGADS    :     13   27 23 -28 -19
EGADS    :     14   -29 21 30 -25
EGADS    :     15   22 29 -26 -27
EGADS    :     16   -20 28 24 -30

EGADS    : Face Loops Information

EGADS    :   Face   Loops
EGADS    :      1   1
EGADS    :      2   2
EGADS    :      3   3
EGADS    :      4   4
EGADS    :      5   5
EGADS    :      6   6
EGADS    :      7   7
EGADS    :      8   8
EGADS    :      9   9
EGADS    :     10   10
EGADS    :     11   11
EGADS    :     12   12
EGADS    :     13   13
EGADS    :     14   14
EGADS    :     15   15
EGADS    :     16   16

EGADS    : Loop Edges Information

EGADS    :   Loop  Active   Edges
EGADS    :      1     Yes   -1 2 3 -4
EGADS    :      2     Yes   -5 4 6 -7
EGADS    :      3     Yes   -3 8 1 -9
EGADS    :      4     Yes   -6 9 5 -10
EGADS    :      5     Yes   7 10
EGADS    :      6     Yes   11 13 -12 -2
EGADS    :      7     Yes   14 16 -15 -13
EGADS    :      8     Yes   12 17 -11 -8
EGADS    :      9     Yes   15 18 -14 -17
EGADS    :     10     Yes   -16 -18
EGADS    :     11     Yes   19 20 -21 -22
EGADS    :     12     Yes   -23 26 25 -24
EGADS    :     13     Yes   27 23 -28 -19
EGADS    :     14     Yes   -29 21 30 -25
EGADS    :     15     Yes   22 29 -26 -27
EGADS    :     16     Yes   -20 28 24 -30

EGADS    : Edge Node, Scale Factor, and Neighbor-Faces Information

EGADS    : ESF = Edge Scale Factor
EGADS    :       Not applicable for DEGENERATE Edges or Edges with a FarField
EGADS    :       Grid BC Neighbor Face.

EGADS    :                                             Neighbor
EGADS    :   Edge  Body  Active Node1 Node2      ESF   Faces
EGADS    :      1     0     Yes     1     2        1   1 3
EGADS    :      2     0     Yes     1     3        1   1 6
EGADS    :      3     0     Yes     3     4        1   1 3
EGADS    :      4     0     Yes     2     4        1   1 2
EGADS    :      5     0     Yes     2     5        1   2 4
EGADS    :      6     0     Yes     4     6        1   2 4
EGADS    :      7     0     Yes     5     6        1   2 5
EGADS    :      8     0     Yes     3     1        1   3 8
EGADS    :      9     0     Yes     4     2        1   3 4
EGADS    :     10     0     Yes     6     5        1   4 5
EGADS    :     11     0     Yes     1     7        1   6 8
EGADS    :     12     0     Yes     3     8        1   6 8
EGADS    :     13     0     Yes     7     8        1   6 7
EGADS    :     14     0     Yes     7     9        1   7 9
EGADS    :     15     0     Yes     8    10        1   7 9
EGADS    :     16     0     Yes     9    10        1   7 10
EGADS    :     17     0     Yes     8     7        1   8 9
EGADS    :     18     0     Yes    10     9        1   9 10
EGADS    :     19     1     Yes    12    11       NA   11 13
EGADS    :     20     1     Yes    11    13       NA   11 16
EGADS    :     21     1     Yes    14    13       NA   11 14
EGADS    :     22     1     Yes    12    14       NA   11 15
EGADS    :     23     1     Yes    16    15       NA   12 13
EGADS    :     24     1     Yes    15    17       NA   12 16
EGADS    :     25     1     Yes    18    17       NA   12 14
EGADS    :     26     1     Yes    16    18       NA   12 15
EGADS    :     27     1     Yes    12    16       NA   13 15
EGADS    :     28     1     Yes    11    15       NA   13 16
EGADS    :     29     1     Yes    14    18       NA   14 15
EGADS    :     30     1     Yes    13    17       NA   14 16

EGADS    : Node Information

EGADS    :   Node  Active      Coordinates
EGADS    :      1     Yes       97.2007855                0                0
EGADS    :      2     Yes       97.9335611                0                0
EGADS    :      3     Yes               50                0                0
EGADS    :      4     Yes       75.3047874                0                0
EGADS    :      5     Yes       123.552357                0        4.7180639
EGADS    :      6     Yes       118.391317                0       3.99272703
EGADS    :      7     Yes       97.9335611       36.1389817                0
EGADS    :      8     Yes       75.3047874       36.1389817                0
EGADS    :      9     Yes       123.552357       97.6729236        4.7180639
EGADS    :     10     Yes       118.391317       97.6729236       3.99272703
EGADS    :     11     Yes                0                0       1951.57774
EGADS    :     12     Yes                0                0                0
EGADS    :     13     Yes                0       1953.45847       1951.57774
EGADS    :     14     Yes                0       1953.45847                0
EGADS    :     15     Yes       2040.21562                0       1951.57774
EGADS    :     16     Yes       2040.21562                0                0
EGADS    :     17     Yes       2040.21562       1953.45847       1951.57774
EGADS    :     18     Yes       2040.21562       1953.45847                0

EGADS    : Face and Edge Match Information

EGADS    : No Face Matches Found

AFLR4    : Surface Mesh Spacing Setup

AFLR4    : Max Bounding Box Length     = 3906.92
AFLR4    : Min Bounding Box Length     = 3906.92
AFLR4    : Max Ref Bounding Box Length = 195.346
AFLR4    : Min Ref Bounding Box Length = 13.1976
AFLR4    : Reference Length            = 13.1976
AFLR4    : BL Thickness                = 0
AFLR4    : FarField Spacing            = 428.309
AFLR4    : Abs Min Surf Spacing        = 0.032994
AFLR4    : Min Surf Spacing            = 0.065988
AFLR4    : Max Surf Spacing            = 1.31976
AFLR4    : Global Scale Factor         = 1

AFLR4    : Geometry Definition Information

AFLR4    : Definition              Definition   Composite             Grid BC
AFLR4    :         ID                    Type          ID                Type
AFLR4    :          0     glue-only composite           -                   -
AFLR4    :          1            CAD geometry           0                 STD
AFLR4    :          2            CAD geometry           0                 STD
AFLR4    :          3            CAD geometry           0                 STD
AFLR4    :          4            CAD geometry           0                 STD
AFLR4    :          5            CAD geometry           0                 STD
AFLR4    :          6            CAD geometry           0                 STD
AFLR4    :          7            CAD geometry           0                 STD
AFLR4    :          8            CAD geometry           0                 STD
AFLR4    :          9            CAD geometry           0                 STD
AFLR4    :         10            CAD geometry           0                 STD
AFLR4    :         11            CAD geometry           0            FARFIELD
AFLR4    :         12            CAD geometry           0            FARFIELD
AFLR4    :         13            CAD geometry           0            FARFIELD
AFLR4    :         14            CAD geometry           0            FARFIELD
AFLR4    :         15            CAD geometry           0            FARFIELD
AFLR4    :         16            CAD geometry           0            FARFIELD

AFLR4    : Define CAD surface definition 1
AFLR4    : Define CAD surface definition 2
AFLR4    : Define CAD surface definition 3
AFLR4    : Define CAD surface definition 4
AFLR4    : Define CAD surface definition 5
AFLR4    : Define CAD surface definition 6
AFLR4    : Define CAD surface definition 7
AFLR4    : Define CAD surface definition 8
AFLR4    : Define CAD surface definition 9
AFLR4    : Define CAD surface definition 10
AFLR4    : Define CAD surface definition 11
AFLR4    : Define CAD surface definition 12
AFLR4    : Define CAD surface definition 13
AFLR4    : Define CAD surface definition 14
AFLR4    : Define CAD surface definition 15
AFLR4    : Define CAD surface definition 16
 
AFLR43   : INPUT SURFACE MESH FROM TESS
 
AFLR43   : Quad Surface Faces=         0
AFLR43   : Tria Surface Faces=    151708
AFLR43   : Nodes             =     75858
 
 
UG PARAM : SETTING INPUT PARAMETERS FROM ARGUMENT VECTOR
 
UG PARAM : mrecm                       = 3         
UG PARAM : mrecqm                      = 3         
UG PARAM : mpfrmt                      = 0         
 
AFLR3    : ---------------------------------------
AFLR3    : AFLR3 LIBRARY
AFLR3    : ADVANCING-FRONT/LOCAL-RECONNECTION
AFLR3    : TETRAHEDRAL GRID GENERATOR
AFLR3    : Version Number 16.32.50
AFLR3    : Version Date   10/31/23 @ 06:31PM
AFLR3    : Compile OS     Linux 3.10.0-1160.88.1.el7.x86_64 x86_64
AFLR3    : Compile Date   03/08/24 @ 01:03AM
AFLR3    : Copyright 1994-2021, D.L. Marcum
AFLR3    : ---------------------------------------
 
AFLR3 IC : INPUT SURFACE GRID CHECK
 
AFLR3 IC : Nodes, Elements   =     75858         0

UG3      : Boundary Conditions

UG3      :  B-Face ID            Boundary Condition
UG3      :          1                         Solid
UG3      :          2                         Solid
UG3      :          3                         Solid
UG3      :          4                         Solid
UG3      :          5                         Solid
UG3      :          6                         Solid
UG3      :          7                         Solid
UG3      :          8                         Solid
UG3      :          9                         Solid
UG3      :         10                         Solid
UG3      :         11                      FarField
UG3      :         12                      FarField
UG3      :         13                      FarField
UG3      :         14                      FarField
UG3      :         15                      FarField
UG3      :         16                      FarField
 
AFLR3    : CPU Time          =     0.175   seconds
 
AFLR3 IG : INITIAL VOLUME GRID GENERATION
 
AFLR3 IG : Nodes, Elements   =     75858         0
AFLR3 IG : Nodes, Elements   =         8        10
AFLR3 IG : Nodes, Elements   =     15174    110930
AFLR3 IG : Nodes, Elements   =     30348    239498
AFLR3 IG : Nodes, Elements   =     45522    364389
AFLR3 IG : Nodes, Elements   =     60696    488757
AFLR3 IG : Nodes, Elements   =     75865    649523
AFLR3 IG : Nodes, Elements   =     75865    648313
AFLR3 IG : Nodes, Elements   =     75865    648327
AFLR3 IG : Nodes, Elements   =     75865    648302
AFLR3 IG : Nodes, Elements   =     75858    417143
AFLR3 IG : Nodes, Elements   =     75858    417623
AFLR3 IG : Nodes, Elements   =     75858    262238
AFLR3 IG : Nodes, Elements   =     75858    239193
 
AFLR3    : CPU Time          =     5.586   seconds
 
AFLR3 GG : ISOTROPIC VOLUME GRID GENERATION
 
AFLR3 GG : Nodes, Elements   =     75858    239193
AFLR3 GG : Nodes, Elements   =     97168    303709
AFLR3 GG : Nodes, Elements   =     97168    385878
AFLR3 GG : Nodes, Elements   =     97168    352378
AFLR3 GG : Nodes, Elements   =    114958    409432
AFLR3 GG : Nodes, Elements   =    114958    486501
AFLR3 GG : Nodes, Elements   =    114958    455941
AFLR3 GG : Nodes, Elements   =    139008    530402
AFLR3 GG : Nodes, Elements   =    139008    630930
AFLR3 GG : Nodes, Elements   =    139008    591909
AFLR3 GG : Nodes, Elements   =    164606    669875
AFLR3 GG : Nodes, Elements   =    164606    782306
AFLR3 GG : Nodes, Elements   =    164606    743489
AFLR3 GG : Nodes, Elements   =    192184    827570
AFLR3 GG : Nodes, Elements   =    192184    943865
AFLR3 GG : Nodes, Elements   =    192184    907783
AFLR3 GG : Nodes, Elements   =    220515    994115
AFLR3 GG : Nodes, Elements   =    220515   1110440
AFLR3 GG : Nodes, Elements   =    220515   1076111
AFLR3 GG : Nodes, Elements   =    249997   1165619
AFLR3 GG : Nodes, Elements   =    249997   1284333
AFLR3 GG : Nodes, Elements   =    249997   1251164
AFLR3 GG : Nodes, Elements   =    279372   1340138
AFLR3 GG : Nodes, Elements   =    279372   1457486
AFLR3 GG : Nodes, Elements   =    279372   1425098
AFLR3 GG : Nodes, Elements   =    308490   1513100
AFLR3 GG : Nodes, Elements   =    308490   1628640
AFLR3 GG : Nodes, Elements   =    308490   1598005
AFLR3 GG : Nodes, Elements   =    336583   1682907
AFLR3 GG : Nodes, Elements   =    336583   1794254
AFLR3 GG : Nodes, Elements   =    336583   1764714
AFLR3 GG : Nodes, Elements   =    363849   1846933
AFLR3 GG : Nodes, Elements   =    363849   1955651
AFLR3 GG : Nodes, Elements   =    363849   1927081
AFLR3 GG : Nodes, Elements   =    390451   2007227
AFLR3 GG : Nodes, Elements   =    390451   2112073
AFLR3 GG : Nodes, Elements   =    390451   2084807
AFLR3 GG : Nodes, Elements   =    415986   2161729
AFLR3 GG : Nodes, Elements   =    415986   2262418
AFLR3 GG : Nodes, Elements   =    415986   2236438
AFLR3 GG : Nodes, Elements   =    440254   2309507
AFLR3 GG : Nodes, Elements   =    440254   2406149
AFLR3 GG : Nodes, Elements   =    440254   2380588
AFLR3 GG : Nodes, Elements   =    463902   2451765
AFLR3 GG : Nodes, Elements   =    463902   2545642
AFLR3 GG : Nodes, Elements   =    463902   2521191
AFLR3 GG : Nodes, Elements   =    486301   2588578
AFLR3 GG : Nodes, Elements   =    486301   2676626
AFLR3 GG : Nodes, Elements   =    486301   2654211
AFLR3 GG : Nodes, Elements   =    507793   2718862
AFLR3 GG : Nodes, Elements   =    507793   2804035
AFLR3 GG : Nodes, Elements   =    507793   2782083
AFLR3 GG : Nodes, Elements   =    528099   2843149
AFLR3 GG : Nodes, Elements   =    528099   2922717
AFLR3 GG : Nodes, Elements   =    528099   2902566
AFLR3 GG : Nodes, Elements   =    547566   2961086
AFLR3 GG : Nodes, Elements   =    547566   3037884
AFLR3 GG : Nodes, Elements   =    547566   3018397
AFLR3 GG : Nodes, Elements   =    565987   3073758
AFLR3 GG : Nodes, Elements   =    565987   3146461
AFLR3 GG : Nodes, Elements   =    565987   3127793
AFLR3 GG : Nodes, Elements   =    583472   3180335
AFLR3 GG : Nodes, Elements   =    583472   3249336
AFLR3 GG : Nodes, Elements   =    583472   3231736
AFLR3 GG : Nodes, Elements   =    600126   3281787
AFLR3 GG : Nodes, Elements   =    600126   3347024
AFLR3 GG : Nodes, Elements   =    600126   3330496
AFLR3 GG : Nodes, Elements   =    615842   3377705
AFLR3 GG : Nodes, Elements   =    615842   3438871
AFLR3 GG : Nodes, Elements   =    615842   3423841
AFLR3 GG : Nodes, Elements   =    630903   3469100
AFLR3 GG : Nodes, Elements   =    630903   3527688
AFLR3 GG : Nodes, Elements   =    630903   3513086
AFLR3 GG : Nodes, Elements   =    645238   3556133
AFLR3 GG : Nodes, Elements   =    645238   3611630
AFLR3 GG : Nodes, Elements   =    645238   3597904
AFLR3 GG : Nodes, Elements   =    658960   3639116
AFLR3 GG : Nodes, Elements   =    658960   3692436
AFLR3 GG : Nodes, Elements   =    658960   3679362
AFLR3 GG : Nodes, Elements   =    671927   3718298
AFLR3 GG : Nodes, Elements   =    671927   3768390
AFLR3 GG : Nodes, Elements   =    671927   3756083
AFLR3 GG : Nodes, Elements   =    684287   3793185
AFLR3 GG : Nodes, Elements   =    684287   3841563
AFLR3 GG : Nodes, Elements   =    684287   3829269
AFLR3 GG : Nodes, Elements   =    696104   3864741
AFLR3 GG : Nodes, Elements   =    696104   3910841
AFLR3 GG : Nodes, Elements   =    696104   3899361
AFLR3 GG : Nodes, Elements   =    707264   3932857
AFLR3 GG : Nodes, Elements   =    707264   3975861
AFLR3 GG : Nodes, Elements   =    707264   3965477
AFLR3 GG : Nodes, Elements   =    718027   3997787
AFLR3 GG : Nodes, Elements   =    718027   4039732
AFLR3 GG : Nodes, Elements   =    718027   4029129
AFLR3 GG : Nodes, Elements   =    728343   4060098
AFLR3 GG : Nodes, Elements   =    728343   4099759
AFLR3 GG : Nodes, Elements   =    728343   4090147
AFLR3 GG : Nodes, Elements   =    738210   4119758
AFLR3 GG : Nodes, Elements   =    738210   4158329
AFLR3 GG : Nodes, Elements   =    738210   4148565
AFLR3 GG : Nodes, Elements   =    747725   4177129
AFLR3 GG : Nodes, Elements   =    747725   4213466
AFLR3 GG : Nodes, Elements   =    747725   4204755
AFLR3 GG : Nodes, Elements   =    756786   4231950
AFLR3 GG : Nodes, Elements   =    756786   4266663
AFLR3 GG : Nodes, Elements   =    756786   4258286
AFLR3 GG : Nodes, Elements   =    765619   4284797
AFLR3 GG : Nodes, Elements   =    765619   4318923
AFLR3 GG : Nodes, Elements   =    765619   4310519
AFLR3 GG : Nodes, Elements   =    774102   4335981
AFLR3 GG : Nodes, Elements   =    774102   4368533
AFLR3 GG : Nodes, Elements   =    774102   4360629
AFLR3 GG : Nodes, Elements   =    782191   4384905
AFLR3 GG : Nodes, Elements   =    782191   4415929
AFLR3 GG : Nodes, Elements   =    782191   4408308
AFLR3 GG : Nodes, Elements   =    790055   4431913
AFLR3 GG : Nodes, Elements   =    790055   4462202
AFLR3 GG : Nodes, Elements   =    790055   4454838
AFLR3 GG : Nodes, Elements   =    797555   4477352
AFLR3 GG : Nodes, Elements   =    797555   4505899
AFLR3 GG : Nodes, Elements   =    797555   4498995
AFLR3 GG : Nodes, Elements   =    804778   4520677
AFLR3 GG : Nodes, Elements   =    804778   4548213
AFLR3 GG : Nodes, Elements   =    804778   4541605
AFLR3 GG : Nodes, Elements   =    811858   4562856
AFLR3 GG : Nodes, Elements   =    811858   4590333
AFLR3 GG : Nodes, Elements   =    811858   4583593
AFLR3 GG : Nodes, Elements   =    818681   4604067
AFLR3 GG : Nodes, Elements   =    818681   4630383
AFLR3 GG : Nodes, Elements   =    818681   4623848
AFLR3 GG : Nodes, Elements   =    825289   4643683
AFLR3 GG : Nodes, Elements   =    825289   4669348
AFLR3 GG : Nodes, Elements   =    825289   4662894
AFLR3 GG : Nodes, Elements   =    831545   4681674
AFLR3 GG : Nodes, Elements   =    831545   4705793
AFLR3 GG : Nodes, Elements   =    831545   4699871
AFLR3 GG : Nodes, Elements   =    837605   4718058
AFLR3 GG : Nodes, Elements   =    837605   4741566
AFLR3 GG : Nodes, Elements   =    837605   4735607
AFLR3 GG : Nodes, Elements   =    843412   4753033
AFLR3 GG : Nodes, Elements   =    843412   4775156
AFLR3 GG : Nodes, Elements   =    843412   4769761
AFLR3 GG : Nodes, Elements   =    848780   4785871
AFLR3 GG : Nodes, Elements   =    848780   4806421
AFLR3 GG : Nodes, Elements   =    848780   4801461
AFLR3 GG : Nodes, Elements   =    853786   4816482
AFLR3 GG : Nodes, Elements   =    853786   4835744
AFLR3 GG : Nodes, Elements   =    853786   4831051
AFLR3 GG : Nodes, Elements   =    858360   4844779
AFLR3 GG : Nodes, Elements   =    858360   4862787
AFLR3 GG : Nodes, Elements   =    858360   4858186
AFLR3 GG : Nodes, Elements   =    862426   4870389
AFLR3 GG : Nodes, Elements   =    862426   4886510
AFLR3 GG : Nodes, Elements   =    862426   4882240
AFLR3 GG : Nodes, Elements   =    865970   4892872
AFLR3 GG : Nodes, Elements   =    865970   4906556
AFLR3 GG : Nodes, Elements   =    865970   4903186
AFLR3 GG : Nodes, Elements   =    869079   4912519
AFLR3 GG : Nodes, Elements   =    869079   4924546
AFLR3 GG : Nodes, Elements   =    869079   4921496
AFLR3 GG : Nodes, Elements   =    871727   4929441
AFLR3 GG : Nodes, Elements   =    871727   4939749
AFLR3 GG : Nodes, Elements   =    871727   4937169
AFLR3 GG : Nodes, Elements   =    873897   4943682
AFLR3 GG : Nodes, Elements   =    873897   4952190
AFLR3 GG : Nodes, Elements   =    873897   4949987
AFLR3 GG : Nodes, Elements   =    875556   4954966
AFLR3 GG : Nodes, Elements   =    875556   4961597
AFLR3 GG : Nodes, Elements   =    875556   4959782
AFLR3 GG : Nodes, Elements   =    876770   4963425
AFLR3 GG : Nodes, Elements   =    876770   4968199
AFLR3 GG : Nodes, Elements   =    876770   4966923
AFLR3 GG : Nodes, Elements   =    877602   4969423
AFLR3 GG : Nodes, Elements   =    877602   4972665
AFLR3 GG : Nodes, Elements   =    877602   4971787
AFLR3 GG : Nodes, Elements   =    878108   4973305
AFLR3 GG : Nodes, Elements   =    878108   4975268
AFLR3 GG : Nodes, Elements   =    878108   4974714
AFLR3 GG : Nodes, Elements   =    878387   4975552
AFLR3 GG : Nodes, Elements   =    878387   4976665
AFLR3 GG : Nodes, Elements   =    878387   4976319
AFLR3 GG : Nodes, Elements   =    878544   4976790
AFLR3 GG : Nodes, Elements   =    878544   4977455
AFLR3 GG : Nodes, Elements   =    878544   4977234
AFLR3 GG : Nodes, Elements   =    878631   4977495
AFLR3 GG : Nodes, Elements   =    878631   4977848
AFLR3 GG : Nodes, Elements   =    878631   4977721
AFLR3 GG : Nodes, Elements   =    878687   4977889
AFLR3 GG : Nodes, Elements   =    878687   4978126
AFLR3 GG : Nodes, Elements   =    878687   4978037
AFLR3 GG : Nodes, Elements   =    878722   4978142
AFLR3 GG : Nodes, Elements   =    878722   4978289
AFLR3 GG : Nodes, Elements   =    878722   4978238
AFLR3 GG : Nodes, Elements   =    878746   4978310
AFLR3 GG : Nodes, Elements   =    878746   4978403
AFLR3 GG : Nodes, Elements   =    878746   4978373
AFLR3 GG : Nodes, Elements   =    878766   4978433
AFLR3 GG : Nodes, Elements   =    878766   4978522
AFLR3 GG : Nodes, Elements   =    878766   4978484
AFLR3 GG : Nodes, Elements   =    878785   4978541
AFLR3 GG : Nodes, Elements   =    878785   4978614
AFLR3 GG : Nodes, Elements   =    878785   4978595
AFLR3 GG : Nodes, Elements   =    878793   4978619
AFLR3 GG : Nodes, Elements   =    878793   4978654
AFLR3 GG : Nodes, Elements   =    878793   4978636
AFLR3 GG : Nodes, Elements   =    878795   4978642
AFLR3 GG : Nodes, Elements   =    878795   4978649
AFLR3 GG : Nodes, Elements   =    878795   4978646
AFLR3 GG : Nodes, Elements   =    878930   4979051
AFLR3 GG : Nodes, Elements   =    878930   4979690
AFLR3 GG : Nodes, Elements   =    878930   4979398
AFLR3 GG : Nodes, Elements   =    878983   4979557
AFLR3 GG : Nodes, Elements   =    878983   4979723
AFLR3 GG : Nodes, Elements   =    878983   4979674
AFLR3 GG : Nodes, Elements   =    879002   4979731
AFLR3 GG : Nodes, Elements   =    879002   4979795
AFLR3 GG : Nodes, Elements   =    879002   4979778
AFLR3 GG : Nodes, Elements   =    879007   4979793
AFLR3 GG : Nodes, Elements   =    879007   4979811
AFLR3 GG : Nodes, Elements   =    879007   4979804
 
AFLR3    : CPU Time          =     2.126   minutes
 
AFLR3 QI : QUALITY IMPROVEMENT
 
AFLR3 QI : Nodes, Elements   =    879007   4979804
AFLR3 QI : Nodes, Elements   =    872139   4941328
AFLR3 QI : Nodes, Elements   =    870068   4929616
AFLR3 QI : Nodes, Elements   =    869401   4925872
AFLR3 QI : Nodes, Elements   =    869242   4924981
AFLR3 QI : Nodes, Elements   =    869215   4924823
AFLR3 QI : Nodes, Elements   =    869212   4924805
AFLR3 QI : Nodes, Elements   =    869212   4945229
AFLR3 QI : Nodes, Elements   =    869212   4922255
AFLR3 QI : Nodes, Elements   =    869212   4912769
AFLR3 QI : Nodes, Elements   =    869212   4927916
AFLR3 QI : Nodes, Elements   =    869212   4912557
AFLR3 QI : Nodes, Elements   =    869212   4912067
AFLR3 QI : Nodes, Elements   =    869212   4926194
AFLR3 QI : Nodes, Elements   =    869212   4912315
AFLR3 QI : Nodes, Elements   =    869212   4911995
AFLR3 QI : Nodes, Elements   =    869212   4916957
AFLR3 QI : Nodes, Elements   =    869212   4911244
AFLR3 QI : Nodes, Elements   =    869212   4910830
AFLR3 QI : Nodes, Elements   =    869212   4913686
AFLR3 QI : Nodes, Elements   =    869212   4910459
AFLR3 QI : Nodes, Elements   =    869212   4910187
 
AFLR3    : CPU Time          =    29.755   seconds
 
AFLR3 QRG: QUALITY GRID RE-GENERATION
 
AFLR3 QRG: Nodes, Elements   =    869212   4910187
AFLR3 QRG: Nodes, Elements   =    869211   4910183
AFLR3 QRG: Nodes, Elements   =    869210   4910179
AFLR3 QRG: Nodes, Elements   =    869209   4910176
AFLR3 QRG: Nodes, Elements   =    869208   4910172
AFLR3 QRG: Nodes, Elements   =    869207   4910168
 
AFLR3    : CPU Time          =     1.070   seconds
 
AFLR3    : DONE

UG3      : DIHEDRAL ANGLE CHECK

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Ang      =     5.869     164.4
UG3      : Average Angle     =      70.2
UG3      : No. Angle>160.0   =        17
UG3      : No. Angle>179.9   =         0

UG3      : VOL CHECK

UG3      : Total-Volume      =  5.96e+10

UG3      : No. Tet Elems     =   4910168
UG3      : Min Vol           =  1.78e-05
UG3      : Average Vol       =  1.21e+04
UG3      : Total-Tet-Vol     =  5.96e+10
UG3      : No. Vol<TOL       =         0

UG3      : Q VOL-LENGTH-RATIO CHECK
                      2/3        2
UG3      : Q = c * Vol   / sum( L  )
UG3      : 0 <= Q <= 1

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Q        =    0.0363         1
UG3      : Average Q         =     0.891
UG3      : No. Q<       0.1  =        32
UG3      : No. Q<      0.01  =         0

OVERALL  : CPU Time          =     2.793   minutes

UG3      : DIHEDRAL ANGLE CHECK

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Ang      =     5.869     164.4
UG3      : Average Angle     =      70.2
UG3      : No. Angle>160.0   =        17
UG3      : No. Angle>179.9   =         0

UG3      : VOL CHECK

UG3      : Total-Volume      =  5.96e+10

UG3      : No. Tet Elems     =   4910168
UG3      : Min Vol           =  1.78e-05
UG3      : Average Vol       =  1.21e+04
UG3      : Total-Tet-Vol     =  5.96e+10
UG3      : No. Vol<TOL       =         0

UG3      : Q VOL-LENGTH-RATIO CHECK
                      2/3        2
UG3      : Q = c * Vol   / sum( L  )
UG3      : 0 <= Q <= 1
UG3      : Note that L includes scaling for BL-aspect=ratio

UG3      : No. Tet Elems     =   4910168
UG3      : Min, Max Q        =     0.202         1
UG3      : Average Q         =     0.854
UG3      : No. Q<       0.1  =         0
UG3      : No. Q<      0.01  =         0

UG3      : CPU Time          =     0.000   seconds

EGADS    : ---------------------------------------
EGADS    : Engineering Geometry Aircraft Design System
EGADS    : Version 1.26
EGADS    : OpenCASCADE Version 7.8.0
EGADS    : ---------------------------------------

EGADS    : CREATE EGADS TESS FROM AFLR3 DATA

EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 1
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 2
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 3
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 4
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 5
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 6
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 7
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 8
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 9
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 10
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 11
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 12
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 13
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 14
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 15
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 16
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 17
EGADS    : CREATING TESSELLATION FOR BODY 0 EDGE 18

EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 1
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 2
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 3
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 4
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 5
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 6
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 7
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 8
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 9
EGADS    : CREATING TESSELLATION FOR BODY 0 FACE 10

EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 19
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 20
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 21
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 22
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 23
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 24
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 25
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 26
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 27
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 28
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 29
EGADS    : CREATING TESSELLATION FOR BODY 1 EDGE 30

EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 11
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 12
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 13
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 14
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 15
EGADS    : CREATING TESSELLATION FOR BODY 1 FACE 16

EGADS    : EGADS TESS CREATED

EGADS    : CHECK TESS FACE NODE MAP

EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 1
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 2
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 3
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 4
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 5
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 6
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 7
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 8
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 9
EGADS    : CHECKING NODE MAP FOR BODY 0 FACE 10
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 11
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 12
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 13
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 14
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 15
EGADS    : CHECKING NODE MAP FOR BODY 1 FACE 16
Volume mesh:
	Number of nodes          = 869207
	Number of elements       = 5061876
	Number of triangles      = 151708
	Number of quadrilatarals = 0
	Number of tetrahedrals   = 4910168
	Number of pyramids       = 0
	Number of prisms         = 0
	Number of hexahedrals    = 0

Writing SU2 file ....
Finished writing SU2 file

Getting CFD boundary conditions
	Boundary condition name - Farfield
	Boundary condition name - Wing
	Done getting CFD boundary conditions
Writing SU2 data transfer files
Writing SU2 Motion File - aeroelasticIterative_motion.dat
Warning: The su2 cfg file will be overwritten!
Write SU2 configuration file for version "Harrier (8.0.1)"

==> Running SU2......
/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/io/config.py:142: ResourceWarning: unclosed file <_io.TextIOWrapper name='aeroelasticIterative.cfg' mode='r' encoding='UTF-8'>
  konfig = read_config(filename)
ResourceWarning: Enable tracemalloc to get the object allocation traceback
/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/io/config.py:933: ResourceWarning: unclosed file <_io.TextIOWrapper name='config_CFD.cfg_tmp' mode='r' encoding='UTF-8'>
  for raw_line in open(temp_filename):
ResourceWarning: Enable tracemalloc to get the object allocation traceback

-------------------------------------------------------------------------
|    ___ _   _ ___                                                      |
|   / __| | | |_  )   Release 8.0.0 "Harrier"                           |
|   \__ \ |_| |/ /                                                      |
|   |___/\___//___|   Suite (Computational Fluid Dynamics Code)         |
|                                                                       |
-------------------------------------------------------------------------
| SU2 Project Website: https://su2code.github.io                        |
|                                                                       |
| The SU2 Project is maintained by the SU2 Foundation                   |
| (http://su2foundation.org)                                            |
-------------------------------------------------------------------------
| Copyright 2012-2023, SU2 Contributors                                 |
|                                                                       |
| SU2 is free software; you can redistribute it and/or                  |
| modify it under the terms of the GNU Lesser General Public            |
| License as published by the Free Software Foundation; either          |
| version 2.1 of the License, or (at your option) any later version.    |
|                                                                       |
| SU2 is distributed in the hope that it will be useful,                |
| but WITHOUT ANY WARRANTY; without even the implied warranty of        |
| MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU      |
| Lesser General Public License for more details.                       |
|                                                                       |
| You should have received a copy of the GNU Lesser General Public      |
| License along with SU2. If not, see <http://www.gnu.org/licenses/>.   |
-------------------------------------------------------------------------

Parsing config file for zone 0

----------------- Physical Case Definition ( Zone 0 ) -------------------
Compressible Euler equations.
Mach number: 0.294118.
Angle of attack (AoA): 0 deg, and angle of sideslip (AoS): 0 deg.
No restart solution, use the values at infinity (freestream).
Dimensional simulation.
The reference area is 4240 m^2.
The semi-span will be computed using the max y(3D) value.
The reference length is 195.346 m.
Reference origin for moment evaluation is (55.4263, 0, 0).
Surface(s) where the force coefficients are evaluated: BC_1.

Surface(s) plotted in the output file: BC_1.
Surface(s) affected by the design variables: BC_1.
Input mesh file name: ../aflr3/aflr3_CAPS.su2

--------------- Space Numerical Integration ( Zone 0 ) ------------------
Roe (with entropy fix = 0.001) solver for the flow inviscid terms.
Standard Roe without low-dissipation function.
Second order integration in space, with slope limiter.
Venkatakrishnan slope-limiting method, with constant: 0.05.
The reference element size is: 1. 
Gradient for upwind reconstruction: inverse-distance weighted Least-Squares.
Gradient for viscous and source terms: inverse-distance weighted Least-Squares.

--------------- Time Numerical Integration  ( Zone 0 ) ------------------
Local time stepping (steady state simulation).
Euler implicit method for the flow equations.
FGMRES is used for solving the linear system.
Using a ILU(0) preconditioning.
Convergence criteria of the linear solver: 1e-06.
Max number of linear iterations: 10.
V Multigrid Cycle, with 2 multigrid levels.
Damping factor for the residual restriction: 0.75.
Damping factor for the correction prolongation: 0.75.
No CFL adaptation.
+-------------------------------------------+
|  MG Level| Presmooth|PostSmooth|CorrectSmo|
+-------------------------------------------+
|         0|         1|         0|         0|
|         1|         2|         0|         0|
|         2|         3|         0|         0|
+-------------------------------------------+
Courant-Friedrichs-Lewy number:       10

------------------ Convergence Criteria  ( Zone 0 ) ---------------------
Maximum number of solver subiterations: 5.
Begin convergence monitoring at iteration 5.
Residual minimum value: 1e-14.
Cauchy series min. value: 1e-10.
Number of Cauchy elements: 100.
Begin windowed time average at iteration 0.

-------------------- Output Information ( Zone 0 ) ----------------------
File writing frequency: 
+------------------------------------+
|                     File| Frequency|
+------------------------------------+
|                  RESTART|       250|
|              SURFACE_CSV|       250|
|                  TECPLOT|       250|
|          SURFACE_TECPLOT|       250|
+------------------------------------+
Writing the convergence history file every 1 inner iterations.
Writing the screen convergence history every 1 inner iterations.
The tabular file format is CSV (.csv).
Convergence history file name: history.
Forces breakdown file name: forces_breakdown_aeroelasticIterative.dat.
Surface file name: surface_flow_aeroelasticIterative.
Volume file name: flow_aeroelasticIterative.
Restart file name: restart_flow_aeroelasticIterative.dat.

------------- Config File Boundary Information ( Zone 0 ) ---------------
+-----------------------------------------------------------------------+
|                        Marker Type|                        Marker Name|
+-----------------------------------------------------------------------+
|                         Euler wall|                               BC_1|
+-----------------------------------------------------------------------+
|                          Far-field|                               BC_2|
+-----------------------------------------------------------------------+

-------------------- Output Preprocessing ( Zone 0 ) --------------------

WARNING: SURFACE_PRESSURE_DROP can only be computed for at least 2 surfaces (outlet, inlet, ...)

Screen output fields: TIME_ITER, OUTER_ITER, INNER_ITER, CUR_TIME, TIME_STEP, WALL_TIME, RMS_DENSITY, RMS_MOMENTUM-X, RMS_MOMENTUM-Y, RMS_ENERGY, EFFICIENCY
History output group(s): ITER, TIME_DOMAIN, WALL_TIME, RMS_RES, AERO_COEFF
Convergence field(s): RMS_DENSITY
Warning: No (valid) fields chosen for time convergence monitoring. Time convergence monitoring inactive.
Volume output fields: COORDINATES, SOLUTION, PRIMITIVE

------------------- Geometry Preprocessing ( Zone 0 ) -------------------
Three dimensional problem.
869207 grid points.
4910168 volume elements.
2 surface markers.
151672 boundary elements in index 0 (Marker = BC_1).
36 boundary elements in index 1 (Marker = BC_2).
4910168 tetrahedra.
Setting point connectivity.
Renumbering points (Reverse Cuthill McKee Ordering).
Recomputing point connectivity.
Setting element connectivity.
Checking the numerical grid orientation.
All volume elements are correctly orientend.
All surface elements are correctly orientend.
Identifying edges and vertices.
Setting the control volume structure.
Volume of the computational grid: 5.96352e+10.
Searching for the closest normal neighbors to the surfaces.
Storing a mapping from global to local point index.
Compute the surface curvature.
Max K: 122.726. Mean K: 4.02927. Standard deviation K: 11.959.
Checking for periodicity.
Computing mesh quality statistics for the dual control volumes.
+--------------------------------------------------------------+
|           Mesh Quality Metric|        Minimum|        Maximum|
+--------------------------------------------------------------+
|    Orthogonality Angle (deg.)|        42.0582|        87.4998|
|     CV Face Area Aspect Ratio|        1.02246|        6063.72|
|           CV Sub-Volume Ratio|        1.00664|        97979.3|
+--------------------------------------------------------------+
Setting the multigrid structure.
+-------------------------------------------+
|  MG Level|       CVs|Aggl. Rate|       CFL|
+-------------------------------------------+
|         0|    869207|    1/1.00|        10|
|         1|    142422|     1/6.1|    8.2081|
|         2|     21672|    1/6.57|   6.57316|
+-------------------------------------------+
Finding max control volume width.
Semi-span length = 97.6729 m.
Wetted area = 8795.17 m^2.
Area projection in the x-plane = 681.447 m^2, y-plane = 449.382 m^2, z-plane = 4224.13 m^2.
Max. coordinate in the x-direction = 123.552 m, y-direction = 97.6729 m, z-direction = 4.71806 m.
Min. coordinate in the x-direction = 49.9621 m, y-direction = -97.6729 m, z-direction = -8.47903 m.
Checking if Euler & Symmetry markers are straight/plane:
Boundary marker BC_1 is NOT a single plane.
Computing wall distances.

-------------------- Solver Preprocessing ( Zone 0 ) --------------------
Inviscid flow: Computing density based on free-stream
temperature and pressure using the ideal gas law.
Force coefficients computed using free-stream values.

-- Models:
+------------------------------------------------------------------------------+
|          Viscosity Model|        Conductivity Model|              Fluid Model|
+------------------------------------------------------------------------------+
|                        -|                         -|             STANDARD_AIR|
+------------------------------------------------------------------------------+
-- Fluid properties:
+------------------------------------------------------------------------------+
|                  Name|    Dim. value|    Ref. value|      Unit|Non-dim. value|
+------------------------------------------------------------------------------+
|          Gas Constant|       287.058|             1|  N.m/kg.K|       287.058|
|      Spec. Heat Ratio|             -|             -|         -|           1.4|
+------------------------------------------------------------------------------+
-- Initial and free-stream conditions:
+------------------------------------------------------------------------------+
|                  Name|    Dim. value|    Ref. value|      Unit|Non-dim. value|
+------------------------------------------------------------------------------+
|       Static Pressure|        101325|             1|        Pa|        101325|
|               Density|       1.22498|             1|    kg/m^3|       1.22498|
|           Temperature|        288.15|             1|         K|        288.15|
|          Total Energy|        211798|             1|   m^2/s^2|        211798|
|            Velocity-X|       100.087|             1|       m/s|       100.087|
|            Velocity-Y|             0|             1|       m/s|             0|
|            Velocity-Z|             0|             1|       m/s|             0|
|    Velocity Magnitude|       100.087|             1|       m/s|       100.087|
+------------------------------------------------------------------------------+
|           Mach Number|             -|             -|         -|      0.294118|
+------------------------------------------------------------------------------+
Initialize Jacobian structure (Euler). MG level: 0.
Initialize Jacobian structure (Euler). MG level: 1.
Initialize Jacobian structure (Euler). MG level: 2.

------------------- Numerics Preprocessing ( Zone 0 ) -------------------

----------------- Integration Preprocessing ( Zone 0 ) ------------------

------------------- Iteration Preprocessing ( Zone 0 ) ------------------
Euler/Navier-Stokes/RANS fluid iteration.

------------------------------ Begin Solver -----------------------------

Simulation Run using the Single-zone Driver
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
+----------------------------------------------------------------------------------------------------------------------------------------------+
|   Time_Iter|  Outer_Iter|  Inner_Iter|    Cur_Time|   Time_Step|   Time(sec)|    rms[Rho]|   rms[RhoU]|   rms[RhoV]|   rms[RhoE]|        CEff|
+----------------------------------------------------------------------------------------------------------------------------------------------+
|           0|           0|           0|  0.0000e+00|  0.0000e+00|  3.4438e+01|    0.133403|    2.254433|    1.860795|    5.602509|   -0.744827|
|           0|           0|           1|  0.0000e+00|  0.0000e+00|  3.2681e+01|    2.584080|    4.825637|    4.842578|    8.031359|   -0.533534|
|           0|           0|           2|  0.0000e+00|  0.0000e+00|  3.0299e+01|    4.027346|    6.414797|    6.285201|    9.489335|    1.969634|
|           0|           0|           3|  0.0000e+00|  0.0000e+00|  2.9089e+01|    5.604219|    7.997273|    7.931849|   11.073725|   -8.397526|
|           0|           0|           4|  0.0000e+00|  0.0000e+00|  2.8400e+01|    5.598695|    8.002670|    7.942566|   11.068590|   -9.540712|

----------------------------- Solver Exit -------------------------------

Maximum number of iterations reached (ITER = 5) before convergence.
+-----------------------------------------------------------------------+
|      Convergence Field     |     Value    |   Criterion  |  Converged |
+-----------------------------------------------------------------------+
|                    rms[Rho]|       5.59869|         < -14|          No|
+-----------------------------------------------------------------------+
-------------------------------------------------------------------------
+-----------------------------------------------------------------------+
|        File Writing Summary       |              Filename             |
+-----------------------------------------------------------------------+
|SU2 binary restart                 |restart_flow_aeroelasticIterative.dat|

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
|CSV file                           |surface_flow_aeroelasticIterative.csv|

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
|Tecplot binary                     |flow_aeroelasticIterative.szplt    |

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
|Tecplot binary surface             |surface_flow_aeroelasticIterative.szplt|

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
+-----------------------------------------------------------------------+
Warning: there are 218 non-physical points in the solution.

--------------------------- Finalizing Solver ---------------------------
Deleted CNumerics container.
Deleted CIntegration container.
Deleted CSolver container.
Deleted CIteration container.
Deleted CInterface container.
Deleted CGeometry container.
Deleted CFreeFormDefBox class.
Deleted CSurfaceMovement class.
Deleted CVolumetricMovement class.
Deleted CConfig container.
Deleted nInst container.
Deleted COutput class.
-------------------------------------------------------------------------

------------------------- Exit Success (SU2_CFD) ------------------------

/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/run/interface.py:114: ResourceWarning: unclosed file <_io.BufferedReader name=4>
  run_command(the_Command)
ResourceWarning: Enable tracemalloc to get the object allocation traceback

==> Running SU2 post-analysis...

==> Running ASTROS pre-analysis...
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Mapping capsMesh attributes ................
	Number of unique capsMesh attributes = 2
	Name = wingSpar1, index = 1
	Name = wingSpar2, index = 2
Getting surface mesh for body 1 (of 1)
Body 1 (of 1)
Number of nodes    = 425
Number of elements = 482
Number of triangle elements      = 0
Number of quadrilateral elements = 482
----------------------------
Total number of nodes    = 425
Total number of elements = 482
Mapping Csys attributes ................
	Number of unique Csys attributes = 2
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2

Getting FEA coordinate systems.......
	Number of coordinate systems - 2
	Coordinate system name - leftWingSkin
	Coordinate system name - riteWingSkin
Mapping capsConstraint attributes ................
	Number of unique capsConstraint attributes = 1
	Name = rootConstraint, index = 1
Mapping capsLoad attributes ................
	Number of unique capsLoad attributes = 4
	Name = leftWingSkin, index = 1
	Name = riteWingSkin, index = 2
	Name = leftPointLoad, index = 3
	Name = ritePointLoad, index = 4
Mapping capsBound attributes ................
	Number of unique capsBound attributes = 4
	Name = upperWing, index = 1
	Name = lowerWing, index = 2
	Name = leftTip, index = 3
	Name = riteTip, index = 4
Mapping capsConnect attributes ................
	Number of unique capsConnect attributes = 0
Mapping capsResponse attributes ................
	Number of unique capsResponse attributes = 0
Mapping capsReference attributes ................
	Number of unique capsReference attributes = 0
Mapping capsGroup attributes ................
	Number of unique capsGroup attributes = 5
	Name = leftWingSkin, index = 1
	Name = wingRib, index = 2
	Name = riteWingSkin, index = 3
	Name = wingSpar1, index = 4
	Name = wingSpar2, index = 5
Setting FEA Data
	Mesh for body = 0
	Number of nodal coordinates = 425
	Number of elements = 482
	Elemental Nodes = 0
	Elemental Rods  = 0
	Elemental Tria3 = 0
	Elemental Quad4 = 482
Aero_Reference value is NULL - No aero reference parameters set

Getting FEA materials.......
	Number of materials - 2
	Material name - Madeupium
	Material name - Unobtainium
	No "materialType" specified for Material tuple Unobtainium, defaulting to "Isotropic"
	Done getting FEA materials

Getting FEA properties.......
	Number of properties - 5
	Property name - leftWingSkin
	Property name - riteWingSkin
	Property name - wingRib
	Property name - wingSpar1
	Property name - wingSpar2
	Done getting FEA properties
Updating mesh element types based on properties input

Getting FEA constraints.......
	Number of constraints - 1
	Constraint name - rootConstraint
	No "constraintType" specified for Constraint tuple rootConstraint, defaulting to "ZeroDisplacement"
	Done getting FEA constraints
Support tuple is NULL - No supports applied
Connect tuple is NULL - Using defaults

Getting FEA loads.......
	Number of loads - 1
	Load name - pressureAero
	No "groupName" specified for Load tuple pressureAero, going to use load name
	Done getting FEA loads
Optimization Control tuple is NULL - Default optimization control is used

Getting FEA optimization control.......
Done getting FEA Optimization Control
Design_Variable tuple is NULL - No design variables applied
Design_Constraint tuple is NULL - No design constraints applied
Analysis tuple is NULL

Getting FEA analyses.......
	Number of analyses - 1
	Analysis name - Default
	Done getting FEA analyses
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'upperWing' Normalized Integrated 'Pressure'
            Rank 0: src = 3.386278e+12, tgt = 3.386278e+12, diff = 1.145576e+03
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'lowerWing' Normalized Integrated 'Pressure'
            Rank 0: src = 1.909061e+12, tgt = 1.909061e+12, diff = 8.266602e+00
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'leftTip' Normalized Integrated 'Pressure'
            Rank 0: src = 8.910657e+08, tgt = 8.910659e+08, diff = 2.631137e+02
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'riteTip' Normalized Integrated 'Pressure'
            Rank 0: src = 4.586933e+08, tgt = 4.586932e+08, diff = 6.994789e+01
Extracting external pressure loads from data transfer....
	TransferName = upperWing
	Number of Elements = 98 (total = 98)
Extracting external pressure loads from data transfer....
	TransferName = lowerWing
	Number of Elements = 98 (total = 196)
Extracting external pressure loads from data transfer....
	TransferName = leftTip
	Number of Elements = 17 (total = 213)
Extracting external pressure loads from data transfer....
	TransferName = riteTip
	Number of Elements = 17 (total = 230)

Writing Astros grid and connectivity file (in free field format) ....
Finished writing Astros grid file

Writing subElement types (if any) - appending mesh file

Writing Astros instruction file....
	Writing analysis cards
	Writing load ADD cards
	Writing constraint cards--each subcase individually
	Writing load cards
	Writing material cards
	Writing property cards
	Writing coordinate system cards

==> Running mASTROS......

==> Running ASTROS post-analysis...

==> Running SU2 pre-analysis...
Writing boundary flags
 - bcProps.surfaceProp[0].surfaceType = 3
 - bcProps.surfaceProp[1].surfaceType = 1
Done boundary flags
Writing SU2 data transfer files
Writing SU2 Motion File - aeroelasticIterative_motion.dat
Warning: The su2 cfg file will be overwritten!
Write SU2 configuration file for version "Harrier (8.0.1)"

==> Running SU2......
/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/io/config.py:933: ResourceWarning: unclosed file <_io.TextIOWrapper name='config_DEF.cfg_tmp' mode='r' encoding='UTF-8'>
  for raw_line in open(temp_filename):
ResourceWarning: Enable tracemalloc to get the object allocation traceback

-------------------------------------------------------------------------
|    ___ _   _ ___                                                      |
|   / __| | | |_  )   Release 8.0.0 "Harrier"                           |
|   \__ \ |_| |/ /                                                      |
|   |___/\___//___|   Suite (Mesh Deformation Code)                     |
|                                                                       |
-------------------------------------------------------------------------
| SU2 Project Website: https://su2code.github.io                        |
|                                                                       |
| The SU2 Project is maintained by the SU2 Foundation                   |
| (http://su2foundation.org)                                            |
-------------------------------------------------------------------------
| Copyright 2012-2023, SU2 Contributors                                 |
|                                                                       |
| SU2 is free software; you can redistribute it and/or                  |
| modify it under the terms of the GNU Lesser General Public            |
| License as published by the Free Software Foundation; either          |
| version 2.1 of the License, or (at your option) any later version.    |
|                                                                       |
| SU2 is distributed in the hope that it will be useful,                |
| but WITHOUT ANY WARRANTY; without even the implied warranty of        |
| MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU      |
| Lesser General Public License for more details.                       |
|                                                                       |
| You should have received a copy of the GNU Lesser General Public      |
| License along with SU2. If not, see <http://www.gnu.org/licenses/>.   |
-------------------------------------------------------------------------

----------------- Physical Case Definition ( Zone 0 ) -------------------
Input mesh file name: ../aflr3/aflr3_CAPS.su2

---------------- Grid deformation parameters ( Zone 0 )  ----------------
Grid deformation using a linear elasticity method.


-------------------- Output Information ( Zone 0 ) ----------------------
Output mesh file name: ../aflr3/aflr3_CAPS.su2. 
Cell stiffness scaled by distance to nearest solid surface.

------------- Config File Boundary Information ( Zone 0 ) ---------------
+-----------------------------------------------------------------------+
|                        Marker Type|                        Marker Name|
+-----------------------------------------------------------------------+
|                         Euler wall|                               BC_1|
+-----------------------------------------------------------------------+
|                          Far-field|                               BC_2|
+-----------------------------------------------------------------------+
Three dimensional problem.
869207 grid points.
4910168 volume elements.
2 surface markers.
151672 boundary elements in index 0 (Marker = BC_1).
36 boundary elements in index 1 (Marker = BC_2).
4910168 tetrahedra.

----------------------- Preprocessing computations ----------------------
Setting local point connectivity.
Checking the numerical grid orientation of the interior elements.
All volume elements are correctly orientend.
All surface elements are correctly orientend.
Identify edges and vertices.
Setting the bound control volume structure.
Volume of the computational grid: 5.96352e+10.
  Info: Ignoring the following volume output fields/groups:
  SOLUTION
Volume output fields: COORDINATES
  Info: Ignoring the following screen output fields:
  RMS_DENSITY, RMS_MOMENTUM-X, RMS_MOMENTUM-Y, RMS_ENERGY, EFFICIENCY
Screen output fields: TIME_ITER, OUTER_ITER, INNER_ITER, CUR_TIME, TIME_STEP, WALL_TIME
  Info: Ignoring the following history output groups:
  RMS_RES, AERO_COEFF
History output group(s): ITER, TIME_DOMAIN, WALL_TIME
Warning: No (valid) fields chosen for convergence monitoring. Convergence monitoring inactive.
Warning: No (valid) fields chosen for time convergence monitoring. Time convergence monitoring inactive.

--------------------- Surface grid deformation (ZONE 0) -----------------
Performing the deformation of the surface grid.
Updating the surface coordinates from the input file.

------------------- Volumetric grid deformation (ZONE 0) ----------------
Performing the deformation of the volumetric grid.

WARNING: Convexity is not checked for 3D elements (issue #1171).


Completed in 4302.415253 seconds on 1 core.

----------------------- Write deformed grid files -----------------------
|SU2 mesh                           |../aflr3/aflr3_CAPS.su2            |
|CSV file                           |surface_deformed.csv               |
|Tecplot binary                     |volume_deformed.szplt              |
|Tecplot binary surface             |surface_deformed.szplt             |
Adding any FFD information to the SU2 file.

------------------------- Finalize Solver -------------------------
Deleted CNumerics container.
Deleted CSolver container.
Deleted CGeometry container.
Deleted CSurfaceMovement class.
Deleted CVolumetricMovement class.
Deleted CConfig container.
Deleted COutput class.

------------------------- Exit Success (SU2_DEF) ------------------------

/home/jenkins/util/SU2/SU2-v8.0.0/bin/SU2/run/interface.py:136: ResourceWarning: unclosed file <_io.BufferedReader name=4>
  run_command(the_Command)
ResourceWarning: Enable tracemalloc to get the object allocation traceback

-------------------------------------------------------------------------
|    ___ _   _ ___                                                      |
|   / __| | | |_  )   Release 8.0.0 "Harrier"                           |
|   \__ \ |_| |/ /                                                      |
|   |___/\___//___|   Suite (Computational Fluid Dynamics Code)         |
|                                                                       |
-------------------------------------------------------------------------
| SU2 Project Website: https://su2code.github.io                        |
|                                                                       |
| The SU2 Project is maintained by the SU2 Foundation                   |
| (http://su2foundation.org)                                            |
-------------------------------------------------------------------------
| Copyright 2012-2023, SU2 Contributors                                 |
|                                                                       |
| SU2 is free software; you can redistribute it and/or                  |
| modify it under the terms of the GNU Lesser General Public            |
| License as published by the Free Software Foundation; either          |
| version 2.1 of the License, or (at your option) any later version.    |
|                                                                       |
| SU2 is distributed in the hope that it will be useful,                |
| but WITHOUT ANY WARRANTY; without even the implied warranty of        |
| MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU      |
| Lesser General Public License for more details.                       |
|                                                                       |
| You should have received a copy of the GNU Lesser General Public      |
| License along with SU2. If not, see <http://www.gnu.org/licenses/>.   |
-------------------------------------------------------------------------

Parsing config file for zone 0

----------------- Physical Case Definition ( Zone 0 ) -------------------
Compressible Euler equations.
Mach number: 0.294118.
Angle of attack (AoA): 0 deg, and angle of sideslip (AoS): 0 deg.
No restart solution, use the values at infinity (freestream).
Dimensional simulation.
The reference area is 4240 m^2.
The semi-span will be computed using the max y(3D) value.
The reference length is 195.346 m.
Reference origin for moment evaluation is (55.4263, 0, 0).
Surface(s) where the force coefficients are evaluated: BC_1.

Surface(s) plotted in the output file: BC_1.
Surface(s) affected by the design variables: BC_1.
Input mesh file name: ../aflr3/aflr3_CAPS.su2

--------------- Space Numerical Integration ( Zone 0 ) ------------------
Roe (with entropy fix = 0.001) solver for the flow inviscid terms.
Standard Roe without low-dissipation function.
Second order integration in space, with slope limiter.
Venkatakrishnan slope-limiting method, with constant: 0.05.
The reference element size is: 1. 
Gradient for upwind reconstruction: inverse-distance weighted Least-Squares.
Gradient for viscous and source terms: inverse-distance weighted Least-Squares.

--------------- Time Numerical Integration  ( Zone 0 ) ------------------
Local time stepping (steady state simulation).
Euler implicit method for the flow equations.
FGMRES is used for solving the linear system.
Using a ILU(0) preconditioning.
Convergence criteria of the linear solver: 1e-06.
Max number of linear iterations: 10.
V Multigrid Cycle, with 2 multigrid levels.
Damping factor for the residual restriction: 0.75.
Damping factor for the correction prolongation: 0.75.
No CFL adaptation.
+-------------------------------------------+
|  MG Level| Presmooth|PostSmooth|CorrectSmo|
+-------------------------------------------+
|         0|         1|         0|         0|
|         1|         2|         0|         0|
|         2|         3|         0|         0|
+-------------------------------------------+
Courant-Friedrichs-Lewy number:       10

------------------ Convergence Criteria  ( Zone 0 ) ---------------------
Maximum number of solver subiterations: 5.
Begin convergence monitoring at iteration 5.
Residual minimum value: 1e-14.
Cauchy series min. value: 1e-10.
Number of Cauchy elements: 100.
Begin windowed time average at iteration 0.

-------------------- Output Information ( Zone 0 ) ----------------------
File writing frequency: 
+------------------------------------+
|                     File| Frequency|
+------------------------------------+
|                  RESTART|       250|
|              SURFACE_CSV|       250|
|                  TECPLOT|       250|
|          SURFACE_TECPLOT|       250|
+------------------------------------+
Writing the convergence history file every 1 inner iterations.
Writing the screen convergence history every 1 inner iterations.
The tabular file format is CSV (.csv).
Convergence history file name: history.
Forces breakdown file name: forces_breakdown_aeroelasticIterative.dat.
Surface file name: surface_flow_aeroelasticIterative.
Volume file name: flow_aeroelasticIterative.
Restart file name: restart_flow_aeroelasticIterative.dat.

------------- Config File Boundary Information ( Zone 0 ) ---------------
+-----------------------------------------------------------------------+
|                        Marker Type|                        Marker Name|
+-----------------------------------------------------------------------+
|                         Euler wall|                               BC_1|
+-----------------------------------------------------------------------+
|                          Far-field|                               BC_2|
+-----------------------------------------------------------------------+

-------------------- Output Preprocessing ( Zone 0 ) --------------------

WARNING: SURFACE_PRESSURE_DROP can only be computed for at least 2 surfaces (outlet, inlet, ...)

Screen output fields: TIME_ITER, OUTER_ITER, INNER_ITER, CUR_TIME, TIME_STEP, WALL_TIME, RMS_DENSITY, RMS_MOMENTUM-X, RMS_MOMENTUM-Y, RMS_ENERGY, EFFICIENCY
History output group(s): ITER, TIME_DOMAIN, WALL_TIME, RMS_RES, AERO_COEFF
Convergence field(s): RMS_DENSITY
Warning: No (valid) fields chosen for time convergence monitoring. Time convergence monitoring inactive.
Volume output fields: COORDINATES, SOLUTION, PRIMITIVE

------------------- Geometry Preprocessing ( Zone 0 ) -------------------
Three dimensional problem.
869207 grid points.
4910168 volume elements.
2 surface markers.
151672 boundary elements in index 0 (Marker = BC_1).
36 boundary elements in index 1 (Marker = BC_2).
4910168 tetrahedra.
Setting point connectivity.
Renumbering points (Reverse Cuthill McKee Ordering).
Recomputing point connectivity.
Setting element connectivity.
Checking the numerical grid orientation.
There has been a re-orientation of 2382008 TETRAHEDRON volume elements.
There has been a re-orientation of 64946 TRIANGLE surface elements.
Identifying edges and vertices.
Setting the control volume structure.
Volume of the computational grid: 1.72845e+11.
Searching for the closest normal neighbors to the surfaces.
Storing a mapping from global to local point index.
Compute the surface curvature.
Max K: 1565.47. Mean K: 3.59992. Standard deviation K: 22.0309.
Checking for periodicity.
Computing mesh quality statistics for the dual control volumes.
+--------------------------------------------------------------+
|           Mesh Quality Metric|        Minimum|        Maximum|
+--------------------------------------------------------------+
|    Orthogonality Angle (deg.)|      0.0334675|        85.2255|
|     CV Face Area Aspect Ratio|        1.10599|    2.42085e+06|
|           CV Sub-Volume Ratio|        1.07739|    3.87319e+09|
+--------------------------------------------------------------+
Setting the multigrid structure.
+-------------------------------------------+
|  MG Level|       CVs|Aggl. Rate|       CFL|
+-------------------------------------------+
|         0|    869207|    1/1.00|        10|
|         1|    142415|     1/6.1|   8.20796|
|         2|     21730|    1/6.55|   6.57902|
+-------------------------------------------+
Finding max control volume width.
Semi-span length = 371.666 m.
Wetted area = 2.59746e+08 m^2.
Area projection in the x-plane = 1.3403e+08 m^2, y-plane = 3.91188e+06 m^2, z-plane = 7.36094e+06 m^2.
Max. coordinate in the x-direction = 144.926 m, y-direction = 371.666 m, z-direction = 5806.15 m.
Min. coordinate in the x-direction = -201.8 m, y-direction = -367.266 m, z-direction = -221.384 m.
Checking if Euler & Symmetry markers are straight/plane:
Boundary marker BC_1 is NOT a single plane.
Computing wall distances.

-------------------- Solver Preprocessing ( Zone 0 ) --------------------
Inviscid flow: Computing density based on free-stream
temperature and pressure using the ideal gas law.
Force coefficients computed using free-stream values.

-- Models:
+------------------------------------------------------------------------------+
|          Viscosity Model|        Conductivity Model|              Fluid Model|
+------------------------------------------------------------------------------+
|                        -|                         -|             STANDARD_AIR|
+------------------------------------------------------------------------------+
-- Fluid properties:
+------------------------------------------------------------------------------+
|                  Name|    Dim. value|    Ref. value|      Unit|Non-dim. value|
+------------------------------------------------------------------------------+
|          Gas Constant|       287.058|             1|  N.m/kg.K|       287.058|
|      Spec. Heat Ratio|             -|             -|         -|           1.4|
+------------------------------------------------------------------------------+
-- Initial and free-stream conditions:
+------------------------------------------------------------------------------+
|                  Name|    Dim. value|    Ref. value|      Unit|Non-dim. value|
+------------------------------------------------------------------------------+
|       Static Pressure|        101325|             1|        Pa|        101325|
|               Density|       1.22498|             1|    kg/m^3|       1.22498|
|           Temperature|        288.15|             1|         K|        288.15|
|          Total Energy|        211798|             1|   m^2/s^2|        211798|
|            Velocity-X|       100.087|             1|       m/s|       100.087|
|            Velocity-Y|             0|             1|       m/s|             0|
|            Velocity-Z|             0|             1|       m/s|             0|
|    Velocity Magnitude|       100.087|             1|       m/s|       100.087|
+------------------------------------------------------------------------------+
|           Mach Number|             -|             -|         -|      0.294118|
+------------------------------------------------------------------------------+
Initialize Jacobian structure (Euler). MG level: 0.
Initialize Jacobian structure (Euler). MG level: 1.
Initialize Jacobian structure (Euler). MG level: 2.

------------------- Numerics Preprocessing ( Zone 0 ) -------------------

----------------- Integration Preprocessing ( Zone 0 ) ------------------

------------------- Iteration Preprocessing ( Zone 0 ) ------------------
Euler/Navier-Stokes/RANS fluid iteration.

------------------------------ Begin Solver -----------------------------

Simulation Run using the Single-zone Driver
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
WARNING: SU2 was not compiled for an AVX-capable architecture. Performance could be better,
         see https://su2code.github.io/docs_v7/Build-SU2-Linux-MacOS/#compiler-optimizations
+----------------------------------------------------------------------------------------------------------------------------------------------+
|   Time_Iter|  Outer_Iter|  Inner_Iter|    Cur_Time|   Time_Step|   Time(sec)|    rms[Rho]|   rms[RhoU]|   rms[RhoV]|   rms[RhoE]|        CEff|
+----------------------------------------------------------------------------------------------------------------------------------------------+
|           0|           0|           0|  0.0000e+00|  0.0000e+00|  3.2138e+01|    6.300992|    9.267332|    9.331274|   11.770098|    0.054126|
|           0|           0|           1|  0.0000e+00|  0.0000e+00|  3.2464e+01|    6.389360|    9.181309|    9.282834|   11.835518|    0.054548|
|           0|           0|           2|  0.0000e+00|  0.0000e+00|  3.2544e+01|    6.474313|    9.201152|    9.295231|   11.928485|    0.054029|
|           0|           0|           3|  0.0000e+00|  0.0000e+00|  3.2593e+01|    6.514608|    9.211385|    9.302044|   11.972766|    0.053798|
|           0|           0|           4|  0.0000e+00|  0.0000e+00|  3.2802e+01|    6.542493|    9.226906|    9.309881|   12.008868|    0.053970|

----------------------------- Solver Exit -------------------------------

Maximum number of iterations reached (ITER = 5) before convergence.
+-----------------------------------------------------------------------+
|      Convergence Field     |     Value    |   Criterion  |  Converged |
+-----------------------------------------------------------------------+
|                    rms[Rho]|       6.54249|         < -14|          No|
+-----------------------------------------------------------------------+
-------------------------------------------------------------------------
+-----------------------------------------------------------------------+
|        File Writing Summary       |              Filename             |
+-----------------------------------------------------------------------+
|SU2 binary restart                 |restart_flow_aeroelasticIterative.dat|

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
|CSV file                           |surface_flow_aeroelasticIterative.csv|

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
|Tecplot binary                     |flow_aeroelasticIterative.szplt    |

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
|Tecplot binary surface             |surface_flow_aeroelasticIterative.szplt|

Writing the forces breakdown file (forces_breakdown_aeroelasticIterative.dat).
+-----------------------------------------------------------------------+
Warning: there are 298 non-physical points in the solution.
Warning: 89 reconstructed states for upwinding are non-physical.

--------------------------- Finalizing Solver ---------------------------
Deleted CNumerics container.
Deleted CIntegration container.
Deleted CSolver container.
Deleted CIteration container.
Deleted CInterface container.
Deleted CGeometry container.
Deleted CFreeFormDefBox class.
Deleted CSurfaceMovement class.
Deleted CVolumetricMovement class.
Deleted CConfig container.
Deleted nInst container.
Deleted COutput class.
-------------------------------------------------------------------------

------------------------- Exit Success (SU2_CFD) ------------------------


==> Running SU2 post-analysis...

==> Running ASTROS pre-analysis...
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'upperWing' Normalized Integrated 'Pressure'
            Rank 0: src = 2.841708e+12, tgt = 2.841708e+12, diff = 1.305566e+01
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'lowerWing' Normalized Integrated 'Pressure'
            Rank 0: src = 2.437758e+12, tgt = 2.437758e+12, diff = 7.556646e+02
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'leftTip' Normalized Integrated 'Pressure'
            Rank 0: src = 8.178489e+08, tgt = 8.178488e+08, diff = 7.905755e+01
Reading SU2 AeroLoad File - surface_flow_aeroelasticIterative.csv
	Number of variables = 16
	Number of data points = 75838
 CAPS Info: Bound 'riteTip' Normalized Integrated 'Pressure'
            Rank 0: src = 7.880075e+08, tgt = 7.880207e+08, diff = 1.314268e+04
Extracting external pressure loads from data transfer....
	TransferName = upperWing
	Number of Elements = 98 (total = 98)
Extracting external pressure loads from data transfer....
	TransferName = lowerWing
	Number of Elements = 98 (total = 196)
Extracting external pressure loads from data transfer....
	TransferName = leftTip
	Number of Elements = 17 (total = 213)
Extracting external pressure loads from data transfer....
	TransferName = riteTip
	Number of Elements = 17 (total = 230)

Writing Astros grid and connectivity file (in free field format) ....
Finished writing Astros grid file

Writing subElement types (if any) - appending mesh file

Writing Astros instruction file....
	Writing analysis cards
	Writing load ADD cards
	Writing constraint cards--each subcase individually
	Writing load cards
	Writing material cards
	Writing property cards
	Writing coordinate system cards

==> Running mASTROS......

==> Running ASTROS post-analysis...
-----------------------------------------------------
Suppressions used:
  count      bytes template
      2         96 *PyFloat_FromDouble*
      3        240 *numpy*
-----------------------------------------------------


real	89m58.686s
user	91m4.494s
sys	10m27.098s
+ status=0
+ set +x

=================================================
data/session10/2_aeroelastic_Iterative_SU2_Astros.py passed (as expected)
=================================================


*************************************************
*************************************************

=================================================
Did not run examples for:

session08 fun3d
session09 nastran
session09 tacs
session11 fun3d+astros
=================================================

All tests pass!

[GNU C Compiler (gcc)] Parsing console log (workspace: '/jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64')
[GNU C Compiler (gcc)] Successfully parsed console log
[GNU C Compiler (gcc)] -> found 0 issues (skipped 0 duplicates)
[GNU C Compiler (gcc)] Skipping post processing
[GNU C Compiler (gcc)] No filter has been set, publishing all 0 issues
[GNU C Compiler (gcc)] Repository miner is not configured, skipping repository mining
[Clang] Parsing console log (workspace: '/jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64')
[Clang] -> found 0 issues (skipped 0 duplicates)
[Clang] Parsing console log (workspace: '/jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64')
[Clang] Skipping post processing
[Clang] No filter has been set, publishing all 0 issues
[Clang] Repository miner is not configured, skipping repository mining
[Static Analysis] Successfully parsed console log
[Static Analysis] -> found 0 issues (skipped 0 duplicates)
[Static Analysis] Parsing console log (workspace: '/jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64')
[Static Analysis] Successfully parsed console log
[Static Analysis] -> found 0 issues (skipped 0 duplicates)
[Static Analysis] Skipping post processing
[Static Analysis] No filter has been set, publishing all 0 issues
[Static Analysis] Repository miner is not configured, skipping repository mining
[Static Analysis] Parsing console log (workspace: '/jenkins/workspace/ESP_MemcheckCaps/7.8/CAPS/training/LINUX64')
[Static Analysis] Skipping post processing
[Static Analysis] No filter has been set, publishing all 0 issues
[Static Analysis] Repository miner is not configured, skipping repository mining
[Static Analysis] Reference build recorder is not configured
[Static Analysis] No valid reference build found
[Static Analysis] All reported issues will be considered outstanding
[Static Analysis] No quality gates have been set - skipping
[Static Analysis] Health report is disabled - skipping
[Static Analysis] Created analysis result for 0 issues (found 0 new issues, fixed 0 issues)
[Static Analysis] Attaching ResultAction with ID 'analysis' to build 'ESP_MemcheckCaps/CASREV=7.8,ESPTEST=CAPS/training,ESP_ARCH=LINUX64,buildnode=reynolds #1419'.
[Checks API] No suitable checks publisher found.
Build step 'Console output (build log) parsing' changed build result to FAILURE
[PostBuildScript] - [INFO] Executing post build scripts.
[PostBuildScript] - [INFO] build step #0 should only be executed on MATRIX
[WS-CLEANUP] Deleting project workspace...
[WS-CLEANUP] Skipped based on build state FAILURE
Finished: FAILURE