There is not enough memory for the Distributed Sparse Matrix Solver to proceed using the out-of-core
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November 2, 2021 at 7:15 am
bharath_reddy1
SubscriberTrying to analyze a structural module for large deflections and got the below error.
 *** ERROR ***              CP =   731.672  TIME= 23:34:24
 There is not enough memory for the Distributed Sparse Matrix Solver to proceed using the out-of-core memory mode. The total memory required by all processes = 805117 MB. The total physical memory that is available on the system = 15403 MB. Please decrease the model size, or run this model on another system with more physical memory.
The same model ran successfully when the large deflections option is off.
We have multiple base load cases and with large deflections 'on', some cases it is solving successfully but some it is throwing out the memory error.
The error is very strange and it is asking for 805GB. System RAM is 16GB and in Hard-disk around 220 GB space is free.
Kindly help me in resolving the issue.
November 5, 2021 at 3:28 pmGary_S
Ansys EmployeeHello
This usually indicates the model is not constrained. Try adding some fixed supports to see if you can at least get a solution to see where the problem is.
November 8, 2021 at 7:46 pmmrife
Ansys EmployeeHi @bharath_reddy1 also did the linear solve (large deflections turned off) use the Iterative solver? It requires about an order of magnitude less RAM than the Direct (Sparse) does. You can try specifying the solver type to be Iterative in the Details of the Analysis Settings, on the large deflection model, and see if it will solve or not.
Mike
November 9, 2021 at 6:15 ambharath_reddy1
SubscriberHi Mike,
Thank you for response. Next time we will use the option that you have suggested.
However, I did a try with an increase tolerance to 2% and it solved all the load cases. Please see below screen shots of the analysis settings. Please advise any changes we can make to improve the solver time and maintaining the accuracy in results.
Also advise on the help document where i can find the use of different options available in Newton-Raphson. Currently i have randomly selected as unsymmetrical
Please see the image below on the Analysis model that i am trying to solve. It is having (a) basic load cases and (b) solution combinations in it. To solve basic loads cases - for each case it is taking more than 1 hour.
This is the 1st time i am using Ansys to perform analysis for these kind of structures (We regularly use SACS for these king of global analysis). My experience in Ansys is just since last 45 days. I have developed ansys load cases and combinations based on past SACS experience. Please advise if there is any betterway to handle these things in Ansys so that the solution time can be reduced.
Please let me know if you need analysis files for your review.
Best regards Bharath
May 15, 2023 at 7:14 pmLUC ARNAUD KAKOU
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License Manager 2022 R2 Discovery 2022 R2 Â SpaceClaim 2022 R2 Â Ansys Sherlock 2022 R2 Â Autodyn 2022 R2 LS-DYNA 2022 R2 CFD-Post only 2022 R2 Â CFX (includes CFD-Post) 2022 R2 Chemkin 2022 R2 FENSAP-ICE 2022 R2 Â Fluent (includes CFD-Post) 2022 R2 Â Polyflow (includes CFD-Post) 2022 R2 Forte (includes EnSight) 2022 R2 TurboGrid 2022 R2 Â ICEM CFD 2022 R2 Aqwa 2022 R2 optiSLang 2022 R2 Â Additive 2022 R2 Customization Files for User Programmable Features 2022 R2 Â Mechanical Products 2022 R2 Remote Solve Manager Standalone Services 2022 R2 Viewer 2022 R2 Â ACIS Geometry Interface 2022 R2 AutoCAD Geometry Interface 2022 R2 Â Catia, Version 4 Geometry Interface 2022 R2 Catia, Version 5 Geometry Interface 2022 R2 Catia, Version 6 Geometry Interface 2022 R2 Creo Elements/Direct Modeling Geometry Interface 2022 R2 Creo Parametric Geometry Interface 2022 R2 Â Inventor Geometry Interface 2022 R2 JTOpen Geometry Interface 2022 R2 Â NX Geometry Interface 2022 R2 Â Parasolid Geometry Interface 2022 R2 Â Solid Edge Geometry Interface 2022 R2 Â SOLIDWORKS Geometry Interface 2022 R2 Â     ***** MAPDL COMMAND LINE ARGUMENTS ***** BATCH MODE REQUESTED (-b)  = NOLIST INPUT FILE COPY MODE (-c)  = COPY DISTRIBUTED MEMORY PARALLEL REQUESTED    4 PARALLEL PROCESSES REQUESTED WITH SINGLE THREAD PER PROCESS  TOTAL OF   4 CORES REQUESTED INPUT FILE NAME       = D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617\dummy.dat OUTPUT FILE NAME       = D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617\solve.out START-UP FILE MODE      = NOREAD STOP FILE MODE        = NOREAD RELEASE= 2022 R2       BUILD= 22.2   UP20220516  VERSION=WINDOWS x64 CURRENT JOBNAME=file0 20:09:04 MAY 15, 2023 CP=   0.031 PARAMETER _DS_PROGRESS =   999.0000000  Â /INPUT FILE= ds.dat LINE=    0 *** NOTE ***              CP =    0.172  TIME= 20:09:04 The /CONFIG,NOELDB command is not valid in a distributed memory    Â parallel solution. Command is ignored.                Â *GET _WALLSTRT FROM ACTI ITEM=TIME WALL VALUE= 20.1511111  Â TITLE= RIC--Thermique stationnaire (B5)                       Â ACT Extensions:   LSDYNA, 2022.2   5f463412-bd3e-484b-87e7-cbc0a665e474, wbex /COM,   ANSYSMotion, 2022.2   20180725-3f81-49eb-9f31-41364844c769, wbex Â SET PARAMETER DIMENSIONS ON _WB_PROJECTSCRATCH_DIR TYPE=STRI DIMENSIONS=   248    1    1 PARAMETER _WB_PROJECTSCRATCH_DIR(1) = D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617\ SET PARAMETER DIMENSIONS ON _WB_SOLVERFILES_DIR TYPE=STRI DIMENSIONS=   248    1    1 PARAMETER _WB_SOLVERFILES_DIR(1) = D:\LUC\VT4x4\VT4x4_RIC\RIC_files\dp0\SYS-22\MECH\ SET PARAMETER DIMENSIONS ON _WB_USERFILES_DIR TYPE=STRI DIMENSIONS=   248    1    1 PARAMETER _WB_USERFILES_DIR(1) = D:\LUC\VT4x4\VT4x4_RIC\RIC_files\user_files\ --- Data in consistent uMKS units. 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Elements for Body 283 "BCB3" *********** *********** Elements for Body 284 "METTALISATION9" *********** *********** Elements for Body 285 "METTALISATION24" *********** *********** Elements for Body 286 "METTALISATION36" *********** *********** Elements for Body 287 "METTALISATION24" *********** *********** Elements for Body 288 "SIN12" *********** *********** Elements for Body 289 "SIN222" *********** *********** Elements for Body 290 "SIN212" *********** *********** Elements for Body 291 "SIN13" *********** *********** Elements for Body 292 "SIN223" *********** *********** Elements for Body 293 "SIN213" *********** *********** Elements for Body 294 "SIN14" *********** *********** Elements for Body 295 "SIN224" *********** *********** Elements for Body 296 "SIN214" *********** *********** Elements for Body 297 "SIN15" *********** *********** Elements for Body 298 "SIN225" *********** *********** Elements for Body 299 "SIN215" *********** *********** Elements for Body 300 "SIN16" *********** *********** Elements for Body 301 "SIN226" *********** *********** Elements for Body 302 "SIN216" *********** *********** Elements for Body 303 "SIN17" *********** *********** Elements for Body 304 "SIN227" *********** *********** Elements for Body 305 "SIN217" *********** *********** Elements for Body 306 "SIN18" *********** *********** Elements for Body 307 "SIN228" *********** *********** Elements for Body 308 "SIN218" *********** *********** Elements for Body 309 "GRILLE221_8x60_m" *********** *********** Elements for Body 310 "GRILLE222_8x60_m" *********** *********** Elements for Body 311 "GRILLE223_8x60_m" *********** *********** Elements for Body 312 "GRILLE224_8x60_m" *********** *********** Elements for Body 313 "GRILLE225_8x60_m" *********** *********** Elements for Body 314 "GRILLE226_8x60_m" *********** *********** Elements for Body 315 "GRILLE227_8x60_m" *********** *********** Elements for Body 316 "GRILLE228_8x60_m" *********** *********** Elements for Body 317 "GRILLE211_8x60_m" *********** *********** Elements for Body 318 "GRILLE212_8x60_m" *********** *********** Elements for Body 319 "GRILLE213_8x60_m" *********** *********** Elements for Body 320 "GRILLE214_8x60_m" *********** *********** Elements for Body 321 "GRILLE215_8x60_m" *********** *********** Elements for Body 322 "GRILLE216_8x60_m" *********** *********** Elements for Body 323 "GRILLE217_8x60_m" *********** *********** Elements for Body 324 "GRILLE218_8x60_m" *********** *********** Send User Defined Coordinate System(s) *********** *********** Send Materials *********** *********** Send Named Selection as Element Component *********** *********** Send Named Selection as Element Component *********** *********** Send Named Selection as Node Component *********** *********** Send Named Selection as Node Component *********** *********** Send Named Selection as Node Component *********** *********** Send Named Selection as Node Component *********** *********** Send Named Selection as Element Component *********** *********** Define Temperature Constraint *********** *********** Create "Débit de chaleur" *********** *********** Create "Débit de chaleur 2" *********** *********** Create "Débit de chaleur 3" *********** ***************** Define Uniform Initial temperature *************** ***** ROUTINE COMPLETED ***** CP =    627.406 --- Number of total nodes = 12708931 --- Number of contact elements = 112943 --- Number of spring elements = 0 --- Number of bearing elements = 0 --- Number of solid elements = 74133495 --- Number of condensed parts = 0 --- Number of total elements = 74246438 *GET _WALLBSOL FROM ACTI ITEM=TIME WALL VALUE= 20.2377778  Â **************************************************************************** *************************  SOLUTION    ******************************** **************************************************************************** ***** MAPDL SOLUTION ROUTINE ***** PERFORM A STATIC ANALYSIS THIS WILL BE A NEW ANALYSIS USE PRECONDITIONED CONJUGATE GRADIENT SOLVER CONVERGENCE TOLERANCE = 1.00000E-08 MAXIMUM ITERATION   = NumNode*DofPerNode* 1.0000  Â CONTACT INFORMATION PRINTOUT LEVEL    1 DO NOT SAVE ANY RESTART FILES AT ALL DO NOT COMBINE ELEMENT MATRIX FILES (.emat) AFTER DISTRIBUTED PARALLEL SOLUTION DO NOT COMBINE ELEMENT SAVE DATA FILES (.esav) AFTER DISTRIBUTED PARALLEL SOLUTION **************************************************** ******************* SOLVE FOR LS 1 OF 1 **************** SPECIFIED CONSTRAINT TEMP FOR PICKED NODES REAL= 25.0000000    IMAG= 0.00000000  Â SELECT    FOR ITEM=TYPE COMPONENT=  Â IN RANGE    325 TO    325 STEP     1   37636 ELEMENTS (OF  74246438 DEFINED) SELECTED BY ESEL COMMAND. SELECT   ALL NODES HAVING ANY ELEMENT IN ELEMENT SET.   28235 NODES (OF  12708931 DEFINED) SELECTED FROM  37636 SELECTED ELEMENTS BY NSLE COMMAND. GENERATE SURFACE LOAD HFLU ON SURFACE DEFINED BY ALL SELECTED NODES VALUE = 2.430555556E+10 NUMBER OF HFLU ELEMENT FACE LOADS STORED =   37636 SELECT    FOR ITEM=TYPE COMPONENT=  Â IN RANGE    326 TO    326 STEP     1   37657 ELEMENTS (OF  74246438 DEFINED) SELECTED BY ESEL COMMAND. SELECT   ALL NODES HAVING ANY ELEMENT IN ELEMENT SET.   28249 NODES (OF  12708931 DEFINED) SELECTED FROM  37657 SELECTED ELEMENTS BY NSLE COMMAND. GENERATE SURFACE LOAD HFLU ON SURFACE DEFINED BY ALL SELECTED NODES VALUE = 2.430555556E+10 NUMBER OF HFLU ELEMENT FACE LOADS STORED =   37657 SELECT    FOR ITEM=TYPE COMPONENT=  Â IN RANGE    327 TO    327 STEP     1   37650 ELEMENTS (OF  74246438 DEFINED) SELECTED BY ESEL COMMAND. SELECT   ALL NODES HAVING ANY ELEMENT IN ELEMENT SET.   28244 NODES (OF  12708931 DEFINED) SELECTED FROM  37650 SELECTED ELEMENTS BY NSLE COMMAND. GENERATE SURFACE LOAD HFLU ON SURFACE DEFINED BY ALL SELECTED NODES VALUE = 2.430555556E+10 NUMBER OF HFLU ELEMENT FACE LOADS STORED =   37650 ALL SELECT  FOR ITEM=NODE COMPONENT=  Â IN RANGE     1 TO  12708931 STEP     1  12708931 NODES (OF  12708931 DEFINED) SELECTED BY NSEL COMMAND. ALL SELECT  FOR ITEM=ELEM COMPONENT=  Â IN RANGE     1 TO  85543138 STEP     1  74246438 ELEMENTS (OF  74246438 DEFINED) SELECTED BY ESEL COMMAND. PRINTOUT RESUMED BY /GOP USE AUTOMATIC TIME STEPPING THIS LOAD STEP USE    1 SUBSTEPS INITIALLY THIS LOAD STEP FOR ALL DEGREES OF FREEDOM FOR AUTOMATIC TIME STEPPING:  USE   10 SUBSTEPS AS A MAXIMUM  USE   1 SUBSTEPS AS A MINIMUM TIME= 1.0000  Â ERASE THE CURRENT DATABASE OUTPUT CONTROL TABLE. WRITE ALL ITEMS TO THE DATABASE WITH A FREQUENCY OF NONE  FOR ALL APPLICABLE ENTITIES WRITE NSOL ITEMS TO THE DATABASE WITH A FREQUENCY OF ALL  FOR ALL APPLICABLE ENTITIES WRITE RSOL ITEMS TO THE DATABASE WITH A FREQUENCY OF ALL  FOR ALL APPLICABLE ENTITIES WRITE EANG ITEMS TO THE DATABASE WITH A FREQUENCY OF ALL  FOR ALL APPLICABLE ENTITIES WRITE VENG ITEMS TO THE DATABASE WITH A FREQUENCY OF ALL  FOR ALL APPLICABLE ENTITIES WRITE FFLU ITEMS TO THE DATABASE WITH A FREQUENCY OF ALL  FOR ALL APPLICABLE ENTITIES WRITE CONT ITEMS TO THE DATABASE WITH A FREQUENCY OF ALL  FOR ALL APPLICABLE ENTITIES CONVERGENCE ON HEAT BASED ON THE NORM OF THE N-R LOAD  WITH A TOLERANCE OF 0.1000E-02 AND A MINIMUM REFERENCE VALUE OF 0.1000E+07  USING THE L2 NORM (CHECK THE SRSS VALUE) *GET ANSINTER_ FROM ACTI ITEM=INT    VALUE= 0.00000000  Â *IF ANSINTER_             ( =  0.00000   ) NE Â   0                 ( =  0.00000   ) THEN  Â *ENDIF *** NOTE ***              CP =  1202.906  TIME= 20:18:39 The automatic domain decomposition logic has selected the MESH domain Â decomposition method with 4 processes per solution.          Â ***** MAPDL SOLVE  COMMAND ***** *** WARNING ***             CP =  1230.906  TIME= 20:18:47 Element shape checking is currently inactive. Issue SHPP,ON or    Â SHPP,WARN to reactivate, if desired.                  Â *** NOTE ***              CP =  1724.547  TIME= 20:21:28 The model data was checked and warning messages were found.      Â Please review output or errors file (                 Â D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617\file0.err ) for these  Â warning messages.                           Â *** MAPDL - ENGINEERING ANALYSIS SYSTEM RELEASE 2022 R2     22.2   *** Ansys Mechanical Enterprise Academic Research  Â 00000000 VERSION=WINDOWS x64  20:21:45 MAY 15, 2023 CP=  1741.766 RIC--Thermique stationnaire (B5)                       Â            S O L U T I O N  O P T I O N S  PROBLEM DIMENSIONALITY. . . . . . . . . . . . .3-D         Â  DEGREES OF FREEDOM. . . . . . TEMP  ANALYSIS TYPE . . . . . . . . . . . . . . . . .STATIC (STEADY-STATE)  OFFSET TEMPERATURE FROM ABSOLUTE ZERO . . . . . 273.15  Â  EQUATION SOLVER OPTION. . . . . . . . . . . . .PCG        Â   TOLERANCE. . . . . . . . . . . . . . . . . . 1.00000E-08  NEWTON-RAPHSON OPTION . . . . . . . . . . . . .PROGRAM CHOSEN Â  GLOBALLY ASSEMBLED MATRIX . . . . . . . . . . .SYMMETRIC Â *** WARNING ***             CP =  1783.016  TIME= 20:22:27 Material number 325 (used by element 85430196) should normally have at Â least one MP or one TB type command associated with it. Output of   Â energy by material may not be available.                Â *** NOTE ***              CP =  1822.875  TIME= 20:22:40 The step data was checked and warning messages were found.       Â Please review output or errors file (                 Â D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617\file0.err ) for these  Â warning messages.                           Â *** NOTE ***              CP =  1822.875  TIME= 20:22:40 This nonlinear analysis defaults to using the full Newton-Raphson   Â solution procedure. This can be modified using the NROPT command.   Â *** NOTE ***              CP =  1822.875  TIME= 20:22:40 The conditions for direct assembly have been met. No .emat or .erot  Â files will be produced.                        Â     D I S T R I B U T E D  D O M A I N  D E C O M P O S E R Â ...Number of elements: 74246438 ...Number of nodes:  12708931 ...Decompose to 4 CPU domains ...Element load balance ratio =   1.001           L O A D  S T E P  O P T I O N S  LOAD STEP NUMBER. . . . . . . . . . . . . . . .   1  TIME AT END OF THE LOAD STEP. . . . . . . . . . 1.0000  Â  AUTOMATIC TIME STEPPING . . . . . . . . . . . .  ON   INITIAL NUMBER OF SUBSTEPS . . . . . . . . .   1   MAXIMUM NUMBER OF SUBSTEPS . . . . . . . . .  10   MINIMUM NUMBER OF SUBSTEPS . . . . . . . . .   1  MAXIMUM NUMBER OF EQUILIBRIUM ITERATIONS. . . .  15  STEP CHANGE BOUNDARY CONDITIONS . . . . . . . .  NO  TERMINATE ANALYSIS IF NOT CONVERGED . . . . . .YES (EXIT) Â  NODAL DOF SOLUTION LIMIT. . . . . . . . . . . . 0.10000E+10  CONVERGENCE CONTROLS   LABEL  REFERENCE  TOLERANCE NORM   MINREF    HEAT  0.000    0.1000E-02  2   0.1000E+07  PRINT OUTPUT CONTROLS . . . . . . . . . . . . .NO PRINTOUT  DATABASE OUTPUT CONTROLS   ITEM   FREQUENCY  COMPONENT    ALL    NONE       Â   NSOL    ALL       Â   RSOL    ALL       Â   EANG    ALL       Â   VENG    ALL       Â   FFLU    ALL       Â   CONT    ALL       Â SOLUTION MONITORING INFO IS WRITTEN TO FILE= file.mntr                                                                                                                             Â *** NOTE ***              CP =  2625.219  TIME= 20:30:56 The PCG solver has automatically set the level of difficulty for this Â model to 1.                              Â      **** CENTER OF MASS, MASS, AND MASS MOMENTS OF INERTIA **** CALCULATIONS ASSUME ELEMENT MASS AT ELEMENT CENTROID TOTAL MASS = 0.73731E-05              MOM. OF INERTIA     MOM. OF INERTIA CENTER OF MASS      ABOUT ORIGIN    ABOUT CENTER OF MASS XC =  2376.5     IXX =  52.55     IXX =  12.33  Â YC =  2335.5     IYY =  53.98     IYY =  12.33  Â ZC = -1.0047     IZZ =  106.4     IZZ =  24.54  Â             IXY =  -40.80     IXY =  0.1214  Â             IYZ =  0.3993E-02   IYZ = -0.1331E-01             IZX =  0.3033E-01   IZX =  0.1272E-01 *** MASS SUMMARY BY ELEMENT TYPE *** TYPE   MASS   1 0.593948E-08   2 0.593835E-08   3 0.593856E-08   4 0.593984E-08   5 0.593828E-08   6 0.593995E-08   7 0.593848E-08   8 0.593866E-08   9 0.593821E-08  10 0.593893E-08  11 0.593780E-08  12 0.593792E-08  13 0.593783E-08  14 0.593911E-08  15 0.594010E-08  16 0.593867E-08  17 0.593881E-08  18 0.593844E-08  19 0.593743E-08  20 0.594043E-08  21 0.593973E-08  22 0.593826E-08  23 0.594147E-08  24 0.593877E-08  25 0.593704E-08  26 0.593912E-08  27 0.593987E-08  28 0.593864E-08  29 0.593891E-08  30 0.593710E-08  31 0.593821E-08  32 0.593797E-08  33 0.593951E-08  34 0.594101E-08  35 0.594054E-08  36 0.593826E-08  37 0.593788E-08  38 0.832536E-08  39 0.141638E-06  40 0.307863E-05  41 0.118898E-05  42 0.967688E-09  43 0.967570E-09  44 0.967813E-09  45 0.967979E-09  46 0.967715E-09  47 0.967762E-09  48 0.967783E-09  49 0.967920E-09  50 0.967712E-09  51 0.967652E-09  52 0.967830E-09  53 0.967307E-09  54 0.967649E-09  55 0.968013E-09  56 0.967766E-09  57 0.967794E-09  58 0.967634E-09  59 0.967848E-09  60 0.967628E-09  61 0.967678E-09  62 0.967781E-09  63 0.967929E-09  64 0.968000E-09  65 0.967715E-09  66 0.967505E-09  67 0.967692E-09  68 0.968285E-09  69 0.967892E-09  70 0.967485E-09  71 0.967644E-09  72 0.967858E-09  73 0.967774E-09  74 0.967501E-09  75 0.967775E-09  76 0.967626E-09  77 0.967816E-09  78 0.967880E-09  79 0.967796E-09  80 0.967626E-09  81 0.967779E-09  82 0.967789E-09  83 0.967738E-09  84 0.967750E-09  85 0.967971E-09  86 0.967813E-09  87 0.127245E-08  88 0.127245E-08  89 0.127245E-08  90 0.127245E-08  91 0.127245E-08  92 0.127245E-08  93 0.127245E-08  94 0.127245E-08  95 0.127245E-08  96 0.127245E-08  97 0.127245E-08  98 0.127245E-08  99 0.127245E-08  100 0.127245E-08  101 0.127245E-08  102 0.127245E-08  103 0.127245E-08  104 0.127245E-08  105 0.127245E-08  106 0.127245E-08  107 0.127245E-08  108 0.127245E-08  109 0.127245E-08  110 0.127245E-08  111 0.127245E-08  112 0.127245E-08  113 0.127245E-08  114 0.127245E-08  115 0.127245E-08  116 0.127245E-08  117 0.127245E-08  118 0.127245E-08  119 0.731910E-07  120 0.731539E-07  121 0.731672E-07  122 0.731993E-07  123 0.731650E-07  124 0.731552E-07  125 0.731995E-07  126 0.731954E-07  127 0.731884E-07  128 0.731385E-07  129 0.731970E-07  130 0.731763E-07  131 0.731666E-07  132 0.731327E-07  133 0.732463E-07  134 0.731206E-07  135 0.731114E-07  136 0.732190E-07  137 0.731302E-07  138 0.730509E-07  139 0.731294E-07  140 0.732181E-07  141 0.731502E-07  142 0.731972E-07  143 0.731402E-07  144 0.731778E-07  145 0.731636E-07  146 0.731278E-07  147 0.731652E-07  148 0.731642E-07  149 0.731946E-07  150 0.731683E-07  151 0.939560E-09  152 0.607560E-09  153 0.149400E-09  154 0.149400E-09  155 0.244409E-08  156 0.157738E-08  157 0.707361E-08  158 0.557317E-08  159 0.284570E-08  160 0.157738E-08  161 0.374954E-08  162 0.281603E-08  163 0.157738E-08  164 0.704385E-08  165 0.304586E-08  166 0.292299E-08  167 0.317526E-08  168 0.286444E-08  169 0.319589E-08  170 0.291424E-08  171 0.157738E-08  172 0.340494E-08  173 0.273300E-08  174 0.270589E-08  175 0.338950E-08  176 0.415807E-08  177 0.545091E-08  178 0.373570E-08  179 0.157738E-08  180 0.293416E-08  181 0.320559E-08  182 0.586957E-08  183 0.319166E-08  184 0.279430E-08  185 0.425343E-08  186 0.288393E-08  187 0.104457E-08  188 0.826812E-10  189 0.104462E-08  190 0.826812E-10  191 0.106551E-08  192 0.243214E-09  193 0.988481E-08  194 0.211582E-08  195 0.163792E-08  196 0.143143E-08  197 0.801616E-08  198 0.672412E-10  199 0.690022E-10  200 0.340436E-09  201 0.283336E-08  202 0.232492E-08  203 0.142088E-08  204 0.183791E-08  205 0.338836E-09  206 0.228637E-08  207 0.273610E-08  208 0.803599E-08  209 0.662222E-09  210 0.667626E-09  211 0.154709E-09  212 0.322696E-10  213 0.322696E-10  214 0.322696E-10  215 0.322696E-10  216 0.312820E-08  217 0.155479E-08  218 0.111233E-08  219 0.156931E-08  220 0.209389E-08  221 0.206400E-08  222 0.222635E-08  223 0.311395E-08  224 0.186863E-08  225 0.222635E-08  226 0.126579E-08  227 0.751465E-09  228 0.222635E-08  229 0.182587E-08  230 0.181825E-08  231 0.222635E-08  232 0.430100E-08  233 0.185602E-08  234 0.185602E-08  235 0.222635E-08  236 0.185602E-08  237 0.949131E-08  238 0.181347E-08  239 0.222635E-08  240 0.342113E-08  241 0.322696E-10  242 0.322696E-10  243 0.322696E-10  244 0.322696E-10  245 0.312820E-08  246 0.709863E-12  247 0.709863E-12  248 0.709863E-12  249 0.613740E-13  250 0.613740E-13  251 0.613740E-13  252 0.613740E-13  253 0.613740E-13  254 0.613740E-13  255 0.613740E-13  256 0.613740E-13  257 0.157675E-11  258 0.157675E-11  259 0.157675E-11  260 0.157675E-11  261 0.157675E-11  262 0.157675E-11  263 0.157675E-11  264 0.157675E-11  265 0.157675E-11  266 0.157675E-11  267 0.157675E-11  268 0.157675E-11  269 0.157675E-11  270 0.157675E-11  271 0.157675E-11  272 0.157675E-11  273 0.157675E-11  274 0.157675E-11  275 0.157675E-11  276 0.157675E-11  277 0.157675E-11  278 0.157675E-11  279 0.157675E-11  280 0.157675E-11  281 0.129444E-08  282 0.129444E-08  283 0.129444E-08  284 0.769403E-07  285 0.173158E-08  286 0.227649E-08  287 0.134216E-08  288 0.709863E-12  289 0.709863E-12  290 0.709863E-12  291 0.709863E-12  292 0.709863E-12  293 0.709863E-12  294 0.709863E-12  295 0.709863E-12  296 0.709863E-12  297 0.709863E-12  298 0.709863E-12  299 0.709863E-12  300 0.709863E-12  301 0.709863E-12  302 0.709863E-12  303 0.709863E-12  304 0.709863E-12  305 0.709863E-12  306 0.709863E-12  307 0.709863E-12  308 0.709863E-12  309 0.613740E-13  310 0.613740E-13  311 0.613740E-13  312 0.613740E-13  313 0.613740E-13  314 0.613740E-13  315 0.613740E-13  316 0.613740E-13  317 0.613740E-13  318 0.613740E-13  319 0.613740E-13  320 0.613740E-13  321 0.613740E-13  322 0.613740E-13  323 0.613740E-13  324 0.613740E-13 Range of element maximum matrix coefficients in global coordinates Maximum = 2.088366701E+12 at element 34000791.             Â Minimum = 27440.8025 at element 47906535.               Â  *** ELEMENT MATRIX FORMULATION TIMES   TYPE  NUMBER  ENAME   TOTAL CP AVE CP    1   14759 SOLID278   0.234  0.000016    2   14765 SOLID278   0.234  0.000016    3   14808 SOLID278   0.266  0.000018    4   14930 SOLID278   0.219  0.000015    5   14480 SOLID278   0.312  0.000022    6   14559 SOLID278   0.234  0.000016    7   14522 SOLID278   0.219  0.000015    8   14490 SOLID278   0.406  0.000028    9   14436 SOLID278   0.328  0.000023    10   14526 SOLID278   0.203  0.000014    11   14541 SOLID278   0.281  0.000019    12   14675 SOLID278   0.281  0.000019    13   14796 SOLID278   0.484  0.000033    14   14872 SOLID278   0.406  0.000027    15   14915 SOLID278   0.234  0.000016    16   14676 SOLID278   0.375  0.000026    17   14806 SOLID278   0.250  0.000017    18   14876 SOLID278   0.516  0.000035    19   14541 SOLID278   0.234  0.000016    20   14956 SOLID278   0.344  0.000023    21   14739 SOLID278   0.250  0.000017    22   15116 SOLID278   0.172  0.000011    23   14758 SOLID278   0.234  0.000016    24   14701 SOLID278   0.281  0.000019    25   14322 SOLID278   0.219  0.000015    26   14636 SOLID278   0.250  0.000017    27   14738 SOLID278   0.250  0.000017    28   14551 SOLID278   0.359  0.000025    29   14522 SOLID278   0.125  0.000009    30   14410 SOLID278   0.344  0.000024    31   14341 SOLID278   0.266  0.000019    32   14751 SOLID278   0.375  0.000025    33   16247 SOLID278   0.422  0.000026    34   15000 SOLID278   0.188  0.000013    35   15073 SOLID278   0.375  0.000025    36   14770 SOLID278   0.359  0.000024    37   14501 SOLID278   0.344  0.000024    38 10560254 SOLID278  231.469  0.000022    39 11490626 SOLID278  254.844  0.000022    40 10953311 SOLID278  236.781  0.000022    41  451565 SOLID278   10.219  0.000023    42   4730 SOLID278   0.094  0.000020    43   4701 SOLID278   0.078  0.000017    44   4715 SOLID278   0.125  0.000027    45   4783 SOLID278   0.094  0.000020    46   4766 SOLID278   0.203  0.000043    47   4892 SOLID278   0.109  0.000022    48   4846 SOLID278   0.031  0.000006    49   4862 SOLID278   0.188  0.000039    50   4701 SOLID278   0.141  0.000030    51   4731 SOLID278   0.125  0.000026    52   4776 SOLID278   0.094  0.000020    53   4688 SOLID278   0.094  0.000020    54   4663 SOLID278   0.141  0.000030    55   4664 SOLID278   0.125  0.000027    56   4650 SOLID278   0.078  0.000017    57   4793 SOLID278   0.016  0.000003    58   4753 SOLID278   0.109  0.000023    59   4900 SOLID278   0.078  0.000016    60   4852 SOLID278   0.062  0.000013    61   4720 SOLID278   0.094  0.000020    62   4688 SOLID278   0.156  0.000033    63   4760 SOLID278   0.094  0.000020    64   4762 SOLID278   0.062  0.000013    65   4559 SOLID278   0.109  0.000024    66   4667 SOLID278   0.047  0.000010    67   4747 SOLID278   0.109  0.000023    68   4957 SOLID278   0.062  0.000013    69   4828 SOLID278   0.062  0.000013    70   4832 SOLID278   0.109  0.000023    71   4742 SOLID278   0.031  0.000007    72   4831 SOLID278   0.156  0.000032    73   4866 SOLID278   0.109  0.000022    74   4692 SOLID278   0.156  0.000033    75   4634 SOLID278   0.062  0.000013    76   4834 SOLID278   0.141  0.000029    77   4698 SOLID278   0.141  0.000030    78   4724 SOLID278   0.062  0.000013    79   4675 SOLID278   0.141  0.000030    80   4748 SOLID278   0.094  0.000020    81   4673 SOLID278   0.125  0.000027    82   4944 SOLID278   0.094  0.000019    83   4747 SOLID278   0.094  0.000020    84   4749 SOLID278   0.125  0.000026    85   4776 SOLID278   0.141  0.000029    86   4824 SOLID278   0.125  0.000026    87   8906 SOLID278   0.203  0.000023    88   8909 SOLID278   0.172  0.000019    89   8977 SOLID278   0.141  0.000016    90   9003 SOLID278   0.188  0.000021    91   9137 SOLID278   0.203  0.000022    92   9020 SOLID278   0.203  0.000023    93   8868 SOLID278   0.188  0.000021    94   8937 SOLID278   0.156  0.000017    95   8819 SOLID278   0.188  0.000021    96   8987 SOLID278   0.156  0.000017    97   8724 SOLID278   0.109  0.000013    98   9003 SOLID278   0.141  0.000016    99   9085 SOLID278   0.188  0.000021   100   9010 SOLID278   0.312  0.000035   101   8953 SOLID278   0.172  0.000019   102   9035 SOLID278   0.141  0.000016   103   8946 SOLID278   0.203  0.000023   104   9042 SOLID278   0.094  0.000010   105   9043 SOLID278   0.203  0.000022   106   8869 SOLID278   0.219  0.000025   107   8879 SOLID278   0.297  0.000033   108   8689 SOLID278   0.203  0.000023   109   8990 SOLID278   0.281  0.000031   110   8780 SOLID278   0.219  0.000025   111   9027 SOLID278   0.188  0.000021   112   8879 SOLID278   0.141  0.000016   113   8818 SOLID278   0.125  0.000014   114   8862 SOLID278   0.266  0.000030   115   9001 SOLID278   0.234  0.000026   116   9065 SOLID278   0.172  0.000019   117   9043 SOLID278   0.141  0.000016   118   8981 SOLID278   0.203  0.000023   119   62164 SOLID278   1.656  0.000027   120   61883 SOLID278   1.453  0.000023   121   61652 SOLID278   1.359  0.000022   122   61213 SOLID278   1.281  0.000021   123   61582 SOLID278   1.484  0.000024   124   61727 SOLID278   1.547  0.000025   125   61762 SOLID278   1.141  0.000018   126   61414 SOLID278   1.344  0.000022   127   62084 SOLID278   1.344  0.000022   128   61572 SOLID278   1.625  0.000026   129   61335 SOLID278   1.500  0.000024   130   61737 SOLID278   1.703  0.000028   131   61601 SOLID278   1.188  0.000019   132   61255 SOLID278   1.594  0.000026   133   61945 SOLID278   1.031  0.000017   134   61259 SOLID278   1.094  0.000018   135   61851 SOLID278   1.500  0.000024   136   61888 SOLID278   1.438  0.000023   137   62166 SOLID278   1.344  0.000022   138   61809 SOLID278   1.594  0.000026   139   62359 SOLID278   1.266  0.000020   140   61333 SOLID278   1.219  0.000020   141   61505 SOLID278   1.438  0.000023   142   61932 SOLID278   1.469  0.000024   143   61816 SOLID278   1.188  0.000019   144   61664 SOLID278   0.969  0.000016   145   61854 SOLID278   0.984  0.000016   146   61241 SOLID278   1.703  0.000028   147   61765 SOLID278   1.219  0.000020   148   61530 SOLID278   0.969  0.000016   149   62233 SOLID278   1.062  0.000017   150   61926 SOLID278   1.266  0.000020   151   12339 SOLID278   0.188  0.000015   152   9355 SOLID278   0.188  0.000020   153   2694 SOLID278   0.016  0.000006   154   2690 SOLID278   0.047  0.000017   155   33127 SOLID278   0.797  0.000024   156   23026 SOLID278   0.359  0.000016   157   88776 SOLID278   1.641  0.000018   158   70195 SOLID278   1.031  0.000015   159   38585 SOLID278   0.969  0.000025   160   23215 SOLID278   0.594  0.000026   161   56461 SOLID278   1.516  0.000027   162   37980 SOLID278   0.797  0.000021   163   23356 SOLID278   0.547  0.000023   164   86323 SOLID278   1.812  0.000021   165   42229 SOLID278   0.672  0.000016   166   39173 SOLID278   0.859  0.000022   167   43878 SOLID278   0.922  0.000021   168   38288 SOLID278   0.875  0.000023   169   43902 SOLID278   0.688  0.000016   170   39545 SOLID278   0.656  0.000017   171   23189 SOLID278   0.406  0.000018   172   44840 SOLID278   1.047  0.000023   173   35906 SOLID278   0.844  0.000023   174   35137 SOLID278   0.938  0.000027   175   44681 SOLID278   1.000  0.000022   176   54843 SOLID278   1.562  0.000028   177   68329 SOLID278   1.719  0.000025   178   50393 SOLID278   1.344  0.000027   179   23325 SOLID278   0.391  0.000017   180   39644 SOLID278   1.250  0.000032   181   43731 SOLID278   0.906  0.000021   182   73961 SOLID278   1.703  0.000023   183   43905 SOLID278   1.141  0.000026   184   37812 SOLID278   0.938  0.000025   185   54102 SOLID278   0.875  0.000016   186   38639 SOLID278   0.812  0.000021   187   11138 SOLID278   0.312  0.000028   188   1229 SOLID278   0.047  0.000038   189   10984 SOLID278   0.156  0.000014   190   1159 SOLID278   0.016  0.000013   191   10924 SOLID278   0.234  0.000021   192   3054 SOLID278   0.000  0.000000   193   79821 SOLID278   1.922  0.000024   194   20720 SOLID278   0.406  0.000020   195  281098 SOLID278   4.766  0.000017   196   13736 SOLID278   0.375  0.000027   197   37683 SOLID278   1.141  0.000030   198    842 SOLID278   0.031  0.000037   199    947 SOLID278   0.000  0.000000   200   3797 SOLID278   0.094  0.000025   201  558482 SOLID278   15.422  0.000028   202   18442 SOLID278   0.359  0.000019   203   13262 SOLID278   0.484  0.000037   204   17333 SOLID278   0.562  0.000032   205   3668 SOLID278   0.141  0.000038   206   18142 SOLID278   0.297  0.000016   207   13590 SOLID278   0.297  0.000022   208   38209 SOLID278   0.750  0.000020   209   6633 SOLID278   0.203  0.000031   210   6559 SOLID278   0.109  0.000017   211   2025 SOLID278   0.047  0.000023   212    464 SOLID278   0.016  0.000034   213    478 SOLID278   0.016  0.000033   214    485 SOLID278   0.000  0.000000   215    466 SOLID278   0.000  0.000000   216   29328 SOLID278   0.562  0.000019   217   15657 SOLID278   0.281  0.000018   218   10966 SOLID278   0.344  0.000031   219   16005 SOLID278   0.234  0.000015   220   18399 SOLID278   0.250  0.000014   221   15724 SOLID278   0.250  0.000016   222   17254 SOLID278   0.312  0.000018   223   18415 SOLID278   0.312  0.000017   224   16805 SOLID278   0.203  0.000012   225   17270 SOLID278   0.297  0.000017   226   13260 SOLID278   0.188  0.000014   227   7382 SOLID278   0.203  0.000028   228   17399 SOLID278   0.297  0.000017   229   17383 SOLID278   0.484  0.000028   230   17179 SOLID278   0.469  0.000027   231   17453 SOLID278   0.500  0.000029   232   23010 SOLID278   0.516  0.000022   233   17759 SOLID278   0.391  0.000022   234   17962 SOLID278   0.453  0.000025   235   17186 SOLID278   0.469  0.000027   236   17545 SOLID278   0.469  0.000027   237   57602 SOLID278   1.000  0.000017   238   17136 SOLID278   0.281  0.000016   239   17352 SOLID278   0.406  0.000023   240   33069 SOLID278   0.812  0.000025   241    454 SOLID278   0.000  0.000000   242    465 SOLID278   0.016  0.000034   243    441 SOLID278   0.000  0.000000   244    459 SOLID278   0.016  0.000034   245   29259 SOLID278   0.422  0.000014   246  963055 SOLID278   16.688  0.000017   247  1051290 SOLID278   23.016  0.000022   248  981550 SOLID278   21.375  0.000022   249  235913 SOLID278   4.422  0.000019   250  240324 SOLID278   4.406  0.000018   251  240728 SOLID278   4.625  0.000019   252  235055 SOLID278   4.484  0.000019   253  240292 SOLID278   4.109  0.000017   254  240246 SOLID278   4.297  0.000018   255  235717 SOLID278   4.453  0.000019   256  241102 SOLID278   4.344  0.000018   257   98598 SOLID278   2.016  0.000020   258   96386 SOLID278   2.094  0.000022   259   96705 SOLID278   1.938  0.000020   260  100568 SOLID278   2.281  0.000023   261   94999 SOLID278   2.281  0.000024   262   97352 SOLID278   1.969  0.000020   263   95491 SOLID278   2.453  0.000026   264   95086 SOLID278   2.031  0.000021   265   99943 SOLID278   3.000  0.000030   266   95150 SOLID278   2.281  0.000024   267   96835 SOLID278   2.141  0.000022   268   98456 SOLID278   2.109  0.000021   269   94499 SOLID278   2.203  0.000023   270   97518 SOLID278   2.203  0.000023   271   95302 SOLID278   2.562  0.000027   272   95607 SOLID278   2.688  0.000028   273   96876 SOLID278   1.859  0.000019   274   98118 SOLID278   1.531  0.000016   275   95651 SOLID278   1.953  0.000020   276   98480 SOLID278   1.844  0.000019   277   96130 SOLID278   1.844  0.000019   278   95766 SOLID278   1.953  0.000020   279   95204 SOLID278   1.688  0.000018   280   96662 SOLID278   1.953  0.000020   281  519817 SOLID278   9.203  0.000018   282  525352 SOLID278   13.500  0.000026   283  525754 SOLID278   13.562  0.000026   284  750716 SOLID278   17.500  0.000023   285   16176 SOLID278   0.453  0.000028   286   12421 SOLID278   0.125  0.000010   287   12778 SOLID278   0.312  0.000024   288  1052827 SOLID278   19.797  0.000019   289  968666 SOLID278   23.750  0.000025   290  1051895 SOLID278   23.125  0.000022   291  966683 SOLID278   16.609  0.000017   292  972072 SOLID278   26.766  0.000028   293  1057591 SOLID278   23.953  0.000023   294  978226 SOLID278   17.281  0.000018   295  1054475 SOLID278   25.719  0.000024   296  969735 SOLID278   20.703  0.000021   297  1053586 SOLID278   18.953  0.000018   298  979897 SOLID278   24.938  0.000025   299  1055486 SOLID278   22.938  0.000022   300  1053331 SOLID278   19.172  0.000018   301  966628 SOLID278   24.344  0.000025   302  962366 SOLID278   21.719  0.000023   303  979412 SOLID278   26.500  0.000027   304  976938 SOLID278   22.531  0.000023   305  975555 SOLID278   21.500  0.000022   306  976304 SOLID278   17.797  0.000018   307  1046396 SOLID278   27.828  0.000027   308  975946 SOLID278   20.484  0.000021   309  240759 SOLID278   6.469  0.000027   310  236358 SOLID278   5.594  0.000024   311  241634 SOLID278   6.250  0.000026   312  240687 SOLID278   6.234  0.000026   313  238658 SOLID278   5.797  0.000024   314  240934 SOLID278   5.734  0.000024   315  240756 SOLID278   6.438  0.000027   316  237775 SOLID278   5.719  0.000024   317  239151 SOLID278   4.906  0.000021   318  241368 SOLID278   5.297  0.000022   319  240287 SOLID278   5.172  0.000022   320  238324 SOLID278   5.031  0.000021   321  239657 SOLID278   5.047  0.000021   322  240421 SOLID278   5.188  0.000022   323  237931 SOLID278   5.250  0.000022   324  240242 SOLID278   5.406  0.000023   325   37636 SURF152    0.453  0.000012   326   37657 SURF152    0.688  0.000018   327   37650 SURF152    0.734  0.000020 Time at end of element matrix formulation CP = 3319.5.         Â   HT FLOW CONVERGENCE VALUE= 0.1275E+11 CRITERION= 0.1275E+08 *** WARNING ***             CP =  3638.609  TIME= 20:48:05 The in-core memory mode has been requested for the Distributed Sparse Â Matrix Solver used by the PCG solver, however there is not enough   Â memory to proceed in the in-core memory mode on one or more processes. Â The Distributed Sparse Matrix Solver will automatically switch to the Â out-of-core memory mode and continue computing the solution.      Â *** ERROR ***              CP =  3638.641  TIME= 20:48:05 There is not enough memory for the Distributed Sparse Matrix Solver  Â used by the PCG solver to proceed using the out-of-core memory mode.  Â The total memory required by all processes = 280532 MB. The total   Â physical memory that is available on the system = 235573 MB. Please  Â decrease the model size, or run this model on another system with more Â physical memory.                            Â *** ERROR ***              CP =  3638.641  TIME= 20:48:05 Preconditioned conjugate gradient solver error level 9999. Please send the data leading to this operation to your technical support provider, Â as this will allow ANSYS, Inc to improve the program.         Â NUMBER OF WARNING MESSAGES ENCOUNTERED=     3 NUMBER OF ERROR  MESSAGES ENCOUNTERED=     2 ***** PROBLEM TERMINATED BY INDICATED ERROR(S) OR BY END OF INPUT DATA *****Â+--------------------- M A P D L  S T A T I S T I C S ------------------------+ÂRelease: 2022 R2      Build: 22.2    Update: UP20220516  Platform: WINDOWS x64ÂDate Run: 05/15/2023  Time: 20:48   Process ID: 26396Operating System: Windows Server 2019 (Build: 17763)ÂProcessor Model: Intel(R) Xeon(R) Gold 6246R CPU @ 3.40GHzÂCompiler: Intel(R) Fortran Compiler Version 19.0.5 (Build: 20190815)     Intel(R) C/C++ Compiler Version 19.0.5 (Build: 20190815)     Intel(R) Math Kernel Library Version 2020.0.0 Product Build 20191125     BLAS Library supplied by Intel(R) MKLÂNumber of machines requested      :  1Total number of cores available     :  64Number of physical cores available   :  32Number of processes requested      :  4Number of threads per process requested :  1Total number of cores requested     :  4 (Distributed Memory Parallel)       ÂMPI Type: INTELMPIMPI Version: Intel(R) MPI Library 2021.5 for Windows* OSÂÂGPU Acceleration: Not RequestedÂJob Name: file0Input File: dummy.dat Core        Machine Name  Working Directory -----------------------------------------------------   0       br-xlim-calc-3  D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617   1       br-xlim-calc-3  D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617   2       br-xlim-calc-3  D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617   3       br-xlim-calc-3  D:\LUC\VT4x4\VT4x4_RIC\_ProjectScratch\Scr8617ÂLatency time from master to core   1 =  4.978 microsecondsLatency time from master to core   2 =  5.575 microsecondsLatency time from master to core   3 =  5.530 microsecondsÂCommunication speed from master to core   1 = 6483.82 MB/secCommunication speed from master to core   2 = 4343.69 MB/secCommunication speed from master to core   3 = 4309.93 MB/secÂTotal CPU time for main thread          :   2319.9 secondsTotal CPU time summed for all threads       :   3677.3 secondsÂElapsed time spent obtaining a license      :    0.4 secondsElapsed time spent pre-processing model (/PREP7) :   310.8 secondsElapsed time spent solution - preprocessing    :   521.7 secondsElapsed time spent computing solution       :   1119.5 secondsElapsed time spent solution - postprocessing   :    2.0 secondsElapsed time spent post-processing model (/POST1) :    0.0 secondsÂEquation solver used               :      PCG (symmetric)ÂSum of memory used on all processes        :   272.0 GBSum of memory allocated on all processes     :   294.1 GBPhysical memory available             :    256 GBÂTotal amount of I/O written to disk        :    4.0 GBTotal amount of I/O read from disk        :    2.4 GBÂ+------------------ E N D  M A P D L  S T A T I S T I C S -------------------+ *---------------------------------------------------------------------------* |                                      | |                RUN COMPLETED                | |                                      | |---------------------------------------------------------------------------| |                                      | | Ansys MAPDL 2022 R2     Build 22.2     UP20220516  WINDOWS x64 | |                                      | |---------------------------------------------------------------------------| |                                      | | Database Requested(-db) 1024 MB  Scratch Memory Requested   1024 MB | | Maximum Database Used  48794 MB  Maximum Scratch Memory Used 80593 MB | |                                      | |---------------------------------------------------------------------------| |                                      | |    CP Time   (sec) =    3677.266    Time = 20:48:51    | |    Elapsed Time (sec) =    2389.000    Date = 05/15/2023   | |                                      | *---------------------------------------------------------------------------* AllÂÂ
May 16, 2023 at 3:01 amNanda
Ansys EmployeeHello Luc,
We would suggest to raise a new discussion instead of posting in old threads. To add to above comments by Gary and Mike, check if your model is properly constrained. And here is a forum discussion link which might help you to solve the issue.
Regards,
Nanda.
Guidelines for Posting on Ansys Learning Forum
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