Ansys Learning Forum › Forums › Discuss Simulation › Fluids › An error has occurred in cfx5solve:The ANSYS CFX solver exited with return code1 › Reply To: An error has occurred in cfx5solve:The ANSYS CFX solver exited with return code1
Hello Chaitanya,
thank you for your prompt reply! I can easely agree with any of your setup statements, I know that can be far from good or "correct".
The real fact is that I had a project in FluidFlow (CFX), with the same exact setup, which was solved withou errors and gave me results. My very first attempt was to change some setup input values. Then I found errors. My second attempt was then to simply re-run the same exact setup in that project, which eventually led to errors where previously where not!
My last attempt has been to reproduce from scratch in another project, with the same first solved setup, but still getting errors.
The fact which triggers me is that the initial, solved, project is not able to be solved anymore without changing anything, exept for the directory location on my workstation (the workstation and release of ANSYS is the same). This is why I also thought about some licensing or directory path problem.
I attach the initial project .outfile if can be usefull. I double-checked it and it's exaclty the same as the one atteched in the starting thread.
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
 This run of the CFX 2021 R1 Solver started at 10:08:45 on 08 Feb 2022
 by user Stefano.CHIETI on ------- (intel_xeon64.sse2_winnt) using the
 command:
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 "C:\Program Files\ANSYS Inc\v211\CFX\bin\perllib\cfx5solve.pl" -batch
  -ccl runInput.ccl -fullname CFX_003
Â
 2021 R1
Â
 Point Releases and Patches installed:
 ANSYS, Inc. Products 2021 R1
 SpaceClaim 2021 R1
 Autodyn 2021 R1
 CFD-Post only 2021 R1
 CFX (includes CFD-Post) 2021 R1
 FENSAP-ICE 2021 R1
 Fluent (includes CFD-Post) 2021 R1
 Forte (includes EnSight) 2021 R1
 Polyflow (includes CFD-Post) 2021 R1
 TurboGrid 2021 R1
 Aqwa 2021 R1
 Customization Files for User Programmable Features 2021 R1
 Mechanical Products 2021 R1
 Icepak (includes CFD-Post) 2021 R1
 Remote Solve Manager Standalone Services 2021 R1
 Viewer 2021 R1
 ACIS Geometry Interface 2021 R1
 AutoCAD Geometry Interface 2021 R1
 Catia, Version 4 Geometry Interface 2021 R1
 Catia, Version 5 Geometry Interface 2021 R1
 Catia, Version 6 Geometry Interface 2021 R1
 Creo Elements/Direct Modeling Geometry Interface 2021 R1
 Creo Parametric Geometry Interface 2021 R1
 Inventor Geometry Interface 2021 R1
 JTOpen Geometry Interface 2021 R1
 NX Geometry Interface 2021 R1
 Parasolid Geometry Interface  2021 R1
 Solid Edge Geometry Interface 2021 R1
 SOLIDWORKS Geometry Interface 2021 R1
 ANSYS, Inc. License Manager 2021 R1
Â
 Setting up CFX Solver run ...
Â
Â
 +--------------------------------------------------------------------+
 |                                   |
 |           CFX Command Language for Run           |
 |                                   |
 +--------------------------------------------------------------------+
Â
 LIBRARY:
  MATERIAL: Water
   Material Description = Water (liquid)
   Material Group = Water Data, Constant Property Liquids
   Option = Pure Substance
   Thermodynamic State = Liquid
   PROPERTIES:
    Option = General Material
    EQUATION OF STATE:
     Density = 997.0 [kg m^-3]
     Molar Mass = 18.02 [kg kmol^-1]
     Option = Value
    END
    SPECIFIC HEAT CAPACITY:
     Option = Value
     Specific Heat Capacity = 4181.7 [J kg^-1 K^-1]
     Specific Heat Type = Constant Pressure
    END
    REFERENCE STATE:
     Option = Specified Point
     Reference Pressure = 1 [atm]
     Reference Specific Enthalpy = 0.0 [J/kg]
     Reference Specific Entropy = 0.0 [J/kg/K]
     Reference Temperature = 25 [C]
    END
    DYNAMIC VISCOSITY:
     Dynamic Viscosity = 8.899E-4 [kg m^-1 s^-1]
     Option = Value
    END
    THERMAL CONDUCTIVITY:
     Option = Value
     Thermal Conductivity = 0.6069 [W m^-1 K^-1]
    END
    ABSORPTION COEFFICIENT:
     Absorption Coefficient = 1.0 [m^-1]
     Option = Value
    END
    SCATTERING COEFFICIENT:
     Option = Value
     Scattering Coefficient = 0.0 [m^-1]
    END
    REFRACTIVE INDEX:
     Option = Value
     Refractive Index = 1.0 [m m^-1]
    END
    THERMAL EXPANSIVITY:
     Option = Value
     Thermal Expansivity = 2.57E-04 [K^-1]
    END
   END
  END
 END
 FLOW: Flow Analysis 1
  SOLUTION UNITS:
   Angle Units = [rad]
   Length Units = [m]
   Mass Units = [kg]
   Solid Angle Units = [sr]
   Temperature Units = [K]
   Time Units = [s]
  END
  ANALYSIS TYPE:
   Option = Steady State
   EXTERNAL SOLVER COUPLING:
    Option = None
   END
  END
  DOMAIN: CONVERGENT
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2646
   BOUNDARY: CONVERGENT Default
    Boundary Type = WALL
    Location = F2647.2646
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: Interface Convergent Volute Side 1
    Boundary Type = INTERFACE
    Location = F1861.2646
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: OUTLET
    Boundary Type = OUTLET
    Location = F2648.2646
    BOUNDARY CONDITIONS:
     FLOW REGIME:
      Option = Subsonic
     END
     MASS AND MOMENTUM:
      Mass Flow Rate = 0.63 [kg s^-1]
      Mass Flow Rate Area = As Specified
      Option = Mass Flow Rate
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: DUCTS
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B188,B189,B26,B27
   BOUNDARY: DUCTS Default
    Boundary Type = WALL
    Location = \
     F21.188,F22.27,F23.189,F24.26,F254.188,F255.188,F256.188,F258.188,F25\
     9.189,F260.189,F261.189,F263.189,F271.189,F272.189,F273.189,F274.189,\
     F275.189,F276.189,F277.189,F278.189,F279.188,F280.188,F281.188,F282.1\
     88,F2828.26,F2829.26,F283.188,F2832.27,F2833.27,F2836.188,F2837.188,F\
     284.188,F2840.189,F2841.189,F285.188,F286.188,F287.26,F288.26,F289.26\
     ,F290.26,F291.26,F292.26,F293.26,F294.26,F295.27,F296.27,F297.27,F298\
     .27,F299.27,F300.27,F301.27,F302.27,F303.27,F304.27,F306.27,F307.27,F\
     310.26,F311.26,F312.26,F314.26
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: Interface Ducts RotatingCoolingDX Xdir Side 1
    Boundary Type = INTERFACE
    Location = \
     F2657.26,F2658.189,F2659.27,F2660.188,F2666.188,F2667.27,F2668.189,F2\
     669.26
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface Ducts RotatingCoolingDX Zdir Side 1
    Boundary Type = INTERFACE
    Location = F2662.26,F2663.189,F2664.27,F2665.188
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: EULERIAN
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2640
   BOUNDARY: EULERIAN Default
    Boundary Type = WALL
    Location = F2641.2640
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: INLET
    Boundary Type = INLET
    Location = F2642.2640
    BOUNDARY CONDITIONS:
     FLOW DIRECTION:
      Option = Normal to Boundary Condition
     END
     FLOW REGIME:
      Option = Subsonic
     END
     MASS AND MOMENTUM:
      Option = Total Pressure
      Relative Pressure = 185 [kPa]
     END
     TURBULENCE:
      Option = Medium Intensity and Eddy Viscosity Ratio
     END
    END
   END
   BOUNDARY: Interface Eulerian Intake Side 1
    Boundary Type = INTERFACE
    Location = F2759.2640
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: INTAKE
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B67
   BOUNDARY: INTAKE Default
    Boundary Type = WALL
    Location = F2868.67,F436.67
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: Interface Eulerian Intake Side 2
    Boundary Type = INTERFACE
    Location = F2759.67
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface Intake IntakeMaze Side 1
    Boundary Type = INTERFACE
    Location = F2875.67
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: INTAKE MAZE
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2761
   BOUNDARY: INTAKE MAZE Default
    Boundary Type = WALL
    Location = \
     F427.2761,F428.2761,F429.2761,F430.2761,F431.2761,F432.2761,F433.2761\
     ,F434.2761,F899.2761,F904.2761,F906.2761,F907.2761,F909.2761,F910.276\
     1,F911.2761,F912.2761,F913.2761
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: Interface Intake IntakeMaze Side 2
    Boundary Type = INTERFACE
    Location = F2875.2761
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface IntakeMaze RotatingImpeller Side 1
    Boundary Type = INTERFACE
    Location = F211.2761,F2874.2761
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING BOLT
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2687
   BOUNDARY: Interface RotatingBolt RotatingImpeller Side 1
    Boundary Type = INTERFACE
    Location = F2699.2687,F2700.2687,F2701.2687,F2702.2687
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingBolt RotatingShaft Side 1
    Boundary Type = INTERFACE
    Location = F2672.2687
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING BOLT Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F1096.2687,F1097.2687,F236.2687,F237.2687,F238.2687,F239.2687,F2670.2\
     687,F2675.2687,F2703.2687,F872.2687,F873.2687,F888.2687,F915.2687,F93\
     8.2687,F939.2687,F940.2687
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING COOLING CENTER
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2762
   BOUNDARY: Interface RotatingCoolingCENTER RotatingCoolingDX Side 1
    Boundary Type = INTERFACE
    Location = F2778.2762
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingCoolingSX RotatingCoolingCENTER Side 2
    Boundary Type = INTERFACE
    Location = F2804.2762
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING COOLING CENTER Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = F2781.2762
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: StaticWalls CoolingCENTER
    Boundary Type = WALL
    Frame Type = Rotating
    Location = F2779.2762
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING COOLING DX
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2787
   BOUNDARY: Interface Ducts RotatingCoolingDX Xdir Side 2
    Boundary Type = INTERFACE
    Location = \
     F2657.2787,F2658.2787,F2659.2787,F2660.2787,F2666.2787,F2667.2787,F26\
     68.2787,F2669.2787
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface Ducts RotatingCoolingDX Zdir Side 2
    Boundary Type = INTERFACE
    Location = F2662.2787,F2663.2787,F2664.2787,F2665.2787
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingCoolingCENTER RotatingCoolingDX Side 2
    Boundary Type = INTERFACE
    Location = F2778.2787
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingCoolingDX RotatingShaft Side 1
    Boundary Type = INTERFACE
    Location = F2688.2787
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING COOLING DX Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F10.2787,F1000.2787,F1001.2787,F1002.2787,F1003.2787,F1004.2787,F1005\
     .2787,F1006.2787,F1007.2787,F1008.2787,F1009.2787,F1010.2787,F1011.27\
     87,F1012.2787,F1013.2787,F1014.2787,F1015.2787,F1016.2787,F1017.2787,\
     F1018.2787,F1019.2787,F1020.2787,F1021.2787,F1022.2787,F1023.2787,F10\
     24.2787,F1025.2787,F1026.2787,F1027.2787,F1028.2787,F1029.2787,F1030.\
     2787,F1031.2787,F1032.2787,F1033.2787,F1034.2787,F1035.2787,F1036.278\
     7,F1037.2787,F1038.2787,F1039.2787,F1040.2787,F1041.2787,F1042.2787,F\
     1043.2787,F1044.2787,F1045.2787,F1046.2787,F1047.2787,F1048.2787,F104\
     9.2787,F1050.2787,F1051.2787,F1052.2787,F1053.2787,F1054.2787,F1055.2\
     787,F1056.2787,F1057.2787,F1058.2787,F1059.2787,F1060.2787,F1061.2787\
     ,F1062.2787,F1063.2787,F1064.2787,F1065.2787,F1066.2787,F1067.2787,F1\
     068.2787,F1069.2787,F1070.2787,F1071.2787,F1072.2787,F1073.2787,F1074\
     .2787,F1075.2787,F1076.2787,F1077.2787,F1078.2787,F1079.2787,F1080.27\
     87,F1081.2787,F1082.2787,F1083.2787,F1084.2787,F1085.2787,F1086.2787,\
     F1087.2787,F1088.2787,F1089.2787,F1090.2787,F11.2787,F1111.2787,F1112\
     .2787,F1113.2787,F1114.2787,F1115.2787,F1116.2787,F1117.2787,F2713.27\
     87,F2782.2787,F32.2787,F36.2787,F37.2787,F38.2787,F39.2787,F4.2787,F4\
     0.2787,F41.2787,F42.2787,F43.2787,F44.2787,F45.2787,F46.2787,F47.2787\
     ,F48.2787,F49.2787,F5.2787,F50.2787,F6.2787,F7.2787,F8.2787,F867.2787\
     ,F868.2787,F869.2787,F9.2787,F918.2787,F929.2787,F930.2787,F931.2787,\
     F932.2787,F933.2787,F934.2787,F935.2787,F936.2787,F941.2787,F942.2787\
     ,F943.2787,F944.2787,F948.2787,F951.2787,F952.2787,F953.2787,F954.278\
     7,F955.2787,F956.2787,F957.2787,F958.2787,F959.2787,F960.2787,F961.27\
     87,F962.2787,F974.2787,F975.2787,F976.2787,F977.2787,F978.2787,F979.2\
     787,F980.2787,F981.2787,F982.2787,F983.2787,F984.2787,F985.2787,F986.\
     2787,F987.2787,F988.2787,F989.2787,F990.2787,F991.2787,F992.2787,F993\
     .2787,F994.2787,F995.2787,F996.2787,F997.2787,F998.2787,F999.2787
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: StaticWalls CoolingDX
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F1841.2787,F1842.2787,F185.2787,F204.2787,F243.2787,F245.2787,F264.27\
     87,F266.2787,F265.2787,F267.2787,F268.2787,F2689.2787,F269.2787,F270.\
     2787,F308.2787,F309.2787,F315.2787,F320.2787,F321.2787,F322.2787,F323\
     .2787,F324.2787,F33.2787,F2780.2787,F35.2787
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING COOLING SX
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2698
   BOUNDARY: Interface RotatingCoolingSX RotatingCoolingCENTER Side 1
    Boundary Type = INTERFACE
    Location = F2804.2698
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingSpillage RotatingCoolingSX Side 2
    Boundary Type = INTERFACE
    Location = F2671.2698
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageDX RotatingCoolingSX Side 2
    Boundary Type = INTERFACE
    Location = F207.2698
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING COOLING SX Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F1100.2698,F1101.2698,F1102.2698,F1103.2698,F1104.2698,F1105.2698,F11\
     06.2698,F1107.2698,F1108.2698,F1109.2698,F2674.2698,F2806.2698,F31.26\
     98,F916.2698,F919.2698,F920.2698,F921.2698,F922.2698,F923.2698,F924.2\
     698,F925.2698,F926.2698,F927.2698,F928.2698,F946.2698
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: StaticWalls CoolingSX
    Boundary Type = WALL
    Frame Type = Rotating
    Location = F1856.2698,F2712.2698,F2805.2698
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING IMPELLER
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2686
   BOUNDARY: Interface IntakeMaze RotatingImpeller Side 2
    Boundary Type = INTERFACE
    Location = F211.2686,F2874.2686
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingBolt RotatingImpeller Side 2
    Boundary Type = INTERFACE
    Location = F2699.2686,F2700.2686,F2701.2686,F2702.2686
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingImpeller RotatingSpillage Side 1
    Boundary Type = INTERFACE
    Location = F2710.2686
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingImpeller Volute Side 1
    Boundary Type = INTERFACE
    Location = F2727.2686
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING IMPELLER Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F100.2686,F101.2686,F102.2686,F103.2686,F104.2686,F105.2686,F106.2686\
     ,F107.2686,F1091.2686,F1092.2686,F1093.2686,F1094.2686,F1095.2686,F10\
     99.2686,F69.2686,F77.2686,F78.2686,F79.2686,F80.2686,F81.2686,F82.268\
     6,F83.2686,F84.2686,F85.2686,F86.2686,F87.2686,F875.2686,F876.2686,F8\
     77.2686,F878.2686,F879.2686,F88.2686,F880.2686,F881.2686,F882.2686,F8\
     83.2686,F884.2686,F885.2686,F887.2686,F89.2686,F891.2686,F892.2686,F8\
     93.2686,F894.2686,F895.2686,F896.2686,F897.2686,F898.2686,F90.2686,F9\
     1.2686,F92.2686,F93.2686,F94.2686,F95.2686,F96.2686,F97.2686,F98.2686\
     ,F99.2686
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: StaticWalls IMPELLER
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F1869.2686,F420.2686,F421.2686,F422.2686,F423.2686,F424.2686,F425.268\
     6,F426.2686,F70.2686,F900.2686,F901.2686,F902.2686,F903.2686,F905.268\
     6,F908.2686,F1860.2686,F1867.2686,F1868.2686,F193.2686,F209.2686,F210\
     .2686,F2683.2686
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING SHAFT
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2681
   BOUNDARY: Interface RotatingBolt RotatingShaft Side 2
    Boundary Type = INTERFACE
    Location = F2672.2681
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingCoolingDX RotatingShaft Side 2
    Boundary Type = INTERFACE
    Location = F2688.2681
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING SHAFT Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F2676.2681,F937.2681,F963.2681,F964.2681,F965.2681,F966.2681,F967.268\
     1,F968.2681,F969.2681,F970.2681,F971.2681,F972.2681,F973.2681
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: ROTATING SPILLAGE
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2680
   BOUNDARY: Interface RotatingImpeller RotatingSpillage Side 2
    Boundary Type = INTERFACE
    Location = F2710.2680
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingSpillage RotatingCoolingSX Side 1
    Boundary Type = INTERFACE
    Location = F2671.2680
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingSpillage SpillageSX Side 1
    Boundary Type = INTERFACE
    Location = F2722.2680,F2723.2680,F2724.2680,F2725.2680,F2726.2680
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageCENTER RotatingSpillage Side 2
    Boundary Type = INTERFACE
    Location = F1847.2680
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: ROTATING SPILLAGE Default
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F235.2680,F2673.2680,F2709.2680,F73.2680,F74.2680,F75.2680,F76.2680,F\
     870.2680,F871.2680,F890.2680,F914.2680,F917.2680,F949.2680,F950.2680
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   BOUNDARY: StaticWalls Spillage
    Boundary Type = WALL
    Frame Type = Rotating
    Location = \
     F1848.2680,F241.2680,F2682.2680,F331.2680,F332.2680,F333.2680,F334.26\
     80,F335.2680,F336.2680,F337.2680,F338.2680,F339.2680,F340.2680,F341.2\
     680,F342.2680,F362.2680,F395.2680,F396.2680,F397.2680,F398.2680,F399.\
     2680,F400.2680,F72.2680,F201.2680
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Alternate Rotation Model = true
     Angular Velocity = -1256.64 [radian s^-1]
     Option = Rotating
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: SPILLAGE CENTER
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2862
   BOUNDARY: Interface SpillageCENTER RotatingSpillage Side 1
    Boundary Type = INTERFACE
    Location = F1847.2862
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageCENTER SpillageDX Side 1
    Boundary Type = INTERFACE
    Location = F2788.2862
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageCENTER SpillageSX Side 1
    Boundary Type = INTERFACE
    Location = F2764.2862
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageVolute SpillageCENTER Side 2
    Boundary Type = INTERFACE
    Location = F2763.2862
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: SPILLAGE CENTER Default
    Boundary Type = WALL
    Location = \
     F2768.2862,F2770.2862,F2790.2862,F2793.2862,F2864.2862,F326.2862,F343\
     .2862,F347.2862,F349.2862,F350.2862,F351.2862,F71.2862
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: SPILLAGE DX
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2802
   BOUNDARY: Interface SpillageCENTER SpillageDX Side 2
    Boundary Type = INTERFACE
    Location = F2788.2802
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageDX RotatingCoolingSX Side 1
    Boundary Type = INTERFACE
    Location = F207.2802
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: SPILLAGE DX Default
    Boundary Type = WALL
    Location = \
     F1855.2802,F2791.2802,F2792.2802,F328.2802,F329.2802,F330.2802
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: SPILLAGE SX
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B30
   BOUNDARY: Interface RotatingSpillage SpillageSX Side 2
    Boundary Type = INTERFACE
    Location = F2722.30,F2723.30,F2724.30,F2725.30,F2726.30
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface SpillageCENTER SpillageSX Side 2
    Boundary Type = INTERFACE
    Location = F2764.30
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: SPILLAGE SX Default
    Boundary Type = WALL
    Location = \
     F246.30,F247.30,F248.30,F249.30,F250.30,F251.30,F252.30,F253.30,F2769\
     .30,F344.30,F352.30,F353.30,F354.30,F355.30,F356.30,F357.30,F358.30,F\
     359.30,F360.30,F361.30,F363.30,F364.30,F365.30,F366.30,F367.30,F368.3\
     0,F369.30,F370.30,F371.30,F372.30,F373.30,F374.30,F375.30,F376.30,F37\
     7.30,F378.30,F379.30,F380.30,F381.30,F382.30,F383.30,F384.30,F385.30,\
     F386.30,F387.30,F388.30,F389.30,F390.30,F391.30,F392.30,F393.30,F394.\
     30
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: SPILLAGE VOLUTE
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B2775
   BOUNDARY: Interface SpillageVolute SpillageCENTER Side 1
    Boundary Type = INTERFACE
    Location = F2763.2775
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface Volute SpillageVolute Side 2
    Boundary Type = INTERFACE
    Location = F2811.2775
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: SPILLAGE VOLUTE Default
    Boundary Type = WALL
    Location = F2767.2775
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN: VOLUTE
   Coord Frame = Coord 0
   Domain Type = Fluid
   Location = B1834
   BOUNDARY: Interface Convergent Volute Side 2
    Boundary Type = INTERFACE
    Location = F1861.1834
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface RotatingImpeller Volute Side 2
    Boundary Type = INTERFACE
    Location = F2727.1834
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: Interface Volute SpillageVolute Side 1
    Boundary Type = INTERFACE
    Location = F2811.1834
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = Conservative Interface Flux
     END
     TURBULENCE:
      Option = Conservative Interface Flux
     END
    END
   END
   BOUNDARY: VOLUTE Default
    Boundary Type = WALL
    Location = \
     F1853.1834,F1862.1834,F1863.1834,F1864.1834,F1865.1834,F1866.1834,F40\
     1.1834,F402.1834,F403.1834,F404.1834,F405.1834,F406.1834,F407.1834,F4\
     08.1834,F409.1834,F410.1834,F411.1834,F412.1834,F413.1834,F414.1834,F\
     415.1834,F416.1834,F417.1834,F418.1834,F419.1834
    BOUNDARY CONDITIONS:
     MASS AND MOMENTUM:
      Option = No Slip Wall
     END
     WALL ROUGHNESS:
      Option = Smooth Wall
     END
    END
   END
   DOMAIN MODELS:
    BUOYANCY MODEL:
     Option = Non Buoyant
    END
    DOMAIN MOTION:
     Option = Stationary
    END
    MESH DEFORMATION:
     Option = None
    END
    REFERENCE PRESSURE:
     Reference Pressure = 1 [atm]
    END
   END
   FLUID DEFINITION: Fluid 1
    Material = Water
    Option = Material Library
    MORPHOLOGY:
     Option = Continuous Fluid
    END
   END
   FLUID MODELS:
    COMBUSTION MODEL:
     Option = None
    END
    HEAT TRANSFER MODEL:
     Option = None
    END
    THERMAL RADIATION MODEL:
     Option = None
    END
    TURBULENCE MODEL:
     Option = SST
    END
    TURBULENT WALL FUNCTIONS:
     Option = Automatic
    END
   END
  END
  DOMAIN INTERFACE: Interface Convergent Volute
   Boundary List1 = Interface Convergent Volute Side 1
   Boundary List2 = Interface Convergent Volute Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface Ducts RotatingCoolingDX Xdir
   Boundary List1 = Interface Ducts RotatingCoolingDX Xdir Side 1
   Boundary List2 = Interface Ducts RotatingCoolingDX Xdir Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface Ducts RotatingCoolingDX Zdir
   Boundary List1 = Interface Ducts RotatingCoolingDX Zdir Side 1
   Boundary List2 = Interface Ducts RotatingCoolingDX Zdir Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface Eulerian Intake
   Boundary List1 = Interface Eulerian Intake Side 1
   Boundary List2 = Interface Eulerian Intake Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface Intake IntakeMaze
   Boundary List1 = Interface Intake IntakeMaze Side 1
   Boundary List2 = Interface Intake IntakeMaze Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface IntakeMaze RotatingImpeller
   Boundary List1 = Interface IntakeMaze RotatingImpeller Side 1
   Boundary List2 = Interface IntakeMaze RotatingImpeller Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingBolt RotatingImpeller
   Boundary List1 = Interface RotatingBolt RotatingImpeller Side 1
   Boundary List2 = Interface RotatingBolt RotatingImpeller Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingBolt RotatingShaft
   Boundary List1 = Interface RotatingBolt RotatingShaft Side 1
   Boundary List2 = Interface RotatingBolt RotatingShaft Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingCoolingCENTER RotatingCoolingDX
   Boundary List1 = Interface RotatingCoolingCENTER RotatingCoolingDX Side 1
   Boundary List2 = Interface RotatingCoolingCENTER RotatingCoolingDX Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingCoolingDX RotatingShaft
   Boundary List1 = Interface RotatingCoolingDX RotatingShaft Side 1
   Boundary List2 = Interface RotatingCoolingDX RotatingShaft Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingCoolingSX RotatingCoolingCENTER
   Boundary List1 = Interface RotatingCoolingSX RotatingCoolingCENTER Side 1
   Boundary List2 = Interface RotatingCoolingSX RotatingCoolingCENTER Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingImpeller RotatingSpillage
   Boundary List1 = Interface RotatingImpeller RotatingSpillage Side 1
   Boundary List2 = Interface RotatingImpeller RotatingSpillage Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingImpeller Volute
   Boundary List1 = Interface RotatingImpeller Volute Side 1
   Boundary List2 = Interface RotatingImpeller Volute Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingSpillage RotatingCoolingSX
   Boundary List1 = Interface RotatingSpillage RotatingCoolingSX Side 1
   Boundary List2 = Interface RotatingSpillage RotatingCoolingSX Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface RotatingSpillage SpillageSX
   Boundary List1 = Interface RotatingSpillage SpillageSX Side 1
   Boundary List2 = Interface RotatingSpillage SpillageSX Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface SpillageCENTER RotatingSpillage
   Boundary List1 = Interface SpillageCENTER RotatingSpillage Side 1
   Boundary List2 = Interface SpillageCENTER RotatingSpillage Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface SpillageCENTER SpillageDX
   Boundary List1 = Interface SpillageCENTER SpillageDX Side 1
   Boundary List2 = Interface SpillageCENTER SpillageDX Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface SpillageCENTER SpillageSX
   Boundary List1 = Interface SpillageCENTER SpillageSX Side 1
   Boundary List2 = Interface SpillageCENTER SpillageSX Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface SpillageDX RotatingCoolingSX
   Boundary List1 = Interface SpillageDX RotatingCoolingSX Side 1
   Boundary List2 = Interface SpillageDX RotatingCoolingSX Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = Automatic
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface SpillageVolute SpillageCENTER
   Boundary List1 = Interface SpillageVolute SpillageCENTER Side 1
   Boundary List2 = Interface SpillageVolute SpillageCENTER Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  DOMAIN INTERFACE: Interface Volute SpillageVolute
   Boundary List1 = Interface Volute SpillageVolute Side 1
   Boundary List2 = Interface Volute SpillageVolute Side 2
   Interface Type = Fluid Fluid
   INTERFACE MODELS:
    Option = General Connection
    FRAME CHANGE:
     Option = Frozen Rotor
    END
    MASS AND MOMENTUM:
     Option = Conservative Interface Flux
     MOMENTUM INTERFACE MODEL:
      Option = None
     END
    END
    PITCH CHANGE:
     Option = None
     AXIS DEFINITION:
      Option = Coordinate Axis
      Rotation Axis = Coord 0.3
     END
    END
   END
   MESH CONNECTION:
    Option = GGI
   END
  END
  OUTPUT CONTROL:
   RESULTS:
    File Compression Level = Default
    Option = Standard
   END
  END
  SOLVER CONTROL:
   Turbulence Numerics = First Order
   ADVECTION SCHEME:
    Option = High Resolution
   END
   CONVERGENCE CONTROL:
    Length Scale Option = Conservative
    Maximum Number of Iterations = 500
    Minimum Number of Iterations = 1
    Timescale Control = Auto Timescale
    Timescale Factor = 10
   END
   CONVERGENCE CRITERIA:
    Residual Target = 1e-3
    Residual Type = RMS
   END
   DYNAMIC MODEL CONTROL:
    Global Dynamic Model Control = Yes
   END
   INTERRUPT CONTROL:
    Option = Any Interrupt
    CONVERGENCE CONDITIONS:
     Option = Default Conditions
    END
   END
  END
 END
 COMMAND FILE:
  Version = 21.1
  Results Version = 21.1
 END
 SIMULATION CONTROL:
  EXECUTION CONTROL:
   EXECUTABLE SELECTION:
    Double Precision = Yes
    Large Problem = No
   END
   INTERPOLATOR STEP CONTROL:
    Runtime Priority = Standard
    MEMORY CONTROL:
     Memory Allocation Factor = 1.0
    END
   END
   PARALLEL HOST LIBRARY:
    HOST DEFINITION: -------
     Host Architecture String = winnt-amd64
     Installation Root = C:\Program Files\ANSYS Inc\v%v\CFX
    END
   END
   PARTITIONER STEP CONTROL:
    Multidomain Option = Automatic
    Runtime Priority = Standard
    MEMORY CONTROL:
     Memory Allocation Factor = 1.0
    END
    PARTITION SMOOTHING:
     Maximum Partition Smoothing Sweeps = 100
     Option = Smooth
    END
    PARTITIONING TYPE:
     MeTiS Type = k-way
     Option = MeTiS
     Partition Size Rule = Automatic
     Partition Weight Factors = 0.25000, 0.25000, 0.25000, 0.25000
    END
   END
   RUN DEFINITION:
    Run Mode = Full
    Solver Input File = CFX.def
    Solver Results File = \
     C:/Users/-------/dp0_CFX_35\
     _Solution_35/CFX_003.res
   END
   SOLVER STEP CONTROL:
    Runtime Priority = Standard
    MEMORY CONTROL:
     Memory Allocation Factor = 1.0
    END
    PARALLEL ENVIRONMENT:
     Number of Processes = 4
     Start Method = Intel MPI Local Parallel
     Parallel Host List = ------*4
    END
   END
  END
 END
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 +--------------------------------------------------------------------+
 |                                   |
 |               Partitioning               |
 |                                   |
 +--------------------------------------------------------------------+
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 +--------------------------------------------------------------------+
 |                                   |
 |           ANSYS(R) CFX(R) Partitioner           |
 |                                   |
 | 2021 R1                               |
 | Build 21.1 2020-11-09T17:12:37.550718                |
 | Mon Nov  9 19:04:23 GMTST 2020                   |
 |                                   |
 |             Executable Attributes            |
 |                                   |
 |      double-64bit-int32-archfort-optimised-std-lcomp      |
 |                                   |
 | (C) 1996-2021 ANSYS, Inc.                      |
 |                                   |
 | All rights reserved. Unauthorized use, distribution or duplication |
 | is prohibited. This product is subject to U.S. laws governing    |
 | export and re-export. For full Legal Notice, see documentation.   |
 +--------------------------------------------------------------------+
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 +--------------------------------------------------------------------+
 |          Job Information at Start of Run          |
 +--------------------------------------------------------------------+
 Run mode:    partitioning run
 Host computer:  ---- (PID:------)
 Job started:   Tue Feb  8 10:08:49 2022
 +--------------------------------------------------------------------+
 |             License Information             |
 +--------------------------------------------------------------------+
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