#++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ # # HiLiftPW-3 Iterative Convergence DATA SUBMITTAL FORM Case 1d (Version 1), March 2017 # # CASE 1d is an optional case for the HL-CRM configuration - partially-sealed chord flap gap on adapted grid # (solution should be provided on the final adapted grid) # Two ALPHAs (8 and 16 deg) are required. # This case should be run FULLY TURBULENT (no forced transition). # # NOMENCLATURE: # ITER: Iteration or time step number (ITER1=first recorded time step, ITERn=last time step). # ITERn-ITER1 should be long enough to show any range in variation of final forces and moments. # If no variation exists (i.e., steady-state reached), provide at least the final 25% of the range of iterations used. # CL: Coefficient of lift (total) # CD: Coefficient of drag (total) # CM: Coefficient of pitching moment about moment reference center (MRC) (total) # RESIDM-n: Residual of selected mean-flow equation (n=equation number) # RESIDT-n: Residual of selected turbulence equation (n=equation number) # # ALPHA: Angle of attack, deg. # MAC: Mean aerodynamic chord = 275.8 inches # FT: Fully Turbulent # # XXX: Participant ID (To be assigned by HiLiftPW workshop committee) # # FLOW CONDITIONS: # Mach Number: 0.2 # Reynolds Number: 3.26 million (based on MAC) # Freestream Temp: 518.67 R (= 15.0 C = 59.0 F) # Freestream Static Pressure: 760.21 mmHg (= 14.70 psi) # # NOTES: 1. All numerical data fields can be free-formatted # 2. Please use at least 5 decimal places in the numerical values for CL CD CM # 3. Please use scientific notation (e.g. 2.51e-6) in the numerical values for RESIDM-n and RESIDT-n # 4. Residuals are optional; as many residuals can be provided as desired (up to 5 for mean flow, up to 7 for turbulence) # 5. If optional data is NOT provided, please fill data fields with a numerical value of "-999" # 6. Only final adapted grid iterative convergence histories are requested # 7. Indicate (using each DATASETAUXDATA) whether local-time-stepping or time-accurate method was used # #++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ TITLE = "XXX" # <--------------------------------------------------------- OPTIONAL --------------------------------------------------------------> VARIABLES = "ITER" "CL" "CD" "CM" "RESIDM-1" "RESIDM-2" "RESIDM-3" "RESIDM-4" "RESIDM-5" "RESIDT-1" "RESIDT-2" "RESIDT-3" "RESIDT-4" "RESIDT-5" "RESIDT-6" "RESIDT-7" DATASETAUXDATA TIMESTEPPING_METHOD_A8_ADAPT = "local-time-stepping -or- time-accurate" ZONE T="XXX case1d adapted ALPHA=8 FT partialgap" 1 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 DATASETAUXDATA TIMESTEPPING_METHOD_A16_ADAPT = "local-time-stepping -or- time-accurate" ZONE T="XXX case1d adapted ALPHA=16 FT partialgap" 1 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999 -999