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Copy pathBC-Periodic-hill.prm
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BC-Periodic-hill.prm
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#
# INCOMPACT 3D parameters - Periodic Hill configuration
#
512 #nx
257 #ny
128 #nz
1 #nphi
0 #p_row
0 #p_col
#
# INCOMPACT 3D Flow parameters
#
9. #xlx # Lx (Adimensional size in x-direction)
3.036 #yly # Ly (Adimensional size in y-direction)
4.5 #zlz # Lz (Adimensional size in z-direction)
700. #re # Reynolds number
0.10 #noise # Intensity for initial condition (0.01=1%,1=100%) (t=0) (for lock and temporal)
0.0005 #dt # Time step
#
# INCOMPACT3D Flow configuration
#
1 #iin # Initial condition (0: no-noise, 1: white noise, 2: fixed white noise)
1 #ifirst # First iteration
800000 #ilast # Last iteration
2 #nscheme # Temporal scheme (1:AB2, 2:AB3, 3: RK3, 4:KN+AB3 (-DIMPLICIT flag required))
1 #istret # y-mesh refinement (0:no, 1:center, 2:both sides, 3:bottom)
2. #beta # Refinement parameter
#
# INCOMPACT 3D File parameters
#
0 # ilit # Read initial flow field? (0:no, 1:yes)
100000 # isave # Frequency for writing backup file (sauve.dat)
2000 # imodulo # Frequency for visualization for VISU_INSTA
500001 #initstats1
600001 #initstats2
#
# NUMERICAL DISSIPATION
#
0 #jLES #LES Model (0:DNS, 1:iLES, 2:Explicit Simple Smagorinsky, 3:Explicit Wall-Adaptive LES, 4: Explicit Dynamic Smagorinsky LES)
4. # npi2
#
# INCOMPACT 3D Body (old school)
#
2 #ivirt # IBM? (0:no-IBM, 1: old school, 2: Lagrangian Poly)
#
# INCOMPACT 3D Forcing with Lagrangian Polynomials
#
1 # IBM with Lagrangian polynomials ? (0: no, 1: yes) [ilag]
2 # The highest number of fluid-points at each boundary (0, 1, 2 or 3) [npif]
1 # First fluid-point jump ? (0: no, 1: yes=advised) [izap]
10 #nraf
2 #nobjmax