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input_naca_shock_visc
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input_naca_shock_visc
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----------------------------
Solver parameters
----------------------------
equation // 0: Euler/Navier-Stokes, 1:Advection/Adv-Diffusion
0
viscous
1
riemann_solve_type // 0: Rusanov, 1: Lax-Friedrich, 2: Roe
0
vis_riemann_solve_type // 0: LDG
0
ic_form // 0: Isentropic Vortex, 1: Uniform flow, 2: Sine Wave
1
test_case // 0: Normal (doesn't have an analytical solution), 1:Isentropic Vortex, 2: Advection-Equation
0
order // Order of basis polynomials
2
dt_type
0
dt
0.00001
n_steps
1000000
adv_type // 0: Forward Euler, 3: RK45
3
tau
1.0
pen_fact
0.5
-----------------------
Restart options
-----------------------
restart_flag
1
restart_iter
145000
n_restart_files
1
-----------------------
Mesh options
-----------------------
mesh_file
Naca_0012_8K_visc.neu
dx_cyclic
200000000.0
dy_cyclic
200000000.0
dz_cyclic
200000000.0
-----------------------------------
Monitoring, plotting parameters
-----------------------------------
p_res // Plotting resolution, number of nodes per direction
6
write_type // 0: Paraview, 1: Tecplot
0
n_diagnostic_fields
2 pressure sensor //epsilon
inters_cub_order // Order of cubature rule for integrating over element interfaces
12
volume_cub_order // Order of cubature rule for integrating over element volumes
12
plot_freq
1000
restart_dump_freq
5000
monitor_integrals_freq
0
monitor_res_freq
1000
monitor_cp_freq
10000
res_norm_type // 0:infinity norm, 1:L1 norm, 2:L2 norm
2
error_norm_type // 0:infinity norm, 1:L1 norm, 2:L2 norm
2
res_norm_field // Density
0
---------------------------
Wave Equation parameters
---------------------------
wave_speed_x
1.
wave_speed_y
0.
wave_speed_z
0.
lambda // 1: upwind
1
---------------------------
Element parameters
---------------------------
upts_type_tri
0
fpts_type_tri
0
vcjh_scheme_tri
4
c_tri
2.0e-4
sparse_tri
0
upts_type_quad
1
vcjh_scheme_quad
4
eta_quad
0.0
sparse_quad
0
upts_type_hexa
0
vcjh_scheme_hexa
4
eta_hexa
0.
sparse_hexa
0
upts_type_tet
0
fpts_type_tet
0
vcjh_scheme_tet
4
c_tet
2.0e-4
eta_tet
0.0
sparse_tet
0
upts_type_pri_tri
0
upts_type_pri_1d
0
vcjh_scheme_pri_1d
0
eta_pri
0.0
sparse_pri
0
------------------------------------
Fluid Parameters
------------------------------------
gamma
1.4
prandtl
0.72
S_gas
120.
T_gas
291.15
R_gas
286.9
mu_gas
1.827E-05
-----------------------------------
Boundary conditions
-----------------------------------
---------
Viscous
---------
fix_vis // 0: Sutherland's law, 1: Constant viscosity
1.
Mach_free_stream
1.2
nx_free_stream
0.984807753 //0.996194
ny_free_stream
0.173648178 //0.087155
nz_free_stream
0.
Re_free_stream
10000.
L_free_stream
1.
T_free_stream
300
Mach_wall
0.
nx_wall
1.
ny_wall
0.
nz_wall
0.
T_wall
300
Mach_c_ic
1.2
nx_c_ic
0.984807753 //0.996194
ny_c_ic
0.173648178 //0.087155
nz_c_ic
0.
Re_c_ic
20000
T_c_ic
300
-----------
Inviscid
-----------
rho_c_ic
1.0
u_c_ic
5.5
v_c_ic
0.1
w_c_ic
0.0
p_c_ic
17.857142857142854098
rho_bound
1.
u_bound
5.5
v_bound
0.1
w_bound
0.0
p_bound
17.857142857142854098
---------------------------------
Artificial Viscosity Parameters
---------------------------------
artif_only // To run inviscid case with artificial viscosity (mu = 0), set this to 1 - don't use it for concentration method
0
artif_type // Type of artificial viscosity - 0 for Persson's method and 1 for Concentration method
1
ArtifOn
1
epsilon0 // Set this to 0 if you don't want artificial viscosity at all
-0.000
s0
2.0
kappa
0.0