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  • dg/dg1d.jl
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with 265 additions and 253 deletions
[ScalarEq]
equation = "advection"
id = "bump"
advection_v = [1,1]
[Evolution]
cfl = 0.5
tend = 0.6
[HRSC]
method = "av"
av_method = "tci"
[Mesh]
range = [ -1.0,1.0, -1.0,1.0 ]
cfl = 0.5
n = [5,5]
k = [15,15]
periodic = [true, true]
range = [-1.0, 1.0, -1.0, 1.0]
k = [15, 15]
basis = "lgl_lumped"
periodic = [true,true]
n = [5, 5]
[Output]
variables = [ "u", "smoothed_mu" ]
enable2d = false
variables = ["u", "smoothed_mu"]
every_dt = 0.1
enable1d = true
enable2d = false
[Evolution]
tend = 0.6
[ScalarEq]
advection_v = [1, 1]
equation = "advection"
id = "bump"
[TCI]
method = "threshold"
[HRSC]
method = "av"
av_method = "tci"
[ScalarEq]
equation = "advection"
id = "sine"
advection_v = [1,0]
[Evolution]
cfl = 0.5
tend = 8.2
[Mesh]
range = [ -1.0,1.0, -1.0,1.0 ]
cfl = 0.5
n = [4,4]
k = [4,4]
periodic = [true, true]
range = [-1.0, 1.0, -1.0, 1.0]
k = [4, 4]
basis = "lgl_lumped"
periodic = [true,true]
n = [4, 4]
[Output]
variables = [ "u" ]
enable2d = false
variables = ["u"]
every_dt = 0.1
enable1d = true
enable2d = false
[Evolution]
tend = 8.2
[ScalarEq]
advection_v = [1, 0]
equation = "advection"
id = "sine"
[ScalarEq]
equation = "advection"
id = "sine"
[Evolution]
cfl = 0.5
tend = 2.2
[Mesh]
range = [ 0.0, 1.0 ]
cfl = 0.5
n = 4
range = [0.0, 1.0]
k = 40
basis = "lgl_lumped"
n = 4
[Output]
variables = [ "u" ]
aligned_ts = [ 0.05, 0.1, 0.15, 0.2 ]
variables = ["u"]
aligned_ts = [0.05, 0.1, 0.15, 0.2]
[Evolution]
tend = 2.2
[ScalarEq]
equation = "advection"
id = "sine"
[ScalarEq]
equation = "advection"
id = "sine"
[Evolution]
cfl = 0.2
tend = 2.2
[Mesh]
range = [ 0.0, 1.0 ]
cfl = 0.2
n = 8
range = [0.0, 1.0]
k = 41
basis = "glgl"
n = 8
[Output]
variables = [ "u" ]
aligned_ts = [ 0.05, 0.1, 0.15, 0.2 ]
variables = ["u"]
aligned_ts = [0.05, 0.1, 0.15, 0.2]
[Evolution]
tend = 2.2
[ScalarEq]
equation = "advection"
id = "sine"
[ScalarEq]
equation = "burgers"
id = "gaussian"
id_gaussian_width = 0.4
id_gaussian_amplitude = 1
[Evolution]
cfl = 0.5
tend = 1.2
[Mesh]
range = [ -1.4,1.4, -1.4,1.4 ]
cfl = 0.5
n = [5,5]
k = [13,13]
periodic = [true, true]
range = [-1.4, 1.4, -1.4, 1.4]
k = [13, 13]
basis = "lgl"
periodic = [true,true]
n = [5, 5]
[Output]
enable2d = false
variables = ["u"]
every_dt = 0.01
every_iteration = 0
every_dt = 0.01
variables = [ "u" ]
enable1d = true
enable2d = false
enable1d = true
[Evolution]
tend = 1.2
[ScalarEq]
equation = "burgers"
id = "gaussian"
id_gaussian_width = 0.4
id_gaussian_amplitude = 1
[ScalarEq]
equation = "burgers"
id = "gaussian"
[Evolution]
cfl = 0.5
tend = 1.2
[HRSC]
method = "av"
av_smoother_order = 2
av_method = "entropy"
[Mesh]
range = [ -5.4,5.4, -5.4,5.4 ]
cfl = 0.5
n = [7,7]
k = [15,15]
periodic = [true, true]
range = [-5.4, 5.4, -5.4, 5.4]
k = [15, 15]
basis = "lgl_lumped"
periodic = [true,true]
n = [7, 7]
[Output]
variables = [ "u", "smoothed_mu", "E" ]
enable2d = false
variables = ["u", "smoothed_mu", "E"]
every_dt = 0.1
enable1d = true
enable2d = false
[Evolution]
tend = 1.2
[HRSC]
method = "av"
av_method = "entropy"
av_smoother_order = 2
[ScalarEq]
equation = "burgers"
id = "gaussian"
[ScalarEq]
equation = "burgers"
id = "gaussian"
id_gaussian_width = 0.4
id_gaussian_amplitude = 1
[Evolution]
cfl = 0.1
tend = 0.2
[HRSC]
method = "none"
[Mesh]
range = [ -1.4, 1.4 ]
cfl = 0.10
n = 5
range = [-1.4, 1.4]
k = 41
basis = "lgl"
n = 5
[Output]
variables = ["u"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u" ]
aligned_ts = [ 1e-10, 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14, 0.16, 0.18, 0.20 ]
[Evolution]
tend = 0.2
aligned_ts = [1.0e-10, 0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14, 0.16, 0.18, 0.2]
[HRSC]
method = "none"
[ScalarEq]
equation = "burgers"
id = "gaussian"
id_gaussian_width = 0.4
id_gaussian_amplitude = 1
[ScalarEq]
equation = "burgers"
id = "sine"
[Evolution]
cfl = 0.1
tend = 0.14
[Mesh]
range = [ 0, 1 ]
cfl = 0.10
n = 2
range = [0, 1]
k = 160
basis = "lgl"
n = 2
[Output]
variables = ["u"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u" ]
aligned_ts = [ 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14 ]
aligned_ts = [0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14]
[Evolution]
# stop before discontinuity appears
tend = 0.14
[ScalarEq]
equation = "burgers"
id = "sine"
[ScalarEq]
equation = "burgers"
id = "sine"
[Evolution]
cfl = 0.1
tend = 0.14
[HRSC]
method = "av"
av_method = "db"
[Mesh]
range = [ 0, 1 ]
cfl = 0.10
n = 9
range = [0, 1]
k = 21
basis = "lgl"
n = 9
[Output]
variables = ["u"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u" ]
aligned_ts = [ 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14 ]
aligned_ts = [0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14]
[Evolution]
# stop before discontinuity appears
tend = 0.14
[ScalarEq]
equation = "burgers"
id = "sine"
[TCI]
method = "minmod"
[HRSC]
method = "av"
av_method = "db"
[ScalarEq]
equation = "burgers"
id = "sine"
[Evolution]
cfl = 0.1
tend = 0.14
[HRSC]
method = "av"
av_method = "entropy"
[Mesh]
range = [ 0, 1 ]
cfl = 0.10
n = 9
range = [0, 1]
k = 21
basis = "lgl"
n = 9
[Output]
variables = ["u", "smoothed_mu"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u", "smoothed_mu" ]
aligned_ts = [ 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14 ]
aligned_ts = [0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14]
[Evolution]
# stop before discontinuity appears
tend = 0.14
[ScalarEq]
equation = "burgers"
id = "sine"
[TCI]
method = "entropy_production"
[HRSC]
method = "av"
av_method = "entropy"
[ScalarEq]
equation = "burgers"
id = "sine"
[Evolution]
cfl = 0.1
tend = 0.14
[HRSC]
method = "av"
av_method = "mda"
[Mesh]
range = [ 0, 1 ]
cfl = 0.10
n = 2
range = [0, 1]
k = 160
basis = "lgl"
n = 2
[Output]
variables = ["u"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u" ]
aligned_ts = [ 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14 ]
aligned_ts = [0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14]
[Evolution]
# stop before discontinuity appears
tend = 0.14
[ScalarEq]
equation = "burgers"
id = "sine"
[TCI]
method = "mda"
[HRSC]
method = "av"
av_method = "mda"
[ScalarEq]
equation = "burgers"
id = "sine"
[Evolution]
cfl = 0.1
tend = 0.14
[HRSC]
method = "av"
av_method = "mdh"
[Mesh]
range = [ 0, 1 ]
cfl = 0.10
n = 2
range = [0, 1]
k = 160
basis = "lgl"
n = 2
[Output]
variables = ["u"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u" ]
aligned_ts = [ 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14 ]
aligned_ts = [0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14]
[Evolution]
# stop before discontinuity appears
tend = 0.14
[ScalarEq]
equation = "burgers"
id = "sine"
[TCI]
method = "mdh"
[HRSC]
method = "av"
av_method = "mdh"
[ScalarEq]
equation = "burgers"
id = "sine"
[Evolution]
cfl = 0.1
tend = 0.14
[HRSC]
method = "av"
av_method = "tci"
[Mesh]
range = [ 0, 1 ]
cfl = 0.10
n = 9
range = [0, 1]
k = 21
basis = "lgl"
n = 9
[Output]
variables = ["u"]
every_dt = 0
every_iteration = 0
every_dt = 0
variables = [ "u" ]
aligned_ts = [ 0.02, 0.04, 0.06, 0.08, 0.10, 0.12, 0.14 ]
aligned_ts = [0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14]
[Evolution]
# stop before discontinuity appears
tend = 0.14
[ScalarEq]
equation = "burgers"
id = "sine"
[TCI]
method = "mda"
[HRSC]
method = "av"
av_method = "tci"
[EquationOfState]
idealgas_gamma = 3.0
eos = "idealgas"
[EulerEq]
id = "smooth_isentropic_flow"
[EquationOfState]
eos = "idealgas"
idealgas_gamma = 3.0
[Evolution]
cfl = 0.5
tend = 0.4
[Mesh]
range = [ -1.0,1.0, -1.0,1.0 ]
cfl = 0.5
n = [3,3]
k = [18,18]
periodic = [true, true]
range = [-1.0, 1.0, -1.0, 1.0]
k = [18, 18]
basis = "lgl"
periodic = [true,true]
n = [3, 3]
[Output]
variables = ["rho", "qx", "qy", "E"]
every_dt = 0.0
every_iteration = 0.0
every_dt = 0.0
aligned_ts = [ 0.05, 0.10, 0.15, 0.20, 0.25, 0.30, 0.35, 0.40 ]
variables = [ "rho", "qx", "qy", "E" ]
enable1d = true
[Evolution]
tend = 0.4
enable1d = true
aligned_ts = [0.05, 0.1, 0.15, 0.2, 0.25, 0.3, 0.35, 0.4]
[EulerEq]
id = "kelvin_helmholtz"
bc = "periodic"
[EquationOfState]
eos = "idealgas"
idealgas_gamma = 1.4
eos = "idealgas"
[Mesh]
range = [ 0.0,1.0, 0.0,1.0 ]
cfl = 0.6
n = [3,3]
k = [64,64]
basis = "lgl"
periodic = [true, true]
[Output]
aligned_ts = [ 0.005, 0.01, 0.015 ]
variables = [ "rho", "qx", "qy", "E", ]
enable1d = true
enable2d = false
format2d = "vtk"
[EulerEq]
id = "kelvin_helmholtz"
bc = "periodic"
[Evolution]
cfl = 0.6
tend = 0.015
[HRSC]
entropy_ce = 0.1
method = "av"
av_method = "entropy"
entropy_cmax = 0.1
entropy_ce = 0.1
av_method = "entropy"
[Mesh]
periodic = [true, true]
range = [0.0, 1.0, 0.0, 1.0]
k = [64, 64]
basis = "lgl"
n = [3, 3]
[Output]
enable2d = false
variables = ["rho", "qx", "qy", "E"]
format2d = "vtk"
enable1d = true
aligned_ts = [0.005, 0.01, 0.015]
[EquationOfState]
idealgas_gamma = 3.0
eos = "idealgas"
[EulerEq]
id = "smooth_isentropic_flow"
[EquationOfState]
eos = "idealgas"
idealgas_gamma = 3.0
[Evolution]
cfl = 0.1
tend = 0.25
[Mesh]
range = [ -1.0, 1.0 ]
cfl = 0.10
n = 3
range = [-1.0, 1.0]
k = 21
basis = "lgl"
n = 3
[Output]
variables = ["rho", "q", "E"]
every_dt = 0.02
every_iteration = 0
every_dt = 0.02
variables = [ "rho", "q", "E" ]
[Evolution]
tend = 0.25
No preview for this file type
[EquationOfState]
eos = "idealgas"
idealgas_gamma = 1.4
eos = "idealgas"
[EulerEq]
bc = "from_id"
id = "sod_shock_tube"
bc = "from_id"
[Mesh]
range = [ -1.0, 1.0 ]
[Evolution]
cfl = 0.4
n = 6
tend = 0.6
[HRSC]
method = "filter"
filter_method = "bernstein"
[Mesh]
periodic = [false]
range = [-1.0, 1.0]
k = 101
basis = "lgl"
periodic = [ false ]
n = 6
[Output]
variables = ["rho", "q", "E"]
every_iteration = 0
aligned_ts = [ 0.1, 0.2, 0.3, 0.4, 0.5, 0.6 ]
variables = [ "rho", "q", "E" ]
[Evolution]
tend = 0.6
aligned_ts = [0.1, 0.2, 0.3, 0.4, 0.5, 0.6]
[TCI]
method = "mda"
[HRSC]
method = "filter"
filter_method = "bernstein"
No preview for this file type
[ScalarEq]
equation = "advection"
id = "sine"
[Mesh]
range = [ 0.0, 1.0 ]
k = 256
basis = "lgl_lumped"
scheme = "FV"
[Output]
every_iteration = 0
variables = [ "u" ]
aligned_ts = [ 0.25, 0.50, 0.75, 1.0, 1.25, 1.50, 1.75, 2.0 ]
[Evolution]
tend = 2.2
cfl = 0.9