Book a Demo!
CoCalc Logo Icon
StoreFeaturesDocsShareSupportNewsAboutPoliciesSign UpSign In
trixi-framework
GitHub Repository: trixi-framework/Trixi.jl
Path: blob/main/examples/tree_1d_fdsbp/elixir_euler_density_wave.jl
5586 views
1
# !!! warning "Experimental implementation (upwind SBP)"
2
# This is an experimental feature and may change in future releases.
3
4
using OrdinaryDiffEqSSPRK
5
using Trixi
6
7
###############################################################################
8
# semidiscretization of the compressible Euler equations
9
equations = CompressibleEulerEquations1D(1.4)
10
11
initial_condition = initial_condition_density_wave
12
13
D_upw = upwind_operators(SummationByPartsOperators.Mattsson2017,
14
derivative_order = 1,
15
accuracy_order = 4,
16
xmin = -1.0, xmax = 1.0,
17
N = 16)
18
flux_splitting = splitting_coirier_vanleer
19
solver = FDSBP(D_upw,
20
surface_integral = SurfaceIntegralUpwind(flux_splitting),
21
volume_integral = VolumeIntegralUpwind(flux_splitting))
22
23
coordinates_min = -1.0
24
coordinates_max = 1.0
25
mesh = TreeMesh(coordinates_min, coordinates_max,
26
initial_refinement_level = 2,
27
n_cells_max = 30_000, periodicity = true)
28
29
semi = SemidiscretizationHyperbolic(mesh, equations, initial_condition, solver;
30
boundary_conditions = boundary_condition_periodic)
31
32
###############################################################################
33
# ODE solvers, callbacks etc.
34
35
tspan = (0.0, 100.0)
36
ode = semidiscretize(semi, tspan)
37
38
summary_callback = SummaryCallback()
39
40
analysis_interval = 10000
41
analysis_callback = AnalysisCallback(semi, interval = analysis_interval)
42
43
alive_callback = AliveCallback(analysis_interval = analysis_interval)
44
45
save_solution = SaveSolutionCallback(interval = 100,
46
save_initial_solution = true,
47
save_final_solution = true,
48
solution_variables = cons2prim)
49
50
callbacks = CallbackSet(summary_callback,
51
analysis_callback, alive_callback,
52
save_solution)
53
54
###############################################################################
55
# run the simulation
56
57
sol = solve(ode, SSPRK43(); abstol = 1.0e-6, reltol = 1.0e-6,
58
ode_default_options()..., callback = callbacks)
59
60