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elixir_euler_source_terms.jl
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elixir_euler_source_terms.jl
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using OrdinaryDiffEq
using Trixi
###############################################################################
# semidiscretization of the compressible Euler equations
equations = CompressibleEulerEquations2D(1.4)
initial_condition = initial_condition_convergence_test
solver = DGSEM(polydeg = 3, surface_flux = flux_lax_friedrichs)
coordinates_min = (0.0, 0.0)
coordinates_max = (2.0, 2.0)
mesh = TreeMesh(coordinates_min, coordinates_max,
initial_refinement_level = 4,
n_cells_max = 10_000)
semi = SemidiscretizationHyperbolic(mesh, equations, initial_condition, solver,
source_terms = source_terms_convergence_test)
###############################################################################
# ODE solvers, callbacks etc.
tspan = (0.0, 2.0)
ode = semidiscretize(semi, tspan)
summary_callback = SummaryCallback()
analysis_interval = 100
analysis_callback = AnalysisCallback(semi, interval = analysis_interval)
alive_callback = AliveCallback(analysis_interval = analysis_interval)
save_solution = SaveSolutionCallback(interval = 100,
save_initial_solution = true,
save_final_solution = true,
solution_variables = cons2prim)
stepsize_callback = StepsizeCallback(cfl = 1.0)
callbacks = CallbackSet(summary_callback,
analysis_callback, alive_callback,
save_solution,
stepsize_callback)
###############################################################################
# run the simulation
sol = solve(ode, CarpenterKennedy2N54(williamson_condition = false),
dt = 1.0, # solve needs some value here but it will be overwritten by the stepsize_callback
save_everystep = false, callback = callbacks);
summary_callback() # print the timer summary