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ryujin 2.1.1 revision 6dc06e5864abd5d99e5d7ab641dbe621936411d9
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#include <source/euler/initial_state_shock_front.h>
Public Types | |
using | HyperbolicSystem = typename Description::HyperbolicSystem |
using | View = typename Description::template HyperbolicSystemView< dim, Number > |
using | state_type = typename View::state_type |
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using | View = typename Description::template HyperbolicSystemView< dim, Number > |
using | state_type = typename View::state_type |
using | initial_precomputed_type = typename View::initial_precomputed_type |
Public Member Functions | |
ShockFront (const HyperbolicSystem &hyperbolic_system, const std::string subsection) | |
state_type | compute (const dealii::Point< dim > &point, Number t) final |
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InitialState (const std::string &name, const std::string &subsection) | |
virtual state_type | compute (const dealii::Point< dim > &point, Number t)=0 |
virtual initial_precomputed_type | initial_precomputations (const dealii::Point< dim > &) |
const auto & | name () const |
The S1/S3 shock front.
An Analytic solution for the compressible Euler equations with polytropic gas equation of state consisting of a shock front evolving in time.
t
and position x
. Definition at line 27 of file initial_state_shock_front.h.
using ryujin::EulerInitialStates::ShockFront< Description, dim, Number >::HyperbolicSystem = typename Description::HyperbolicSystem |
Definition at line 30 of file initial_state_shock_front.h.
using ryujin::EulerInitialStates::ShockFront< Description, dim, Number >::View = typename Description::template HyperbolicSystemView<dim, Number> |
Definition at line 31 of file initial_state_shock_front.h.
using ryujin::EulerInitialStates::ShockFront< Description, dim, Number >::state_type = typename View::state_type |
Definition at line 33 of file initial_state_shock_front.h.
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inline |
Definition at line 35 of file initial_state_shock_front.h.
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inlinefinalvirtual |
Given a position point
returns the corresponding (conserved) initial state. The function is used to interpolate initial values and enforce Dirichlet boundary conditions. For the latter, the function signature has an additional parameter t
denoting the current time to allow for time-dependent (in-flow) Dirichlet data.
Implements ryujin::InitialState< Description, dim, Number >.
Definition at line 105 of file initial_state_shock_front.h.