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[P]arallel [Hi]gh-order [Li]brary for [P]DEs
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Parallel High-Order Library for PDEs through hp-adaptive Discontinuous Galerkin methods
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Function used to evaluate initial turbulent channel conservative solution. More...
#include <initial_condition_function.h>
Public Member Functions | |
| InitialConditionFunction_TurbulentChannelFlow (const Physics::NavierStokes< dim, nspecies, nstate, double > navier_stokes_physics_, const double channel_friction_velocity_reynolds_number_, const double domain_length_x_, const double domain_length_y_, const double domain_length_z_) | |
| < dealii::Function we are templating on More... | |
| real | value (const dealii::Point< dim, real > &point, const unsigned int istate=0) const override |
| Value of initial condition expressed in terms of conservative variables. | |
Public Member Functions inherited from PHiLiP::InitialConditionFunction< dim, nspecies, nstate, real > | |
| InitialConditionFunction () | |
| < dealii::Function we are templating on More... | |
Public Attributes | |
| const Physics::NavierStokes< dim, nspecies, nstate, double > | navier_stokes_physics |
| Navier-Stokes physics object. | |
| const double | channel_friction_velocity_reynolds_number |
| Channel Reynolds number based on wall friction velocity. | |
| const double | domain_length_x |
| Domain length in x-direction. | |
| const double | domain_length_y |
| Domain length in y-direction. | |
| const double | domain_length_z |
| Domain length in z-direction. | |
| const double | channel_height |
| Channel height. | |
| const double | half_channel_height |
| Half channel height. | |
Protected Member Functions | |
| real | get_distance_from_wall (const dealii::Point< dim, real > &point) const |
| distance from closest wall | |
| virtual real | x_velocity (const dealii::Point< dim, real > &point, const real density, const real temperature) const |
| x-velocity | |
| virtual real | y_velocity (const dealii::Point< dim, real > &point) const |
| y-velocity | |
Function used to evaluate initial turbulent channel conservative solution.
Definition at line 66 of file initial_condition_function.h.
| PHiLiP::InitialConditionFunction_TurbulentChannelFlow< dim, nspecies, nstate, real >::InitialConditionFunction_TurbulentChannelFlow | ( | const Physics::NavierStokes< dim, nspecies, nstate, double > | navier_stokes_physics_, |
| const double | channel_friction_velocity_reynolds_number_, | ||
| const double | domain_length_x_, | ||
| const double | domain_length_y_, | ||
| const double | domain_length_z_ | ||
| ) |
< dealii::Function we are templating on
Constructor.
Definition at line 24 of file initial_condition_function.cpp.