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solve_poisson_turb.hpp
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1 #ifndef SOLVE_POISSON_TURB_HPP
2 #define SOLVE_POISSON_TURB_HPP
3 
4 #include "grid.hpp"
6 #include "grid_field.hpp"
8 #include "smoothing.hpp"
9 #include "sml.hpp"
10 #include "electric_field.hpp"
11 #include "plasma.hpp"
12 #include "perturbed_B_field.hpp"
13 #include "charge.hpp"
14 #include "solver_settings.hpp"
15 
16 void solve_poisson_turb(const Simulation<DeviceType>& sml, const MagneticField<DeviceType>& magnetic_field, const Grid<DeviceType>& grid, const DomainDecomposition<DeviceType>& pol_decomp, Smoothing& smoothing, Plasma& plasma, const Charges& charges, int ipc, SolverSetting solver_setting, const ElectricField<DeviceType>& electric_field, bool save_rhs);
17 
18 #endif
Definition: charge.hpp:81
Definition: sml.hpp:8
subroutine plasma(grid, itr, p, dene_out, deni_out, Te_out, Ti_out, Vparai_out)
Calculate the plasma density, temperature, and parallel velocity for a point in triangle itr using pl...
Definition: neutral_totalf.F90:1224
Definition: magnetic_field.hpp:13
Definition: electric_field.hpp:40
SolverSetting
Definition: solver_settings.hpp:4
void solve_poisson_turb(const Simulation< DeviceType > &sml, const MagneticField< DeviceType > &magnetic_field, const Grid< DeviceType > &grid, const DomainDecomposition< DeviceType > &pol_decomp, Smoothing &smoothing, Plasma &plasma, const Charges &charges, int ipc, SolverSetting solver_setting, const ElectricField< DeviceType > &electric_field, bool save_rhs)
Definition: solve_poisson_turb.cpp:220
Definition: smoothing.hpp:8
Definition: magnetic_field.F90:1
Definition: plasma.hpp:14