WarpX
HybridPICModel.H
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1 /* Copyright 2023 The WarpX Community
2  *
3  * This file is part of WarpX.
4  *
5  * Authors: Roelof Groenewald (TAE Technologies)
6  *
7  * License: BSD-3-Clause-LBNL
8  */
9 
10 #ifndef WARPX_HYBRIDPICMODEL_H_
11 #define WARPX_HYBRIDPICMODEL_H_
12 
13 #include "HybridPICModel_fwd.H"
14 
17 #include "Utils/WarpXConst.H"
19 #include "WarpX.H"
20 
21 #include <AMReX_Array.H>
22 #include <AMReX_REAL.H>
23 
24 
30 {
31 public:
32  HybridPICModel (int nlevs_max); // constructor
33 
35  void ReadParameters ();
36 
38  void AllocateMFs (int nlevs_max);
39  void AllocateLevelMFs (int lev, const amrex::BoxArray& ba, const amrex::DistributionMapping& dm,
40  int ncomps, const amrex::IntVect& ngJ, const amrex::IntVect& ngRho,
41  const amrex::IntVect& jx_nodal_flag, const amrex::IntVect& jy_nodal_flag,
42  const amrex::IntVect& jz_nodal_flag, const amrex::IntVect& rho_nodal_flag);
43 
45  void ClearLevel (int lev);
46 
47  void InitData ();
48 
59  amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3>> const& Bfield,
60  amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3>> const& edge_lengths
61  );
63  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& Bfield,
64  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& edge_lengths,
65  int lev
66  );
67 
72  void HybridPICSolveE (
73  amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3>>& Efield,
74  amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3>> const& Jfield,
75  amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3>> const& Bfield,
76  amrex::Vector<std::unique_ptr<amrex::MultiFab>> const& rhofield,
77  amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3>> const& edge_lengths,
78  bool include_resistivity_term);
79 
80  void HybridPICSolveE (
81  std::array< std::unique_ptr<amrex::MultiFab>, 3>& Efield,
82  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& Jfield,
83  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& Bfield,
84  std::unique_ptr<amrex::MultiFab> const& rhofield,
85  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& edge_lengths,
86  int lev, bool include_resistivity_term);
87 
88  void HybridPICSolveE (
89  std::array< std::unique_ptr<amrex::MultiFab>, 3>& Efield,
90  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& Jfield,
91  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& Bfield,
92  std::unique_ptr<amrex::MultiFab> const& rhofield,
93  std::array< std::unique_ptr<amrex::MultiFab>, 3> const& edge_lengths,
94  int lev, PatchType patch_type, bool include_resistivity_term);
95 
102  void CalculateElectronPressure ( DtType a_dt_type);
103  void CalculateElectronPressure (int lev, DtType a_dt_type);
104 
114  std::unique_ptr<amrex::MultiFab> const& Pe,
115  amrex::MultiFab* const& rhofield );
116 
117  // Declare variables to hold hybrid-PIC model parameters
119  int m_substeps = 100;
120 
122  amrex::Real m_elec_temp;
124  amrex::Real m_n0_ref = 1.0;
126  amrex::Real m_gamma = 5.0/3.0;
127 
129  amrex::Real m_n_floor = 1.0;
130 
132  std::string m_eta_expression = "0.0";
133  std::unique_ptr<amrex::Parser> m_resistivity_parser;
135 
136  // Declare multifabs specifically needed for the hybrid-PIC model
141 
142  // Helper functions to retrieve hybrid-PIC multifabs
145 
164 };
165 
173 
175  static amrex::Real get_pressure (amrex::Real const n0,
176  amrex::Real const T0,
177  amrex::Real const gamma,
178  amrex::Real const rho) {
179  return n0 * T0 * std::pow((rho/PhysConst::q_e)/n0, gamma);
180  }
181 };
182 
183 #endif // WARPX_HYBRIDPICMODEL_H_
#define AMREX_FORCE_INLINE
#define AMREX_GPU_HOST_DEVICE
PatchType
Definition: WarpX.H:78
DtType
Definition: WarpXDtType.H:11
This class contains the parameters needed to evaluate hybrid field solutions (kinetic ions with fluid...
Definition: HybridPICModel.H:30
void ReadParameters()
Definition: HybridPICModel.cpp:20
amrex::GpuArray< int, 3 > Bz_IndexType
Definition: HybridPICModel.H:157
amrex::GpuArray< int, 3 > Bx_IndexType
Definition: HybridPICModel.H:153
void HybridPICSolveE(amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 >> &Efield, amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 >> const &Jfield, amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 >> const &Bfield, amrex::Vector< std::unique_ptr< amrex::MultiFab >> const &rhofield, amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 >> const &edge_lengths, bool include_resistivity_term)
Function to update the E-field using Ohm's law (hybrid-PIC model).
Definition: HybridPICModel.cpp:216
amrex::Real m_n0_ref
Definition: HybridPICModel.H:124
void CalculateCurrentAmpere(amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 >> const &Bfield, amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 >> const &edge_lengths)
Function to calculate the total current based on Ampere's law while neglecting displacement current (...
Definition: HybridPICModel.cpp:186
amrex::GpuArray< int, 3 > Ez_IndexType
Definition: HybridPICModel.H:163
amrex::MultiFab * get_pointer_electron_pressure_fp(int lev) const
Definition: HybridPICModel.H:144
amrex::Real m_elec_temp
Definition: HybridPICModel.H:122
amrex::GpuArray< int, 3 > Jx_IndexType
Definition: HybridPICModel.H:147
void ClearLevel(int lev)
Definition: HybridPICModel.cpp:97
amrex::GpuArray< int, 3 > Jz_IndexType
Definition: HybridPICModel.H:151
std::unique_ptr< amrex::Parser > m_resistivity_parser
Definition: HybridPICModel.H:133
HybridPICModel(int nlevs_max)
Definition: HybridPICModel.cpp:14
std::string m_eta_expression
Definition: HybridPICModel.H:132
void AllocateMFs(int nlevs_max)
Definition: HybridPICModel.cpp:47
void AllocateLevelMFs(int lev, const amrex::BoxArray &ba, const amrex::DistributionMapping &dm, int ncomps, const amrex::IntVect &ngJ, const amrex::IntVect &ngRho, const amrex::IntVect &jx_nodal_flag, const amrex::IntVect &jy_nodal_flag, const amrex::IntVect &jz_nodal_flag, const amrex::IntVect &rho_nodal_flag)
Definition: HybridPICModel.cpp:55
amrex::Vector< std::unique_ptr< amrex::MultiFab > > electron_pressure_fp
Definition: HybridPICModel.H:140
amrex::ParserExecutor< 1 > m_eta
Definition: HybridPICModel.H:134
amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 > > current_fp_ampere
Definition: HybridPICModel.H:139
amrex::Real m_gamma
Definition: HybridPICModel.H:126
amrex::Vector< std::unique_ptr< amrex::MultiFab > > rho_fp_temp
Definition: HybridPICModel.H:137
int m_substeps
Definition: HybridPICModel.H:119
amrex::GpuArray< int, 3 > Ex_IndexType
Definition: HybridPICModel.H:159
amrex::Real m_n_floor
Definition: HybridPICModel.H:129
void InitData()
Definition: HybridPICModel.cpp:107
void FillElectronPressureMF(std::unique_ptr< amrex::MultiFab > const &Pe, amrex::MultiFab *const &rhofield)
Fill the electron pressure multifab given the kinetic particle charge density (and assumption of quas...
Definition: HybridPICModel.cpp:304
amrex::MultiFab * get_pointer_current_fp_ampere(int lev, int direction) const
Definition: HybridPICModel.H:143
amrex::Vector< std::array< std::unique_ptr< amrex::MultiFab >, 3 > > current_fp_temp
Definition: HybridPICModel.H:138
void CalculateElectronPressure(DtType a_dt_type)
Function to calculate the electron pressure at a given timestep type using the simulation charge dens...
Definition: HybridPICModel.cpp:275
amrex::GpuArray< int, 3 > Jy_IndexType
Definition: HybridPICModel.H:149
amrex::GpuArray< int, 3 > By_IndexType
Definition: HybridPICModel.H:155
amrex::GpuArray< int, 3 > Ey_IndexType
Definition: HybridPICModel.H:161
direction
Definition: AnyFFT.H:75
static constexpr auto q_e
elementary charge [C]
Definition: constant.H:50
int gamma
boosted frame
Definition: stencil.py:431
This struct contains only static functions to compute the electron pressure using the particle densit...
Definition: HybridPICModel.H:172
AMREX_GPU_HOST_DEVICE static AMREX_FORCE_INLINE amrex::Real get_pressure(amrex::Real const n0, amrex::Real const T0, amrex::Real const gamma, amrex::Real const rho)
Definition: HybridPICModel.H:175