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projects::MultiPeak Class Reference

#include <MultiPeak.h>

Inheritance diagram for projects::MultiPeak:
Collaboration diagram for projects::MultiPeak:

Public Types

enum  densitymodel { Uniform , TestCase }

Public Member Functions

 MultiPeak ()
virtual ~MultiPeak ()
virtual bool initialize (void) override
virtual void getParameters (void) override
virtual void setProjectBField (fsgrids::perbspan perb, fsgrids::bgbspan bgb, fsgrids::technicalspan technical, FieldSolverGrid &fsgrid) override
virtual Realf fillPhaseSpace (spatial_cell::SpatialCell *cell, const uint popID, const uint nRequested) const override
virtual Realf probePhaseSpace (spatial_cell::SpatialCell *cell, const uint popID, Real vx_in, Real vy_in, Real vz_in) const override
virtual void calcCellParameters (spatial_cell::SpatialCell *cell, creal &t) override
virtual std::vector< std::array< Real, 3 > > getV0 (creal x, creal y, creal z, const uint popID) const override
 Return a vector containing the velocity coordinate of the centre of each ion population in the distribution.
Public Member Functions inherited from projects::Project
 Project ()
virtual ~Project ()
virtual Real getCorrectNumberDensity (spatial_cell::SpatialCell *cell, const uint popID) const
virtual void hook (cuint &stage, const dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid, fsgrids::perbspan perb, fsgrids::technicalspan technical, FieldSolverGrid &fsgrid) const
bool initialized ()
virtual void setupBeforeSetCell (const std::vector< CellID > &cells)
void setCell (spatial_cell::SpatialCell *cell)
 Set the perturbed fields and distribution of a cell according to the default simulation settings. This is used for the NOT_SYSBOUNDARY cells and some other system boundary conditions (e.g. Outflow).
virtual bool canRefine (spatial_cell::SpatialCell *cell) const
virtual bool shouldRefineCell (dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid, CellID id, Real r_max2) const
virtual bool shouldUnrefineCell (dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid, CellID id, Real r_max2) const
virtual bool refineSpatialCells (dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid) const
virtual uint64_t adaptRefinement (dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid) const
 Adapts refinement by one level according to the project. Returns true if any cells were refined, false if not.
virtual bool forceRefinement (dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid, int n) const
 Refine/unrefine spatial cells one level to the static criteria in the config.
virtual bool filterRefined (dccrg::Dccrg< spatial_cell::SpatialCell, dccrg::Cartesian_Geometry > &mpiGrid) const
 Boxcar filters spatial cells that were recently refined.

Static Public Member Functions

static void addParameters (void)
Static Public Member Functions inherited from projects::Project
static void addParameters ()

Public Attributes

std::vector< MultiPeakSpeciesParametersspeciesParams
uint seed
Real Bx
Real By
Real Bz
Real dBx
Real dBy
Real dBz
Real magXPertAbsAmp
Real magYPertAbsAmp
Real magZPertAbsAmp
Real lambda
enum projects::MultiPeak::densitymodel densityModel

Static Public Attributes

static Real rhoRnd

Additional Inherited Members

Protected Member Functions inherited from projects::Project
void setVelocitySpace (const uint popID, spatial_cell::SpatialCell *cell) const
 Sets the distribution function in a cell.
void printPopulations ()
virtual bool rescalesDensity (const uint popID) const
void rescaleDensity (spatial_cell::SpatialCell *cell, const uint popID) const
Real getRandomNumber (std::default_random_engine &randGen) const
void setRandomSeed (uint64_t seedModifier, std::default_random_engine &randGen) const
void setRandomCellSeed (spatial_cell::SpatialCell *cell, std::default_random_engine &randGen) const

Detailed Description

Definition at line 56 of file MultiPeak.h.

Member Enumeration Documentation

◆ densitymodel

Enumerator
Uniform 
TestCase 

Definition at line 98 of file MultiPeak.h.

Constructor & Destructor Documentation

◆ MultiPeak()

projects::MultiPeak::MultiPeak ( )

Definition at line 44 of file MultiPeak.cpp.

◆ ~MultiPeak()

projects::MultiPeak::~MultiPeak ( )
virtual

Definition at line 46 of file MultiPeak.cpp.

Member Function Documentation

◆ addParameters()

void projects::MultiPeak::addParameters ( void )
static

Definition at line 52 of file MultiPeak.cpp.

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◆ calcCellParameters()

void projects::MultiPeak::calcCellParameters ( spatial_cell::SpatialCell * cell,
creal & t )
overridevirtual

Calculate potentially needed parameters for the given spatial cell at the given time.

Currently this function is only called during initialization.

The following array indices contain the coordinates of the "lower left corner" of the cell: CellParams::XCRD, CellParams::YCRD, and CellParams::ZCRD. The cell size is given in the following array indices: CellParams::DX, CellParams::DY, and CellParams::DZ.

Parameters
cellPointer to the spatial cell to be handled.
tThe current value of time. This is passed as a convenience. If you need more detailed information of the state of the simulation, you can read it from Parameters.

Print a warning message to stderr and abort, one should not use the base class functions.

Reimplemented from projects::Project.

Definition at line 267 of file MultiPeak.cpp.

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◆ fillPhaseSpace()

Realf projects::MultiPeak::fillPhaseSpace ( spatial_cell::SpatialCell * cell,
const uint popID,
const uint nRequested ) const
overridevirtual

Calculates the distribution function contents for the spatial cell and population in question NOTE: This function is called inside parallel region so it must be declared as const. This function will contain a loop over nRequested velocity blocks, with the block GlobalIDs provided in the GIDlist buffer, storing phase-space densities in the bufferData buffer.

Parameters
popIDParticle species ID.
Returns
The total stored number density of the cell for this population The physical unit of this quantity is 1/m^3.

Implements projects::Project.

Definition at line 127 of file MultiPeak.cpp.

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◆ getParameters()

void projects::MultiPeak::getParameters ( void )
overridevirtual

Get the value that was read in.

Reimplemented from projects::Project.

Definition at line 82 of file MultiPeak.cpp.

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◆ getV0()

std::vector< std::array< Real, 3 > > projects::MultiPeak::getV0 ( creal x,
creal y,
creal z,
const uint popID ) const
overridevirtual

Return a vector containing the velocity coordinate of the centre of each ion population in the distribution.

This function is used by findBlocksToInitialize() to start the search of the extent of the distribution along each axis. The extension to a vector allows to have more than one population in each spatial cell.

See also
findBlocksToInitialize

Implements projects::TriAxisSearch.

Definition at line 317 of file MultiPeak.cpp.

◆ initialize()

bool projects::MultiPeak::initialize ( void )
overridevirtual

Initialize project. Can be used, e.g., to read in parameters from the input file.

Initialize the Project. Velocity mesh and particle population parameters are read from the configuration file, and corresponding internal variables are created here. NOTE: Each project must call this function!

Returns
If true, particle species and velocity meshes were created successfully.

Reimplemented from projects::Project.

Definition at line 48 of file MultiPeak.cpp.

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◆ probePhaseSpace()

Realf projects::MultiPeak::probePhaseSpace ( spatial_cell::SpatialCell * cell,
const uint popID,
Real vx_in,
Real vy_in,
Real vz_in ) const
overridevirtual

Implements projects::TriAxisSearch.

Definition at line 225 of file MultiPeak.cpp.

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◆ setProjectBField()

void projects::MultiPeak::setProjectBField ( fsgrids::perbspan perb,
fsgrids::bgbspan bgb,
fsgrids::technicalspan technical,
FieldSolverGrid & fsgrid )
overridevirtual

Set the background and perturbed magnetic fields for this project.

Parameters
perBGridGrid on which values of the perturbed field can be set if needed.
BgBGridGrid on which values for the background field can be set if needed, e.g. using the background field functions.
technicalTechnical fsgrid, available if some of its data is necessary.
See also
setBackgroundField, setBackgroundFieldToZero

Print a warning message to stderr and abort, one should not use the base class functions.

Reimplemented from projects::Project.

Definition at line 273 of file MultiPeak.cpp.

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Member Data Documentation

◆ Bx

Real projects::MultiPeak::Bx

Definition at line 87 of file MultiPeak.h.

◆ By

Real projects::MultiPeak::By

Definition at line 88 of file MultiPeak.h.

◆ Bz

Real projects::MultiPeak::Bz

Definition at line 89 of file MultiPeak.h.

◆ dBx

Real projects::MultiPeak::dBx

Definition at line 90 of file MultiPeak.h.

◆ dBy

Real projects::MultiPeak::dBy

Definition at line 91 of file MultiPeak.h.

◆ dBz

Real projects::MultiPeak::dBz

Definition at line 92 of file MultiPeak.h.

◆ densityModel

enum projects::MultiPeak::densitymodel projects::MultiPeak::densityModel

◆ lambda

Real projects::MultiPeak::lambda

Definition at line 96 of file MultiPeak.h.

◆ magXPertAbsAmp

Real projects::MultiPeak::magXPertAbsAmp

Definition at line 93 of file MultiPeak.h.

◆ magYPertAbsAmp

Real projects::MultiPeak::magYPertAbsAmp

Definition at line 94 of file MultiPeak.h.

◆ magZPertAbsAmp

Real projects::MultiPeak::magZPertAbsAmp

Definition at line 95 of file MultiPeak.h.

◆ rhoRnd

Real projects::MultiPeak::rhoRnd
static

Definition at line 85 of file MultiPeak.h.

◆ seed

uint projects::MultiPeak::seed

Definition at line 83 of file MultiPeak.h.

◆ speciesParams

std::vector<MultiPeakSpeciesParameters> projects::MultiPeak::speciesParams

Definition at line 70 of file MultiPeak.h.


The documentation for this class was generated from the following files: