bgk_advRel_MSGas_generic Subroutine

public subroutine bgk_advRel_MSGas_generic(fieldProp, inState, outState, auxField, neigh, nElems, nSolve, level, layout, params, varSys, derVarPos)

Unoptimized Advection relaxation routine for the multispecies BGK model for testing

This routine contains the implementation of semi-implicit lattice boltzmann equation using variable transformation based on the paper "Multi-species Lattice Boltzmann Model and Practical Examples. Short Course material Pietro Asinari PhD." \n Refer page: Multispecies for more information In the variable tranformation steps, we can skip the step 1 and step 3 and evaluate only step 2 based on tranformed variable g only prerequisite is to compute feq which depends on original f not on g. feq is depend on density and velocity. Where density can be computed directly from g and velocity computed from linear system of equation given in the reference page Multispecies. KM: This is an non-optimized kernel

This subroutine interface must match the abstract interface definition kernel in scheme/mus_scheme_type_module.f90 in order to be callable via compute function pointer.

Arguments

Type IntentOptional Attributes Name
type(mus_field_prop_type), intent(in) :: fieldProp(:)

Array of field properties (fluid or species)

real(kind=rk), intent(in) :: inState(nElems*varSys%nScalars)

input pdf vector

real(kind=rk), intent(out) :: outState(nElems*varSys%nScalars)

output pdf vector

real(kind=rk), intent(inout) :: auxField(nElems*varSys%nAuxScalars)

Auxiliary field computed from pre-collision state Is updated with correct velocity field for multicomponent models

integer, intent(in) :: neigh(nElems*layout%fStencil%QQ)

connectivity vector

integer, intent(in) :: nElems

number of elements in state Array

integer, intent(in) :: nSolve

number of elements solved in kernel

integer, intent(in) :: level

current level

type(mus_scheme_layout_type), intent(in) :: layout

current layout

type(mus_param_type), intent(in) :: params

global parameters

type(tem_varSys_type), intent(in) :: varSys

variable system definition

type(mus_derVarPos_type), intent(in) :: derVarPos(:)

position of derived quantities in varsys for all fields


Calls

proc~~bgk_advrel_msgas_generic~~CallsGraph proc~bgk_advrel_msgas_generic bgk_advRel_MSGas_generic auxfield_varpos auxfield_varpos proc~bgk_advrel_msgas_generic->auxfield_varpos cxdir cxdir proc~bgk_advrel_msgas_generic->cxdir invert_matrix invert_matrix proc~bgk_advrel_msgas_generic->invert_matrix tem_abort tem_abort proc~bgk_advrel_msgas_generic->tem_abort val val proc~bgk_advrel_msgas_generic->val