ECDGModel2D Derived Type

type, public, extends(ECDGModel2D_t) :: ECDGModel2D


Inherits

type~~ecdgmodel2d~2~~InheritsGraph type~ecdgmodel2d~2 ECDGModel2D type~ecdgmodel2d_t ECDGModel2D_t type~ecdgmodel2d~2->type~ecdgmodel2d_t type~mappedtwopointvector2d MappedTwoPointVector2D type~ecdgmodel2d_t->type~mappedtwopointvector2d twoPointFlux type~dgmodel2d~2 DGModel2D type~ecdgmodel2d_t->type~dgmodel2d~2 type~mappedtwopointvector2d_t MappedTwoPointVector2D_t type~mappedtwopointvector2d->type~mappedtwopointvector2d_t type~dgmodel2d_t DGModel2D_t type~dgmodel2d~2->type~dgmodel2d_t type~semquad SEMQuad type~mappedtwopointvector2d_t->type~semquad geometry type~twopointvector2d TwoPointVector2D type~mappedtwopointvector2d_t->type~twopointvector2d type~dgmodel2d_t->type~semquad geometry type~mappedvector2d MappedVector2D type~dgmodel2d_t->type~mappedvector2d solutionGradient, flux type~mappedscalar2d~2 MappedScalar2D type~dgmodel2d_t->type~mappedscalar2d~2 solution, source, fluxDivergence, dSdt, workSol type~mesh2d Mesh2D type~dgmodel2d_t->type~mesh2d mesh type~boundaryconditionlist BoundaryConditionList type~dgmodel2d_t->type~boundaryconditionlist hyperbolicBCs, parabolicBCs type~model Model type~dgmodel2d_t->type~model type~vector2d~2 Vector2D type~semquad->type~vector2d~2 x, nHat, xMesh type~tensor2d~2 Tensor2D type~semquad->type~tensor2d~2 dxds, dsdx type~lagrange Lagrange type~semquad->type~lagrange meshToModel type~scalar2d~2 Scalar2D type~semquad->type~scalar2d~2 nScale, J type~mappedvector2d_t MappedVector2D_t type~mappedvector2d->type~mappedvector2d_t type~mappedscalar2d_t MappedScalar2D_t type~mappedscalar2d~2->type~mappedscalar2d_t type~mesh2d_t Mesh2D_t type~mesh2d->type~mesh2d_t type~twopointvector2d_t TwoPointVector2D_t type~twopointvector2d->type~twopointvector2d_t type~boundarycondition BoundaryCondition type~boundaryconditionlist->type~boundarycondition current, head, tail type~vector2d_t Vector2D_t type~vector2d~2->type~vector2d_t type~tensor2d_t Tensor2D_t type~tensor2d~2->type~tensor2d_t type~mappedvector2d_t->type~semquad geometry type~mappedvector2d_t->type~vector2d~2 type~lagrange_t Lagrange_t type~lagrange->type~lagrange_t type~scalar2d_t Scalar2D_t type~scalar2d~2->type~scalar2d_t type~mappedscalar2d_t->type~semquad geometry type~mappedscalar2d_t->type~scalar2d~2 type~semmesh SEMMesh type~mesh2d_t->type~semmesh type~self_dataobj SELF_DataObj type~twopointvector2d_t->type~self_dataobj type~boundarycondition->type~boundarycondition next, prev c_ptr c_ptr type~boundarycondition->c_ptr elements_gpu, sides_gpu type~vector2d_t->type~self_dataobj type~tensor2d_t->type~self_dataobj type~scalar2d_t->type~self_dataobj type~domaindecomposition DomainDecomposition type~semmesh->type~domaindecomposition decomp type~self_dataobj->type~lagrange interp type~metadata Metadata type~self_dataobj->type~metadata meta EquationParser EquationParser type~self_dataobj->EquationParser eqn type~domaindecomposition_t DomainDecomposition_t type~domaindecomposition->type~domaindecomposition_t

Contents

Source Code


Components

TypeVisibilityAttributesNameInitial
type(MappedScalar2D), public :: dSdt
real(kind=prec), public :: dt
real(kind=prec), public :: entropy
type(MappedVector2D), public :: flux
type(MappedScalar2D), public :: fluxDivergence
type(SEMQuad), public, pointer:: geometry=> null()
logical, public :: gradient_enabled =.false.
type(BoundaryConditionList), public :: hyperbolicBCs
integer, public :: ioIterate =0
type(Mesh2D), public, pointer:: mesh=> null()
integer, public :: nstepped =0
integer, public :: nvar
type(BoundaryConditionList), public :: parabolicBCs

Pre-regrid copy of the solution, held between StageSolutionForTransfer and ApplyTransferPlan so that Regrid is free to release the storage it was read from. The base implementation stages on the host; the GPU backend overrides both procedures and stages device-side instead, leaving this unallocated.

logical, public :: prescribed_bcs_enabled =.true.
type(MappedScalar2D), public :: solution
type(MappedVector2D), public :: solutionGradient
type(MappedScalar2D), public :: source
real(kind=prec), public :: t
logical, public :: tecplot_enabled =.true.
procedure(SELF_timeIntegrator), public, pointer:: timeIntegrator=> Euler_timeIntegrator
real(kind=prec), public, allocatable:: transferStage(:,:,:,:)
type(MappedTwoPointVector2D), public :: twoPointFlux
type(MappedScalar2D), public :: workSol

Type-Bound Procedures

procedure, public :: AdditionalFree => AdditionalFree_Model

  • public subroutine AdditionalFree_Model(this)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: AdditionalInit => AdditionalInit_Model

  • public subroutine AdditionalInit_Model(this)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: AdditionalOutput => AdditionalOutput_Model

  • public subroutine AdditionalOutput_Model(this, fileid)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    integer(kind=HID_T), intent(in) :: fileid

procedure, public :: ApplyTransferPlan => ApplyTransferPlan_DGModel2D_t

  • public subroutine ApplyTransferPlan_DGModel2D_t(this, plan, interp, eFirst, eLast, uGlobal)

    Transfer the staged pre-regrid solution onto the regridded mesh through plan, filling the rank-local element range [eFirst,eLast] of the new solution.

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this
    type(TransferPlan2D), intent(in), target:: plan
    type(Lagrange), intent(in) :: interp
    integer, intent(in) :: eFirst
    integer, intent(in) :: eLast
    real(kind=prec), intent(in), optional :: uGlobal(:,:,:,:)

procedure, public :: BoundaryFlux => BoundaryFlux_DGModel2D_t

procedure, public :: CalculateEntropy => CalculateEntropy_DGModel2D_t

procedure, public :: CalculateSolutionGradient => CalculateSolutionGradient_DGModel2D_t

procedure, public :: CalculateTendency => CalculateTendency_ECDGModel2D

procedure, public :: Euler_timeIntegrator

  • public subroutine Euler_timeIntegrator(this, tn)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    real(kind=prec), intent(in) :: tn

procedure, public :: FluxMethod => fluxmethod_DGModel2D_t

procedure, public :: ForwardStep => ForwardStep_Model

  • public subroutine ForwardStep_Model(this, tn, dt, ioInterval)

    Forward steps the model using the associated tendency procedure and time integrator

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    real(kind=prec), intent(in) :: tn
    real(kind=prec), intent(in) :: dt
    real(kind=prec), intent(in) :: ioInterval

procedure, public :: Free => Free_ECDGModel2D_t

procedure, public :: GetSimulationTime

  • public subroutine GetSimulationTime(this, t)

    Returns the current simulation time stored in the model % t attribute

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(out) :: t

procedure, public :: IncrementIOCounter

  • public subroutine IncrementIOCounter(this)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: Init => Init_ECDGModel2D_t

  • public subroutine Init_ECDGModel2D_t(this, mesh, geometry)

    Arguments

    TypeIntentOptionalAttributesName
    class(ECDGModel2D_t), intent(out) :: this
    type(Mesh2D), intent(in), target:: mesh
    type(SEMQuad), intent(in), target:: geometry

procedure, public :: LowStorageRK2_timeIntegrator

  • public subroutine LowStorageRK2_timeIntegrator(this, tn)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    real(kind=prec), intent(in) :: tn

procedure, public :: LowStorageRK3_timeIntegrator

  • public subroutine LowStorageRK3_timeIntegrator(this, tn)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    real(kind=prec), intent(in) :: tn

procedure, public :: LowStorageRK4_timeIntegrator

  • public subroutine LowStorageRK4_timeIntegrator(this, tn)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    real(kind=prec), intent(in) :: tn

procedure, public :: MapBoundaryConditions => MapBoundaryConditions_DGModel2D_t

  • public subroutine MapBoundaryConditions_DGModel2D_t(this)

    Scan the mesh sideInfo and populate the elements/sides arrays for each registered boundary condition.

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this

procedure, public :: PostStepHook => PostStepHook_Model

  • public subroutine PostStepHook_Model(this)

    PostStepHook is a template routine invoked by the time integrators once immediately after each completed time step (after this%t has advanced by this%dt). The default implementation is a no-op.

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: PreStepHook => PreStepHook_Model

  • public subroutine PreStepHook_Model(this)

    PreStepHook is a template routine invoked by the time integrators once immediately before each time step is taken (before any Runge-Kutta stages of that step). The default implementation is a no-op.

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: PreTendencyHook => PreTendencyHook_Model

  • public subroutine PreTendencyHook_Model(this)

    PreTendencyHook is a template routine that is used to house any additional calculations that you want to execute at the beginning of the tendency calculation routine. This default PreTendencyHook simply returns back to the caller without executing any instructions

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: PrintType => PrintType_Model

  • public subroutine PrintType_Model(this)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this

procedure, public :: ReadModel => Read_DGModel2D_t

  • public subroutine Read_DGModel2D_t(this, fileName)

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this
    character, intent(in) :: fileName

procedure, public :: Regrid => Regrid_DGModel2D_t

  • public subroutine Regrid_DGModel2D_t(this, mesh, geometry)

    Rebind a live model to a new mesh/geometry pair (AMR regrid). The mesh-sized solution storage is reallocated and the boundary-condition registrations and maps are rebuilt for the new mesh, while everything that is not mesh-sized is preserved: the time state (t, dt, entropy, IO counter), the time-integrator selection, configuration flags, and any model-specific parameters (Init is intent(out) and would reset all of these). nvar/nstepped are unchanged - the model solves the same equations on a new mesh.

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this
    type(Mesh2D), intent(in), target:: mesh
    type(SEMQuad), intent(in), target:: geometry

procedure, public :: ReportEntropy => ReportEntropy_Model

  • public subroutine ReportEntropy_Model(this)

    Base method for reporting the entropy of a model to stdout. Only override this procedure if additional reporting is needed. Alternatively, if you think additional reporting would be valuable for all models, open a pull request with modifications to this base method.

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this

procedure, public :: ReportMetrics => ReportMetrics_DGModel2D_t

  • public subroutine ReportMetrics_DGModel2D_t(this)

    Base method for reporting the entropy of a model to stdout. Only override this procedure if additional reporting is needed. Alternatively, if you think additional reporting would be valuable for all models, open a pull request with modifications to this base method.

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this

procedure, public :: ReportUserMetrics => ReportUserMetrics_Model

  • public subroutine ReportUserMetrics_Model(this)

    Method that can be overridden by users to report their own custom metrics after file io

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this

procedure, public :: SetBoundaryCondition => setboundarycondition_DGModel2D_t

  • public subroutine setboundarycondition_DGModel2D_t(this)

    Apply registered boundary conditions for the solution. Each boundary condition method loops over its own boundary faces.

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this

procedure, public :: SetGradientBoundaryCondition => setgradientboundarycondition_DGModel2D_t

  • public subroutine setgradientboundarycondition_DGModel2D_t(this)

    Apply registered boundary conditions for the solution gradient. Each boundary condition method loops over its own boundary faces.

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this

procedure, public :: SetMetadata => SetMetadata_DGModel2D_t

procedure, public :: SetNumberOfVariables => SetNumberOfVariables_Model

procedure, public :: SetSimulationTime

  • public subroutine SetSimulationTime(this, t)

    Sets the model % t attribute with the provided simulation time

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    real(kind=prec), intent(in) :: t

generic, public :: SetTimeIntegrator => SetTimeIntegrator_withChar

  • public subroutine SetTimeIntegrator_withChar(this, integrator)

    Sets the time integrator method, using a character input

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(inout) :: this
    character, intent(in) :: integrator

procedure, public :: SourceMethod => sourcemethod_DGModel2D_t

procedure, public :: StageSolutionForTransfer => StageSolutionForTransfer_DGModel2D_t

  • public subroutine StageSolutionForTransfer_DGModel2D_t(this)

    Preserve the current solution ahead of a regrid, so that Regrid may release the storage it lives in. Pair with ApplyTransferPlan, which consumes the staged copy:

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this

procedure, public :: TwoPointFluxMethod => TwoPointFluxMethod_ECDGModel2D_t

  • public subroutine TwoPointFluxMethod_ECDGModel2D_t(this)

    Computes pre-projected SCALAR contravariant two-point fluxes for all node pairs and stores them in twoPointFlux%interior(n,i,j,iel,ivar,r).

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(ECDGModel2D_t), intent(inout) :: this

procedure, public :: UpdateGRK2 => UpdateGRK2_DGModel2D_t

procedure, public :: UpdateGRK3 => UpdateGRK3_DGModel2D_t

procedure, public :: UpdateGRK4 => UpdateGRK4_DGModel2D_t

procedure, public :: UpdateSolution => UpdateSolution_DGModel2D_t

  • public subroutine UpdateSolution_DGModel2D_t(this, dt)

    Computes a solution update as , where dt is either provided through the interface or taken as the Model's stored time step size (model % dt)

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this
    real(kind=prec), intent(in), optional :: dt

procedure, public :: WriteModel => Write_DGModel2D_t

  • public subroutine Write_DGModel2D_t(this, fileName)

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this
    character, intent(in), optional :: fileName

procedure, public :: WriteTecplot => WriteTecplot_DGModel2D_t

  • public subroutine WriteTecplot_DGModel2D_t(this, filename)

    Arguments

    TypeIntentOptionalAttributesName
    class(DGModel2D_t), intent(inout) :: this
    character, intent(in), optional :: filename

procedure, public :: entropy_func => entropy_func_Model

  • public pure function entropy_func_Model(this, s) result(e)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)

    Return Value real(kind=prec)

procedure, public :: flux1D => flux1d_Model

  • public pure function flux1d_Model(this, s, dsdx) result(flux)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar)

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: flux2D => flux2d_Model

  • public pure function flux2d_Model(this, s, dsdx) result(flux)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar,1:2)

    Return Value real(kind=prec)(1:this%nvar,1:2)

procedure, public :: flux3D => flux3d_Model

  • public pure function flux3d_Model(this, s, dsdx) result(flux)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar,1:3)

    Return Value real(kind=prec)(1:this%nvar,1:3)

procedure, public :: riemannflux1d => riemannflux1d_Model

  • public pure function riemannflux1d_Model(this, sL, sR, dsdx, nhat) result(flux)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: sL(1:this%nvar)
    real(kind=prec), intent(in) :: sR(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar)
    real(kind=prec), intent(in) :: nhat

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: riemannflux2d => riemannflux2d_Model

  • public pure function riemannflux2d_Model(this, sL, sR, dsdx, nhat) result(flux)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: sL(1:this%nvar)
    real(kind=prec), intent(in) :: sR(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar,1:2)
    real(kind=prec), intent(in) :: nhat(1:2)

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: riemannflux3d => riemannflux3d_Model

  • public pure function riemannflux3d_Model(this, sL, sR, dsdx, nhat) result(flux)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: sL(1:this%nvar)
    real(kind=prec), intent(in) :: sR(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar,1:3)
    real(kind=prec), intent(in) :: nhat(1:3)

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: source1d => source1d_Model

  • public pure function source1d_Model(this, s, dsdx) result(source)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar)

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: source2d => source2d_Model

  • public pure function source2d_Model(this, s, dsdx) result(source)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar,1:2)

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: source3d => source3d_Model

  • public pure function source3d_Model(this, s, dsdx) result(source)

    Arguments

    TypeIntentOptionalAttributesName
    class(Model), intent(in) :: this
    real(kind=prec), intent(in) :: s(1:this%nvar)
    real(kind=prec), intent(in) :: dsdx(1:this%nvar,1:3)

    Return Value real(kind=prec)(1:this%nvar)

procedure, public :: twopointflux2d => twopointflux2d_ECDGModel2D_t

  • public pure function twopointflux2d_ECDGModel2D_t(this, sL, sR) result(flux)

    Entropy-conserving two-point flux function.

    Read more…

    Arguments

    TypeIntentOptionalAttributesName
    class(ECDGModel2D_t), intent(in) :: this
    real(kind=prec), intent(in) :: sL(1:this%nvar)
    real(kind=prec), intent(in) :: sR(1:this%nvar)

    Return Value real(kind=prec)(1:this%nvar,1:2)

Source Code

  type,extends(ECDGModel2D_t),public :: ECDGModel2D

  contains

    procedure :: CalculateTendency => CalculateTendency_ECDGModel2D

  endtype ECDGModel2D