121 lines
4.2 KiB
Fortran
121 lines
4.2 KiB
Fortran
!--------------------------------------------------------------------------------------------------
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!> @brief spatial discretization
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!> @details serves as an abstraction layer between the different solvers and DAMASK
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!--------------------------------------------------------------------------------------------------
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module discretization
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use prec
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use results
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implicit none
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private
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integer, public, protected :: &
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discretization_nIPs, &
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discretization_Nelems, &
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discretization_Ncells
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integer, public, protected, dimension(:), allocatable :: &
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discretization_materialAt !ToDo: discretization_ID_material
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real(pReal), public, protected, dimension(:,:), allocatable :: &
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discretization_IPcoords0, &
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discretization_IPcoords, &
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discretization_NodeCoords0, &
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discretization_NodeCoords
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integer :: &
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discretization_sharedNodesBegin
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public :: &
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discretization_init, &
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discretization_results, &
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discretization_setIPcoords, &
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discretization_setNodeCoords
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contains
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!--------------------------------------------------------------------------------------------------
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!> @brief stores the relevant information in globally accesible variables
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!--------------------------------------------------------------------------------------------------
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subroutine discretization_init(materialAt,&
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IPcoords0,NodeCoords0,&
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sharedNodesBegin)
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integer, dimension(:), intent(in) :: &
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materialAt
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real(pReal), dimension(:,:), intent(in) :: &
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IPcoords0, &
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NodeCoords0
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integer, optional, intent(in) :: &
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sharedNodesBegin !< index of first node shared among different processes (MPI)
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print'(/,1x,a)', '<<<+- discretization init -+>>>'; flush(6)
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discretization_Nelems = size(materialAt,1)
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discretization_nIPs = size(IPcoords0,2)/discretization_Nelems
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discretization_Ncells = discretization_Nelems*discretization_nIPs
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discretization_materialAt = materialAt
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discretization_IPcoords0 = IPcoords0
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discretization_IPcoords = IPcoords0
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discretization_NodeCoords0 = NodeCoords0
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discretization_NodeCoords = NodeCoords0
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if(present(sharedNodesBegin)) then
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discretization_sharedNodesBegin = sharedNodesBegin
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else
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discretization_sharedNodesBegin = size(discretization_NodeCoords0,2)
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endif
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end subroutine discretization_init
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!--------------------------------------------------------------------------------------------------
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!> @brief write the displacements
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!--------------------------------------------------------------------------------------------------
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subroutine discretization_results
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real(pReal), dimension(:,:), allocatable :: u
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call results_closeGroup(results_addGroup('current/geometry'))
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u = discretization_NodeCoords (:,:discretization_sharedNodesBegin) &
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- discretization_NodeCoords0(:,:discretization_sharedNodesBegin)
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call results_writeDataset(u,'current/geometry','u_n','displacements of the nodes','m')
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u = discretization_IPcoords &
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- discretization_IPcoords0
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call results_writeDataset(u,'current/geometry','u_p','displacements of the materialpoints (cell centers)','m')
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end subroutine discretization_results
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!--------------------------------------------------------------------------------------------------
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!> @brief stores current IP coordinates
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!--------------------------------------------------------------------------------------------------
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subroutine discretization_setIPcoords(IPcoords)
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real(pReal), dimension(:,:), intent(in) :: IPcoords
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discretization_IPcoords = IPcoords
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end subroutine discretization_setIPcoords
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!--------------------------------------------------------------------------------------------------
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!> @brief stores current IP coordinates
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!--------------------------------------------------------------------------------------------------
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subroutine discretization_setNodeCoords(NodeCoords)
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real(pReal), dimension(:,:), intent(in) :: NodeCoords
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discretization_NodeCoords = NodeCoords
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end subroutine discretization_setNodeCoords
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end module discretization
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