more suitable data structure
no need to know (ip,el) at the constitutive level
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@ -186,7 +186,6 @@ module subroutine phase_LiAndItsTangents(Li, dLi_dS, dLi_dFi, &
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active = .true.
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end select plasticType
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KinematicsLoop: do k = 1, Nmodels(ph)
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kinematicsType: select case (model(k,ph))
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case (KINEMATICS_thermal_expansion_ID) kinematicsType
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@ -13,6 +13,12 @@ submodule(phase:plastic) nonlocal
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IPareaNormal => geometry_plastic_nonlocal_IPareaNormal0, &
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geometry_plastic_nonlocal_disable
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type :: tGeometry
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real(pReal), dimension(:), allocatable :: V_0
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end type tGeometry
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type(tGeometry), dimension(:), allocatable :: geom
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real(pReal), parameter :: &
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kB = 1.38e-23_pReal !< Boltzmann constant in J/Kelvin
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@ -203,6 +209,10 @@ module function plastic_nonlocal_init() result(myPlasticity)
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print*, 'Kords, Dissertation RWTH Aachen, 2014'
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print*, 'http://publications.rwth-aachen.de/record/229993'
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phases => config_material%get('phase')
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allocate(geom(phases%length))
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allocate(param(Ninstances))
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allocate(state(Ninstances))
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allocate(state0(Ninstances))
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@ -210,7 +220,7 @@ module function plastic_nonlocal_init() result(myPlasticity)
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allocate(deltaState(Ninstances))
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allocate(microstructure(Ninstances))
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phases => config_material%get('phase')
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i = 0
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do p = 1, phases%length
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phase => phases%get(p)
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@ -409,6 +419,9 @@ module function plastic_nonlocal_init() result(myPlasticity)
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call phase_allocateState(plasticState(p),Nconstituents,sizeState,sizeDotState,sizeDeltaState)
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allocate(geom(p)%V_0(Nconstituents))
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call storeGeometry(p)
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plasticState(p)%nonlocal = pl%get_asBool('nonlocal')
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if(plasticState(p)%nonlocal .and. .not. allocated(IPneighborhood)) &
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call IO_error(212,ext_msg='IPneighborhood does not exist')
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@ -1831,4 +1844,25 @@ pure function getRho0(instance,me,ip,el)
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end function getRho0
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subroutine storeGeometry(ph)
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integer, intent(in) :: ph
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integer :: ip, el, ce, co
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ce = 0
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do el = 1, size(material_homogenizationMemberAt,2)
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do ip = 1, size(material_homogenizationMemberAt,1)
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ce = ce + 1
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do co = 1, homogenization_maxNconstituents
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if(material_phaseAt2(co,ce) == ph) then
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geom(ph)%V_0(material_phaseMemberAt2(co,ce)) = IPvolume(ip,el)
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endif
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enddo
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enddo
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enddo
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end subroutine
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end submodule nonlocal
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