distributing responsibility
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@ -2,6 +2,12 @@
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!> @brief internal microstructure state for all damage sources and kinematics constitutive models
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!----------------------------------------------------------------------------------------------------
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submodule(phase) damage
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type :: tDamageParameters
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real(pReal) :: mu = 0.0_pReal !< viscosity
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real(pReal), dimension(3,3) :: K = 0.0_pReal !< conductivity/diffusivity
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end type tDamageParameters
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enum, bind(c); enumerator :: &
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DAMAGE_UNDEFINED_ID, &
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DAMAGE_ISOBRITTLE_ID, &
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@ -16,13 +22,15 @@ submodule(phase) damage
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end type tDataContainer
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integer(kind(DAMAGE_UNDEFINED_ID)), dimension(:), allocatable :: &
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phase_source !< active sources mechanisms of each phase
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phase_source !< active sources mechanisms of each phase
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integer, dimension(:), allocatable :: &
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phase_Nsources
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type(tDataContainer), dimension(:), allocatable :: current
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type(tDamageParameters), dimension(:), allocatable :: param
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interface
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module function anisobrittle_init() result(mySources)
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@ -111,6 +119,7 @@ module subroutine damage_init
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allocate(damageState (phases%length))
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allocate(phase_Nsources(phases%length),source = 0)
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allocate(param(phases%length))
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do ph = 1,phases%length
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@ -121,6 +130,9 @@ module subroutine damage_init
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phase => phases%get(ph)
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sources => phase%get('damage',defaultVal=emptyList)
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param(ph)%K(1,1) = sources%get_asFloat('K_11',defaultVal=0.0_pReal)
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param(ph)%K(2,2) = sources%get_asFloat('K_22',defaultVal=0.0_pReal)
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param(ph)%K(3,3) = sources%get_asFloat('K_33',defaultVal=0.0_pReal)
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if (sources%length > 1) error stop
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phase_Nsources(ph) = sources%length
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@ -3,6 +3,11 @@
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!----------------------------------------------------------------------------------------------------
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submodule(phase) thermal
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type :: tThermalParameters
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real(pReal) :: C_p = 0.0_pReal !< heat capacity
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real(pReal), dimension(3,3) :: K = 0.0_pReal !< thermal conductivity
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end type tThermalParameters
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integer, dimension(:), allocatable :: &
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thermal_Nsources
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@ -23,6 +28,8 @@ submodule(phase) thermal
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type(tDataContainer), dimension(:), allocatable :: current ! ?? not very telling name. Better: "field" ?? MD: current(ho)%T(me) reads quite good
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type(tThermalParameters), dimension(:), allocatable :: param
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integer :: thermal_source_maxSizeDotState
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@ -85,6 +92,7 @@ module subroutine thermal_init(phases)
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allocate(thermalState(phases%length))
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allocate(thermal_Nsources(phases%length),source = 0)
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allocate(param(phases%length))
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do ph = 1, phases%length
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Nmembers = count(material_phaseID == ph)
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@ -93,6 +101,9 @@ module subroutine thermal_init(phases)
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phase => phases%get(ph)
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thermal => phase%get('thermal',defaultVal=emptyDict)
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sources => thermal%get('source',defaultVal=emptyList)
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param(ph)%K(1,1) = thermal%get_asFloat('K_11',defaultVal=0.0_pReal)
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param(ph)%K(2,2) = thermal%get_asFloat('K_22',defaultVal=0.0_pReal)
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param(ph)%K(3,3) = thermal%get_asFloat('K_33',defaultVal=0.0_pReal)
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thermal_Nsources(ph) = sources%length
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allocate(thermalstate(ph)%p(thermal_Nsources(ph)))
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enddo
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