consistent names
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@ -161,7 +161,7 @@ subroutine materialpoint_stressAndItsTangent(dt,FEsolving_execIP,FEsolving_execE
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doneAndHappy
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!$OMP PARALLEL DO PRIVATE(ce,ho,myNgrains,NiterationMPstate,subFrac,converged,subStep,doneAndHappy)
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!$OMP PARALLEL DO PRIVATE(ce,ho,myNgrains,NiterationMPstate,subFrac,converged,subStep,doneAndHappy)
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do el = FEsolving_execElem(1),FEsolving_execElem(2)
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ho = material_homogenizationAt(el)
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me = material_homogenizationMemberAt(ip,el)
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@ -321,29 +321,30 @@ subroutine homogenization_results
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use material, only: &
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material_homogenization_type => homogenization_type
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integer :: p
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integer :: ph
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character(len=:), allocatable :: group_base,group
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call results_closeGroup(results_addGroup('current/homogenization/'))
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do p=1,size(material_name_homogenization)
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group_base = 'current/homogenization/'//trim(material_name_homogenization(p))
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do ph=1,size(material_name_homogenization)
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group_base = 'current/homogenization/'//trim(material_name_homogenization(ph))
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call results_closeGroup(results_addGroup(group_base))
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call mech_results(group_base,p)
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call mech_results(group_base,ph)
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group = trim(group_base)//'/damage'
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call results_closeGroup(results_addGroup(group))
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select case(damage_type(p))
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select case(damage_type(ph))
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case(DAMAGE_NONLOCAL_ID)
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call damage_nonlocal_results(p,group)
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call damage_nonlocal_results(ph,group)
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end select
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group = trim(group_base)//'/thermal'
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call results_closeGroup(results_addGroup(group))
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select case(thermal_type(p))
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select case(thermal_type(ph))
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case(THERMAL_CONDUCTION_ID)
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call thermal_conduction_results(p,group)
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call thermal_conduction_results(ph,group)
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end select
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enddo
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@ -359,6 +360,7 @@ subroutine homogenization_forward
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integer :: ho
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do ho = 1, size(material_name_homogenization)
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homogState (ho)%state0 = homogState (ho)%state
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damageState(ho)%state0 = damageState(ho)%state
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