unifying notation
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550b6510a5
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340617ab65
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@ -143,6 +143,7 @@ function damage_local_updateState(subdt, ip, el)
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err_damage_tolAbs, &
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err_damage_tolRel
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use material, only: &
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material_homogenizationAt, &
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mappingHomogenization, &
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damageState
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@ -160,7 +161,7 @@ function damage_local_updateState(subdt, ip, el)
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real(pReal) :: &
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phi, phiDot, dPhiDot_dPhi
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homog = mappingHomogenization(2,ip,el)
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homog = material_homogenizationAt(el)
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offset = mappingHomogenization(1,ip,el)
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phi = damageState(homog)%subState0(1,offset)
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call damage_local_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip, el)
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@ -182,7 +183,7 @@ end function damage_local_updateState
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subroutine damage_local_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip, el)
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use material, only: &
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homogenization_Ngrains, &
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mappingHomogenization, &
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material_homogenizationAt, &
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phaseAt, &
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phasememberAt, &
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phase_source, &
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@ -216,7 +217,7 @@ subroutine damage_local_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip, el
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phiDot = 0.0_pReal
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dPhiDot_dPhi = 0.0_pReal
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do grain = 1, homogenization_Ngrains(mappingHomogenization(2,ip,el))
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do grain = 1, homogenization_Ngrains(material_homogenizationAt(el))
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phase = phaseAt(grain,ip,el)
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constituent = phasememberAt(grain,ip,el)
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do source = 1, phase_Nsources(phase)
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@ -243,8 +244,8 @@ subroutine damage_local_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip, el
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enddo
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enddo
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phiDot = phiDot/real(homogenization_Ngrains(mappingHomogenization(2,ip,el)),pReal)
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dPhiDot_dPhi = dPhiDot_dPhi/real(homogenization_Ngrains(mappingHomogenization(2,ip,el)),pReal)
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phiDot = phiDot/real(homogenization_Ngrains(material_homogenizationAt(el)),pReal)
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dPhiDot_dPhi = dPhiDot_dPhi/real(homogenization_Ngrains(material_homogenizationAt(el)),pReal)
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end subroutine damage_local_getSourceAndItsTangent
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@ -253,7 +254,7 @@ end subroutine damage_local_getSourceAndItsTangent
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!--------------------------------------------------------------------------------------------------
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function damage_local_postResults(ip,el)
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use material, only: &
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mappingHomogenization, &
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material_homogenizationAt, &
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damage_typeInstance, &
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damageMapping, &
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damage
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@ -262,13 +263,13 @@ function damage_local_postResults(ip,el)
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integer(pInt), intent(in) :: &
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ip, & !< integration point
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el !< element
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real(pReal), dimension(sum(damage_local_sizePostResult(:,damage_typeInstance(mappingHomogenization(2,ip,el))))) :: &
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real(pReal), dimension(sum(damage_local_sizePostResult(:,damage_typeInstance(material_homogenizationAt(el))))) :: &
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damage_local_postResults
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integer(pInt) :: &
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instance, homog, offset, o, c
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homog = mappingHomogenization(2,ip,el)
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homog = material_homogenizationAt(el)
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offset = damageMapping(homog)%p(ip,el)
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instance = damage_typeInstance(homog)
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associate(prm => param(instance))
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@ -136,7 +136,7 @@ end subroutine damage_nonlocal_init
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subroutine damage_nonlocal_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip, el)
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use material, only: &
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homogenization_Ngrains, &
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mappingHomogenization, &
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material_homogenizationAt, &
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phaseAt, &
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phasememberAt, &
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phase_source, &
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@ -170,7 +170,7 @@ subroutine damage_nonlocal_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip,
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phiDot = 0.0_pReal
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dPhiDot_dPhi = 0.0_pReal
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do grain = 1, homogenization_Ngrains(mappingHomogenization(2,ip,el))
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do grain = 1, homogenization_Ngrains(material_homogenizationAt(el))
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phase = phaseAt(grain,ip,el)
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constituent = phasememberAt(grain,ip,el)
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do source = 1, phase_Nsources(phase)
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@ -197,8 +197,8 @@ subroutine damage_nonlocal_getSourceAndItsTangent(phiDot, dPhiDot_dPhi, phi, ip,
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enddo
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enddo
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phiDot = phiDot/real(homogenization_Ngrains(mappingHomogenization(2,ip,el)),pReal)
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dPhiDot_dPhi = dPhiDot_dPhi/real(homogenization_Ngrains(mappingHomogenization(2,ip,el)),pReal)
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phiDot = phiDot/real(homogenization_Ngrains(material_homogenizationAt(el)),pReal)
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dPhiDot_dPhi = dPhiDot_dPhi/real(homogenization_Ngrains(material_homogenizationAt(el)),pReal)
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end subroutine damage_nonlocal_getSourceAndItsTangent
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@ -213,7 +213,7 @@ function damage_nonlocal_getDiffusion33(ip,el)
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use material, only: &
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homogenization_Ngrains, &
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material_phase, &
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mappingHomogenization
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material_homogenizationAt
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use crystallite, only: &
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crystallite_push33ToRef
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@ -227,7 +227,7 @@ function damage_nonlocal_getDiffusion33(ip,el)
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homog, &
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grain
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homog = mappingHomogenization(2,ip,el)
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homog = material_homogenizationAt(el)
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damage_nonlocal_getDiffusion33 = 0.0_pReal
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do grain = 1, homogenization_Ngrains(homog)
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damage_nonlocal_getDiffusion33 = damage_nonlocal_getDiffusion33 + &
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@ -299,7 +299,7 @@ end subroutine damage_nonlocal_putNonLocalDamage
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!--------------------------------------------------------------------------------------------------
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function damage_nonlocal_postResults(ip,el)
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use material, only: &
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mappingHomogenization, &
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material_homogenizationAt, &
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damage_typeInstance, &
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damageMapping, &
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damage
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@ -308,13 +308,13 @@ function damage_nonlocal_postResults(ip,el)
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integer(pInt), intent(in) :: &
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ip, & !< integration point
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el !< element
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real(pReal), dimension(sum(damage_nonlocal_sizePostResult(:,damage_typeInstance(mappingHomogenization(2,ip,el))))) :: &
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real(pReal), dimension(sum(damage_nonlocal_sizePostResult(:,damage_typeInstance(material_homogenizationAt(el))))) :: &
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damage_nonlocal_postResults
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integer(pInt) :: &
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instance, homog, offset, o, c
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homog = mappingHomogenization(2,ip,el)
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homog = material_homogenizationAt(el)
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offset = damageMapping(homog)%p(ip,el)
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instance = damage_typeInstance(homog)
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associate(prm => param(instance))
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@ -302,6 +302,7 @@ subroutine materialpoint_stressAndItsTangent(updateJaco,dt)
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thermalState, &
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damageState, &
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phase_Nsources, &
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material_homogenizationAt, &
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mappingHomogenization, &
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phaseAt, phasememberAt, &
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homogenization_Ngrains
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@ -392,17 +393,17 @@ subroutine materialpoint_stressAndItsTangent(updateJaco,dt)
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materialpoint_requested(i,e) = .true. ! everybody requires calculation
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endforall
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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homogState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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homogState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) = &
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homogState(mappingHomogenization(2,i,e))%State0( :,mappingHomogenization(1,i,e)) ! ...internal homogenization state
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homogState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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homogState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) = &
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homogState(material_homogenizationAt(e))%State0( :,mappingHomogenization(1,i,e)) ! ...internal homogenization state
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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thermalState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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thermalState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) = &
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thermalState(mappingHomogenization(2,i,e))%State0( :,mappingHomogenization(1,i,e)) ! ...internal thermal state
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thermalState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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thermalState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) = &
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thermalState(material_homogenizationAt(e))%State0( :,mappingHomogenization(1,i,e)) ! ...internal thermal state
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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damageState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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damageState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) = &
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damageState(mappingHomogenization(2,i,e))%State0( :,mappingHomogenization(1,i,e)) ! ...internal damage state
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damageState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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damageState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) = &
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damageState(material_homogenizationAt(e))%State0( :,mappingHomogenization(1,i,e)) ! ...internal damage state
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enddo
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NiterationHomog = 0_pInt
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@ -462,17 +463,17 @@ subroutine materialpoint_stressAndItsTangent(updateJaco,dt)
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enddo
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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homogState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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homogState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) = &
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homogState(mappingHomogenization(2,i,e))%State( :,mappingHomogenization(1,i,e)) ! ...internal homogenization state
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homogState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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homogState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) = &
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homogState(material_homogenizationAt(e))%State( :,mappingHomogenization(1,i,e)) ! ...internal homogenization state
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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thermalState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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thermalState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) = &
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thermalState(mappingHomogenization(2,i,e))%State( :,mappingHomogenization(1,i,e)) ! ...internal thermal state
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thermalState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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thermalState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) = &
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thermalState(material_homogenizationAt(e))%State( :,mappingHomogenization(1,i,e)) ! ...internal thermal state
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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damageState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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damageState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) = &
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damageState(mappingHomogenization(2,i,e))%State( :,mappingHomogenization(1,i,e)) ! ...internal damage state
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damageState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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damageState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) = &
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damageState(material_homogenizationAt(e))%State( :,mappingHomogenization(1,i,e)) ! ...internal damage state
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materialpoint_subF0(1:3,1:3,i,e) = materialpoint_subF(1:3,1:3,i,e) ! ...def grad
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endif steppingNeeded
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@ -523,17 +524,17 @@ subroutine materialpoint_stressAndItsTangent(updateJaco,dt)
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enddo
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enddo
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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homogState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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homogState(mappingHomogenization(2,i,e))%State( :,mappingHomogenization(1,i,e)) = &
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homogState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) ! ...internal homogenization state
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homogState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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homogState(material_homogenizationAt(e))%State( :,mappingHomogenization(1,i,e)) = &
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homogState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) ! ...internal homogenization state
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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thermalState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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thermalState(mappingHomogenization(2,i,e))%State( :,mappingHomogenization(1,i,e)) = &
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thermalState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) ! ...internal thermal state
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thermalState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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thermalState(material_homogenizationAt(e))%State( :,mappingHomogenization(1,i,e)) = &
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thermalState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) ! ...internal thermal state
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forall(i = FEsolving_execIP(1,e):FEsolving_execIP(2,e), &
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damageState(mappingHomogenization(2,i,e))%sizeState > 0_pInt) &
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damageState(mappingHomogenization(2,i,e))%State( :,mappingHomogenization(1,i,e)) = &
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damageState(mappingHomogenization(2,i,e))%subState0(:,mappingHomogenization(1,i,e)) ! ...internal damage state
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damageState(material_homogenizationAt(e))%sizeState > 0_pInt) &
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damageState(material_homogenizationAt(e))%State( :,mappingHomogenization(1,i,e)) = &
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damageState(material_homogenizationAt(e))%subState0(:,mappingHomogenization(1,i,e)) ! ...internal damage state
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endif
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endif converged
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@ -637,7 +638,7 @@ subroutine materialpoint_postResults
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use mesh, only: &
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mesh_element
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use material, only: &
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mappingHomogenization, &
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material_homogenizationAt, &
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homogState, &
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thermalState, &
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damageState, &
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@ -667,9 +668,9 @@ subroutine materialpoint_postResults
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IpLooping: do i = FEsolving_execIP(1,e),FEsolving_execIP(2,e)
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thePos = 0_pInt
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theSize = homogState (mappingHomogenization(2,i,e))%sizePostResults &
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+ thermalState (mappingHomogenization(2,i,e))%sizePostResults &
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+ damageState (mappingHomogenization(2,i,e))%sizePostResults
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theSize = homogState (material_homogenizationAt(e))%sizePostResults &
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+ thermalState (material_homogenizationAt(e))%sizePostResults &
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+ damageState (material_homogenizationAt(e))%sizePostResults
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materialpoint_results(thePos+1,i,e) = real(theSize,pReal) ! tell size of homogenization results
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thePos = thePos + 1_pInt
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@ -902,9 +903,9 @@ function postResults(ip,el)
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integer(pInt), intent(in) :: &
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ip, & !< integration point
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el !< element number
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real(pReal), dimension( homogState (mappingHomogenization(2,ip,el))%sizePostResults &
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+ thermalState (mappingHomogenization(2,ip,el))%sizePostResults &
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+ damageState (mappingHomogenization(2,ip,el))%sizePostResults) :: &
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real(pReal), dimension( homogState (material_homogenizationAt(el))%sizePostResults &
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+ thermalState (material_homogenizationAt(el))%sizePostResults &
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+ damageState (material_homogenizationAt(el))%sizePostResults) :: &
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postResults
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integer(pInt) :: &
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startPos, endPos ,&
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@ -913,7 +914,7 @@ function postResults(ip,el)
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postResults = 0.0_pReal
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startPos = 1_pInt
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endPos = homogState(mappingHomogenization(2,ip,el))%sizePostResults
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endPos = homogState(material_homogenizationAt(el))%sizePostResults
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chosenHomogenization: select case (homogenization_type(mesh_element(3,el)))
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case (HOMOGENIZATION_RGC_ID) chosenHomogenization
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@ -924,22 +925,22 @@ function postResults(ip,el)
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end select chosenHomogenization
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startPos = endPos + 1_pInt
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endPos = endPos + thermalState(mappingHomogenization(2,ip,el))%sizePostResults
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endPos = endPos + thermalState(material_homogenizationAt(el))%sizePostResults
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chosenThermal: select case (thermal_type(mesh_element(3,el)))
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case (THERMAL_adiabatic_ID) chosenThermal
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homog = mappingHomogenization(2,ip,el)
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homog = material_homogenizationAt(el)
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postResults(startPos:endPos) = &
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thermal_adiabatic_postResults(homog,thermal_typeInstance(homog),thermalMapping(homog)%p(ip,el))
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case (THERMAL_conduction_ID) chosenThermal
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homog = mappingHomogenization(2,ip,el)
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homog = material_homogenizationAt(el)
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postResults(startPos:endPos) = &
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thermal_conduction_postResults(homog,thermal_typeInstance(homog),thermalMapping(homog)%p(ip,el))
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end select chosenThermal
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startPos = endPos + 1_pInt
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endPos = endPos + damageState(mappingHomogenization(2,ip,el))%sizePostResults
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endPos = endPos + damageState(material_homogenizationAt(el))%sizePostResults
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chosenDamage: select case (damage_type(mesh_element(3,el)))
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case (DAMAGE_local_ID) chosenDamage
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@ -391,6 +391,8 @@ subroutine material_init()
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! END DEPRECATED
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allocate(material_homogenizationAt,source=theMesh%homogenizationAt)
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allocate(material_AggregateAt, source=theMesh%homogenizationAt)
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allocate(CounterPhase (size(config_phase)), source=0_pInt)
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allocate(CounterHomogenization(size(config_homogenization)),source=0_pInt)
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@ -399,7 +401,7 @@ subroutine material_init()
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myHomog = theMesh%homogenizationAt(e)
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do i = 1_pInt, theMesh%elem%nIPs
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CounterHomogenization(myHomog) = CounterHomogenization(myHomog) + 1_pInt
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mappingHomogenization(1:2,i,e) = [CounterHomogenization(myHomog),myHomog]
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mappingHomogenization(1:2,i,e) = [CounterHomogenization(myHomog),huge(1)]
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do g = 1_pInt,homogenization_Ngrains(myHomog)
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myPhase = material_phase(g,i,e)
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CounterPhase(myPhase) = CounterPhase(myPhase)+1_pInt ! not distinguishing between instances of same phase
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@ -61,7 +61,7 @@ subroutine spectral_thermal_init
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thermal_conduction_getMassDensity, &
|
||||
thermal_conduction_getSpecificHeat
|
||||
use material, only: &
|
||||
mappingHomogenization, &
|
||||
material_homogenizationAt, &
|
||||
temperature, &
|
||||
thermalMapping
|
||||
use numerics, only: &
|
||||
|
@ -118,8 +118,8 @@ subroutine spectral_thermal_init
|
|||
cell = 0
|
||||
do k = 1, grid3; do j = 1, grid(2); do i = 1,grid(1)
|
||||
cell = cell + 1
|
||||
temperature_current(i,j,k) = temperature(mappingHomogenization(2,1,cell))% &
|
||||
p(thermalMapping(mappingHomogenization(2,1,cell))%p(1,cell))
|
||||
temperature_current(i,j,k) = temperature(material_homogenizationAt(cell))% &
|
||||
p(thermalMapping(material_homogenizationAt(cell))%p(1,cell))
|
||||
temperature_lastInc(i,j,k) = temperature_current(i,j,k)
|
||||
temperature_stagInc(i,j,k) = temperature_current(i,j,k)
|
||||
enddo; enddo; enddo
|
||||
|
|
|
@ -166,6 +166,7 @@ end function thermal_adiabatic_updateState
|
|||
subroutine thermal_adiabatic_getSourceAndItsTangent(Tdot, dTdot_dT, T, ip, el)
|
||||
use material, only: &
|
||||
homogenization_Ngrains, &
|
||||
material_homogenizationAt, &
|
||||
mappingHomogenization, &
|
||||
phaseAt, &
|
||||
phasememberAt, &
|
||||
|
@ -200,7 +201,7 @@ subroutine thermal_adiabatic_getSourceAndItsTangent(Tdot, dTdot_dT, T, ip, el)
|
|||
source, &
|
||||
constituent
|
||||
|
||||
homog = mappingHomogenization(2,ip,el)
|
||||
homog = material_homogenizationAt(el)
|
||||
instance = thermal_typeInstance(homog)
|
||||
|
||||
Tdot = 0.0_pReal
|
||||
|
|
|
@ -119,6 +119,7 @@ end subroutine thermal_conduction_init
|
|||
!--------------------------------------------------------------------------------------------------
|
||||
subroutine thermal_conduction_getSourceAndItsTangent(Tdot, dTdot_dT, T, ip, el)
|
||||
use material, only: &
|
||||
material_homogenizationAt, &
|
||||
homogenization_Ngrains, &
|
||||
mappingHomogenization, &
|
||||
phaseAt, &
|
||||
|
@ -155,7 +156,7 @@ subroutine thermal_conduction_getSourceAndItsTangent(Tdot, dTdot_dT, T, ip, el)
|
|||
source, &
|
||||
constituent
|
||||
|
||||
homog = mappingHomogenization(2,ip,el)
|
||||
homog = material_homogenizationAt(el)
|
||||
offset = mappingHomogenization(1,ip,el)
|
||||
instance = thermal_typeInstance(homog)
|
||||
|
||||
|
@ -302,7 +303,7 @@ end function thermal_conduction_getMassDensity
|
|||
!--------------------------------------------------------------------------------------------------
|
||||
subroutine thermal_conduction_putTemperatureAndItsRate(T,Tdot,ip,el)
|
||||
use material, only: &
|
||||
mappingHomogenization, &
|
||||
material_homogenizationAt, &
|
||||
temperature, &
|
||||
temperatureRate, &
|
||||
thermalMapping
|
||||
|
@ -318,7 +319,7 @@ subroutine thermal_conduction_putTemperatureAndItsRate(T,Tdot,ip,el)
|
|||
homog, &
|
||||
offset
|
||||
|
||||
homog = mappingHomogenization(2,ip,el)
|
||||
homog = material_homogenizationAt(el)
|
||||
offset = thermalMapping(homog)%p(ip,el)
|
||||
temperature (homog)%p(offset) = T
|
||||
temperatureRate(homog)%p(offset) = Tdot
|
||||
|
|
Loading…
Reference in New Issue