2015-07-27 16:39:37 +05:30
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!--------------------------------------------------------------------------------------------------
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2019-02-23 01:07:41 +05:30
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!> @author Martin Diehl, Max-Planck-Institut für Eisenforschung GmbH
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2015-07-27 16:39:37 +05:30
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!> @author Pratheek Shanthraj, Max-Planck-Institut für Eisenforschung GmbH
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2016-10-19 01:53:52 +05:30
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!> @author Philip Eisenlohr, Michigan State University
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!> @brief material subroutine for variable heat source
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2015-07-27 16:39:37 +05:30
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!--------------------------------------------------------------------------------------------------
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2021-01-27 01:22:48 +05:30
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submodule(phase:thermal) externalheat
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2015-07-27 16:39:37 +05:30
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2019-05-28 15:36:21 +05:30
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2019-12-21 12:25:42 +05:30
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integer, dimension(:), allocatable :: &
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2021-02-13 23:11:30 +05:30
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source_thermal_externalheat_offset !< which source is my current thermal dissipation mechanism?
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2018-12-31 01:28:38 +05:30
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2020-08-15 19:32:10 +05:30
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type :: tParameters !< container type for internal constitutive parameters
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2022-12-08 02:25:20 +05:30
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type(tTable) :: f
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2019-02-23 01:07:41 +05:30
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end type tParameters
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2018-12-31 01:28:38 +05:30
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2020-10-28 02:03:30 +05:30
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type(tParameters), dimension(:), allocatable :: param !< containers of constitutive parameters (len Ninstances)
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2018-12-31 01:28:38 +05:30
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2015-07-27 16:39:37 +05:30
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contains
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!--------------------------------------------------------------------------------------------------
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!> @brief module initialization
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!> @details reads in material parameters, allocates arrays, and does sanity checks
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!--------------------------------------------------------------------------------------------------
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2021-01-26 12:25:06 +05:30
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module function externalheat_init(source_length) result(mySources)
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2020-02-26 23:07:17 +05:30
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2021-01-08 02:45:18 +05:30
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integer, intent(in) :: source_length
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2020-08-15 19:32:10 +05:30
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logical, dimension(:,:), allocatable :: mySources
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2022-10-25 21:39:36 +05:30
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type(tDict), pointer :: &
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2020-08-15 19:32:10 +05:30
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phases, &
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phase, &
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2022-10-25 21:39:36 +05:30
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thermal, &
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2021-01-08 02:45:18 +05:30
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src
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2022-10-25 21:39:36 +05:30
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type(tList), pointer :: &
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sources
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2021-03-05 01:46:36 +05:30
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integer :: so,Nmembers,ph
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2020-02-26 23:07:17 +05:30
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2021-01-08 02:45:18 +05:30
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mySources = thermal_active('externalheat',source_length)
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2022-12-07 22:59:03 +05:30
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if (count(mySources) == 0) return
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2021-11-15 23:05:44 +05:30
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print'(/,1x,a)', '<<<+- phase:thermal:externalheat init -+>>>'
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print'(/,a,i2)', ' # phases: ',count(mySources); flush(IO_STDOUT)
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2021-01-08 02:45:18 +05:30
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2020-02-26 23:07:17 +05:30
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2022-10-25 21:39:36 +05:30
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phases => config_material%get_dict('phase')
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2021-01-27 04:26:20 +05:30
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allocate(param(phases%length))
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2020-08-15 19:32:10 +05:30
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allocate(source_thermal_externalheat_offset (phases%length), source=0)
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2021-01-27 04:26:20 +05:30
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do ph = 1, phases%length
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2022-10-25 21:39:36 +05:30
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phase => phases%get_dict(ph)
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2021-11-15 23:05:44 +05:30
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if (count(mySources(:,ph)) == 0) cycle
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2022-10-25 21:39:36 +05:30
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thermal => phase%get_dict('thermal')
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sources => thermal%get_list('source')
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2021-01-27 04:14:11 +05:30
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do so = 1, sources%length
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if (mySources(so,ph)) then
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source_thermal_externalheat_offset(ph) = so
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associate(prm => param(ph))
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2022-10-25 21:39:36 +05:30
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src => sources%get_dict(so)
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2020-02-26 23:07:17 +05:30
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2022-12-08 21:27:26 +05:30
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prm%f = table(src,'t','f')
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2020-02-26 23:07:17 +05:30
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2021-04-06 15:08:44 +05:30
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Nmembers = count(material_phaseID == ph)
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2021-03-05 01:46:36 +05:30
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call phase_allocateState(thermalState(ph)%p(so),Nmembers,1,1,0)
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2020-08-15 19:32:10 +05:30
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end associate
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2021-11-15 23:05:44 +05:30
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end if
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end do
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end do
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2019-02-23 01:07:41 +05:30
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2021-01-26 12:25:06 +05:30
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end function externalheat_init
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2015-07-27 16:39:37 +05:30
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2019-02-22 19:51:48 +05:30
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2015-07-27 16:39:37 +05:30
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!--------------------------------------------------------------------------------------------------
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2016-10-19 01:53:52 +05:30
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!> @brief rate of change of state
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!> @details state only contains current time to linearly interpolate given heat powers
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2015-07-27 16:39:37 +05:30
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!--------------------------------------------------------------------------------------------------
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2021-04-25 11:36:52 +05:30
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module subroutine externalheat_dotState(ph, en)
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2020-02-26 23:07:17 +05:30
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2019-03-24 15:48:59 +05:30
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integer, intent(in) :: &
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2021-01-19 15:02:56 +05:30
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ph, &
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2021-04-25 11:36:52 +05:30
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en
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2020-02-29 12:28:33 +05:30
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2019-03-24 15:48:59 +05:30
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integer :: &
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2021-01-27 04:14:11 +05:30
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so
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2020-02-26 23:07:17 +05:30
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2021-01-27 04:14:11 +05:30
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so = source_thermal_externalheat_offset(ph)
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2020-02-26 23:07:17 +05:30
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2021-04-25 11:36:52 +05:30
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thermalState(ph)%p(so)%dotState(1,en) = 1.0_pReal ! state is current time
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2015-07-27 16:39:37 +05:30
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2021-01-26 12:25:06 +05:30
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end subroutine externalheat_dotState
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2015-07-27 16:39:37 +05:30
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2019-12-05 15:50:05 +05:30
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2015-07-27 16:39:37 +05:30
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!--------------------------------------------------------------------------------------------------
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2020-02-26 23:07:17 +05:30
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!> @brief returns local heat generation rate
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2015-07-27 16:39:37 +05:30
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!--------------------------------------------------------------------------------------------------
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2021-04-25 11:36:52 +05:30
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module function externalheat_f_T(ph,en) result(f_T)
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2020-02-26 23:07:17 +05:30
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2019-03-24 15:48:59 +05:30
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integer, intent(in) :: &
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2021-01-19 15:02:56 +05:30
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ph, &
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2021-04-25 11:36:52 +05:30
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en
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2021-04-08 02:11:49 +05:30
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real(pReal) :: &
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f_T
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2020-02-29 12:28:33 +05:30
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2019-03-24 15:48:59 +05:30
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integer :: &
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2022-12-08 02:25:20 +05:30
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so
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2020-02-26 23:07:17 +05:30
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2021-01-27 04:14:11 +05:30
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so = source_thermal_externalheat_offset(ph)
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2020-02-26 23:07:17 +05:30
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2021-01-27 04:26:20 +05:30
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associate(prm => param(ph))
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2022-12-08 02:25:20 +05:30
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f_T = prm%f%at(thermalState(ph)%p(so)%state(1,en))
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2020-02-29 12:28:33 +05:30
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end associate
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2020-02-26 23:07:17 +05:30
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2021-04-08 02:11:49 +05:30
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end function externalheat_f_T
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2020-02-26 23:07:17 +05:30
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2021-01-26 05:50:45 +05:30
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end submodule externalheat
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