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module micro_pumas_ccpp_dimensions_pre
use pumas_kinds, only: pumas_r8=>kind_r8
use ccpp_kinds, only: kind_phys
implicit none
contains
!> \section arg_table_micro_pumas_ccpp_dimensions_pre_init Argument Table
!! \htmlinclude micro_pumas_ccpp_dimensions_pre_init.html
subroutine micro_pumas_ccpp_dimensions_pre_init( ncol, nlev, nlevp1, &
trop_cloud_top_lev, micro_ncol, micro_nlev, &
micro_nlevp1, errmsg, errcode)
!Host model dimensions/parameters:
integer, intent(in) :: ncol
integer, intent(in) :: nlev
integer, intent(in) :: nlevp1
integer, intent(in) :: trop_cloud_top_lev !Index of the top model level for which
!cloud physics is applied (1 to nlev)
!PUMAS dimensions/parameters:
integer, intent(out) :: micro_ncol !Number of horizontal microphysics columns (count)
integer, intent(out) :: micro_nlev !Number of microphysics vertical layers (count)
integer, intent(out) :: micro_nlevp1 !Number of microphysics vertical interfaces (count)
!CCPP error handling:
character(len=512), intent(out) :: errmsg
integer, intent(out) :: errcode
!Initialize error message and error code:
errmsg = ''
errcode = 0
!Set PUMAS (cloud microphysics) dimensions:
micro_ncol = ncol
micro_nlev = nlev-trop_cloud_top_lev+1
micro_nlevp1 = micro_nlev + 1
end subroutine micro_pumas_ccpp_dimensions_pre_init
!> \section arg_table_micro_pumas_ccpp_dimensions_pre_run Argument Table
!! \htmlinclude micro_pumas_ccpp_dimensions_pre_run.html
subroutine micro_pumas_ccpp_dimensions_pre_run(ncol, nlev, nlevp1, &
micro_ncol, micro_nlev, micro_nlevp1, micro_dust_nbins,&
airT_in, pumas_airT, airq_in, pumas_airq, &
cldliq_in, pumas_cldliq, &
cldice_in, pumas_cldice, &
micro_mg_num_steps, dtime, pumas_timestep, &
numliq_in, pumas_numliq, &
numice_in, pumas_numice, &
rainliq_in, pumas_rainliq, &
snowice_in, pumas_snowice, &
numrain_in, pumas_numrain, &
numsnow_in, pumas_numsnow, &
graupice_in, pumas_graupice, &
numgraup_in, pumas_numgraup, &
relvar_in, pumas_relvar, &
accre_enhan_in, pumas_accre_enhan, &
pmid_in, pumas_pmid, &
pdel_in, pumas_pdel, &
pint_in, pumas_pint, &
strat_cldfrc_in, pumas_strat_cldfrc, &
pumas_strat_liq_cldfrc, &
pumas_strat_ice_cldfrc, &
qsatfac_in, pumas_qsatfac, &
naai_in, pumas_naai, &
npccn_in, pumas_npccn, &
rndst_in, pumas_rndst, &
nacon_in, pumas_nacon, &
snowice_tend_external_in, pumas_snowice_tend_external, &
numsnow_tend_external_in, pumas_numsnow_tend_external, &
effi_external_in, pumas_effi_external, &
frzimm_in, pumas_frzimm, &
frzcnt_in, pumas_frzcnt, &
frzdep_in, pumas_frzdep, &
errmsg, errcode)
!Host model dimensions/parameters:
integer, intent(in) :: ncol
integer, intent(in) :: nlev
integer, intent(in) :: nlevp1
!PUMAS dimensions/parameters:
integer, intent(in) :: micro_ncol !Number of horizontal microphysics columns (count)
integer, intent(in) :: micro_nlev !Number of microphysics vertical layers (count)
integer, intent(in) :: micro_nlevp1 !Number of microphysics vertical interfaces (count)
integer, intent(in) :: micro_dust_nbins !Number of dust bins
! Air temperature (K)
real(kind_phys), intent(in) :: airT_in(:, :)
real(pumas_r8), intent(out) :: pumas_airT(:, :)
! Water vapor mixing ratio wrt moist air and condensed water (kg kg-1)
real(kind_phys), intent(in) :: airq_in(:, :)
real(pumas_r8), intent(out) :: pumas_airq(:, :)
! Cloud liquid water mixing ratio wrt moist air and condensed water (kg kg-1)
real(kind_phys), intent(in) :: cldliq_in(:, :)
real(pumas_r8), intent(out) :: pumas_cldliq(:, :)
! Cloud ice mixing ratio wrt moist air and condensed water (kg kg-1)
real(kind_phys), intent(in) :: cldice_in(:, :)
real(pumas_r8), intent(out) :: pumas_cldice(:, :)
! Substepping in microphysics variables
integer, intent(in) :: micro_mg_num_steps
real(kind_phys), intent(in) :: dtime
real(pumas_r8), intent(out) :: pumas_timestep
! Mass number concentration of cloud liquid water wrt moist air and condensed water (kg-1)
real(kind_phys), intent(in) :: numliq_in(:, :)
real(pumas_r8), intent(out) :: pumas_numliq(:, :)
! Mass number concentration of cloud ice wrt moist air and condensed water (kg-1)
real(kind_phys), intent(in) :: numice_in(:, :)
real(pumas_r8), intent(out) :: pumas_numice(:, :)
! Rain mixing ratio wrt moist air and condensed water (kg kg-1)
real(kind_phys), intent(in) :: rainliq_in(:, :)
real(pumas_r8), intent(out) :: pumas_rainliq(:, :)
! Snow mixing ratio wrt moist air and condensed water (kg kg-1)
real(kind_phys), intent(in) :: snowice_in(:, :)
real(pumas_r8), intent(out) :: pumas_snowice(:, :)
! Mass number concentration of rain wrt moist air and condensed water (kg-1)
real(kind_phys), intent(in) :: numrain_in(:, :)
real(pumas_r8), intent(out) :: pumas_numrain(:, :)
! Mass number concentration of snow wrt moist air and condensed water (kg-1)
real(kind_phys), intent(in) :: numsnow_in(:, :)
real(pumas_r8), intent(out) :: pumas_numsnow(:, :)
! Graupel mixing ratio wrt moist air and condensed water (kg kg-1)
real(kind_phys), intent(in) :: graupice_in(:, :)
real(pumas_r8), intent(out) :: pumas_graupice(:, :)
! Mass number concentration of graupel wrt moist air and condensed water (kg-1)
real(kind_phys), intent(in) :: numgraup_in(:, :)
real(pumas_r8), intent(out) :: pumas_numgraup(:, :)
! Relative variance of cloud water (1)
real(kind_phys), intent(in) :: relvar_in(:, :)
real(pumas_r8), intent(out) :: pumas_relvar(:, :)
! Accretion enhancement factor (1)
real(kind_phys), intent(in) :: accre_enhan_in(:, :)
real(pumas_r8), intent(out) :: pumas_accre_enhan(:, :)
! Air pressure (Pa)
real(kind_phys), intent(in) :: pmid_in(:, :)
real(pumas_r8), intent(out) :: pumas_pmid(:, :)
! Air pressure thickness (Pa)
real(kind_phys), intent(in) :: pdel_in(:, :)
real(pumas_r8), intent(out) :: pumas_pdel(:, :)
! Air pressure at interfaces (Pa)
real(kind_phys), intent(in) :: pint_in(:, :)
real(pumas_r8), intent(out) :: pumas_pint(:, :)
! Stratiform cloud area fraction (fraction)
real(kind_phys), intent(in) :: strat_cldfrc_in(:, :)
real(pumas_r8), intent(out) :: pumas_strat_cldfrc(:, :)
! Stratiform cloud liquid area fraction (fraction)
real(pumas_r8), intent(out) :: pumas_strat_liq_cldfrc(:, :)
! Stratiform cloud ice area fraction (fraction)
real(pumas_r8), intent(out) :: pumas_strat_ice_cldfrc(:, :)
! Subgrid cloud water saturation scaling factor (1)
real(kind_phys), intent(in) :: qsatfac_in(:, :)
real(pumas_r8), intent(out) :: pumas_qsatfac(:, :)
! Tendency of activated ice nuclei mass number concentration (kg-1 s-1)
real(kind_phys), intent(in) :: naai_in(:, :)
real(pumas_r8), intent(out) :: pumas_naai(:, :)
! Tendency of activated cloud condensation nuclei mass number concentration (kg-1 s-1)
real(kind_phys), intent(in) :: npccn_in(:, :)
real(pumas_r8), intent(out) :: pumas_npccn(:, :)
! Dust radii by size bin (m)
real(kind_phys), intent(in) :: rndst_in(:, :, :)
real(pumas_r8), intent(out) :: pumas_rndst(:, :, :)
! Dust number concentration by size bin (m-3)
real(kind_phys), intent(in) :: nacon_in(:, :, :)
real(pumas_r8), intent(out) :: pumas_nacon(:, :, :)
! Tendency of snow mixing ratio wrt moist air and condensed water from external microphysics (kg kg-1 s-1)
real(kind_phys), intent(in) :: snowice_tend_external_in(:, :)
real(pumas_r8), intent(out) :: pumas_snowice_tend_external(:, :)
! Tendency of mass number concentration of snow wrt moist air and condensed water from external microphysics (kg-1 s-1)
real(kind_phys), intent(in) :: numsnow_tend_external_in(:, :)
real(pumas_r8), intent(out) :: pumas_numsnow_tend_external(:, :)
! Effective radius of stratiform cloud ice particle from external microphysics (m)
real(kind_phys), intent(in) :: effi_external_in(:, :)
real(pumas_r8), intent(out) :: pumas_effi_external(:, :)
! Tendency of cloud liquid droplet number concentration due to immersion freezing (cm-3)
real(kind_phys), intent(in) :: frzimm_in(:, :)
real(pumas_r8), intent(out) :: pumas_frzimm(:, :)
! Tendency of cloud liquid droplet number concentration due to contact freezing (cm-3)
real(kind_phys), intent(in) :: frzcnt_in(:, :)
real(pumas_r8), intent(out) :: pumas_frzcnt(:, :)
! Tendency of cloud ice number concentration due to deposition nucleation (cm-3)
real(kind_phys), intent(in) :: frzdep_in(:, :)
real(pumas_r8), intent(out) :: pumas_frzdep(:, :)
character(len=512), intent(out) :: errmsg
integer, intent(out) :: errcode
!Initialize error message and error code:
errmsg = ''
errcode = 0
pumas_timestep = dtime/micro_mg_num_steps
!+ IH
! For now we just use ncols = micro_ncol, but we need to constrain the vertical extent for the microphysical fields.
! Therefore micro_xxx(:ncol,:) = xxx(:,::)
!- IH
pumas_airT(:ncol,:) = real(airT_in(:,:), pumas_r8)
pumas_airq(:ncol,:) = real(airq_in(:,:), pumas_r8)
pumas_cldliq(:ncol,:) = real(cldliq_in(:,:), pumas_r8)
pumas_cldice(:ncol,:) = real(cldice_in(:,:), pumas_r8)
pumas_numliq(:ncol,:) = real(numliq_in(:,:), pumas_r8)
pumas_numice(:ncol,:) = real(numice_in(:,:), pumas_r8)
pumas_rainliq(:ncol,:) = real(rainliq_in(:,:), pumas_r8)
pumas_snowice(:ncol,:) = real(snowice_in(:,:), pumas_r8)
pumas_numrain(:ncol,:) = real(numrain_in(:,:), pumas_r8)
pumas_numsnow(:ncol,:) = real(numsnow_in(:,:), pumas_r8)
pumas_graupice(:ncol,:) = real(graupice_in(:,:), pumas_r8)
pumas_numgraup(:ncol,:) = real(numgraup_in(:,:), pumas_r8)
pumas_relvar(:ncol,:) = real(relvar_in(:,:), pumas_r8)
pumas_accre_enhan(:ncol,:) = real(accre_enhan_in(:,:), pumas_r8)
pumas_pmid(:ncol,:) = real(pmid_in(:,:), pumas_r8)
pumas_pdel(:ncol,:) = real(pdel_in(:,:), pumas_r8)
pumas_pint(:ncol,:) = real(pint_in(:,:micro_nlevp1), pumas_r8)
pumas_strat_cldfrc(:ncol,:) = real(strat_cldfrc_in(:,:), pumas_r8)
! PUMAS uses total stratiform fraction for both liquid and ice stratus.
! Mirrors CAM micro_pumas_cam.F90: alst_mic => ast; aist_mic => ast.
pumas_strat_liq_cldfrc(:ncol,:) = real(strat_cldfrc_in(:,:), pumas_r8)
pumas_strat_ice_cldfrc(:ncol,:) = real(strat_cldfrc_in(:,:), pumas_r8)
pumas_qsatfac(:ncol,:) = real(qsatfac_in(:,:), pumas_r8)
pumas_naai(:ncol,:) = real(naai_in(:,:), pumas_r8)
pumas_npccn(:ncol,:) = real(npccn_in(:,:), pumas_r8)
pumas_rndst(:ncol,:,:) = real(rndst_in(:,:micro_nlev,:), pumas_r8)
pumas_nacon(:ncol,:,:) = real(nacon_in(:,:micro_nlev,:), pumas_r8)
pumas_snowice_tend_external(:ncol,:) = real(snowice_tend_external_in(:,:), pumas_r8)
pumas_numsnow_tend_external(:ncol,:) = real(numsnow_tend_external_in(:,:), pumas_r8)
pumas_effi_external(:ncol,:) = real(effi_external_in(:,:), pumas_r8)
pumas_frzcnt(:ncol,:) = real(frzcnt_in(:,:), pumas_r8)
pumas_frzdep(:ncol,:) = real(frzdep_in(:,:), pumas_r8)
pumas_frzimm(:ncol,:) = real(frzimm_in(:,:), pumas_r8)
end subroutine micro_pumas_ccpp_dimensions_pre_run
end module micro_pumas_ccpp_dimensions_pre