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scale_atm_phy_mp_lscond.F90 File Reference
#include "scaleFElib.h"

Go to the source code of this file.

Modules

module  scale_atm_phy_mp_lscond
 module FElib / Atmosphere / Physics cloud microphysics / Large-scale condensation

Functions/Subroutines

subroutine, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_setup
 Setup a module for a large-scale condensation scheme.
subroutine, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_adjustment (ka, ks, ke, ia, is, ie, ja, js, je, dens, pres, dt, temp, qtrc, cptot, cvtot, rhoe_t, evaporate)
 Calculate a state after the saturation process.
subroutine, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_precipitation (dens, rhoq, cptot, cvtot, rhoe, sflx_rain, sflx_snow, esflx, temp, dt, qha, qla, qia, lcmesh, elem, elem1d)
 Calculate a state after the precipitation process.
subroutine, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_precipitation_momentum (momu_t, momv_t, momz_t, dens, momu, momv, momz, dens_new, rdt_mp, lcmesh, elem)
 Calculate a tendency of momentum due to the precipitation process.

Variables

integer, parameter, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_ntracers = QA_MP
integer, parameter, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_nwaters = 1
integer, parameter, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_nices = 0
character(len=h_short), dimension(qa_mp), parameter, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_tracer_names = (/ 'QV', 'QC' /)
character(len=h_mid), dimension(qa_mp), parameter, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_tracer_descriptions = (/ 'Ratio of Water Vapor mass to total mass (Specific humidity)', 'Ratio of Cloud Water mass to total mass ' /)
character(len=h_short), dimension(qa_mp), parameter, public scale_atm_phy_mp_lscond::atmos_phy_mp_lscond_tracer_units = (/ 'kg/kg', 'kg/kg' /)