ERF
Energy Research and Forecasting: An Atmospheric Modeling Code
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surface_flux_mod_charnock Struct Reference

#include <ERF_MOSTStress.H>

Collaboration diagram for surface_flux_mod_charnock:

Public Member Functions

 surface_flux_mod_charnock (amrex::Real zref, amrex::Real Tflux, amrex::Real Qvflux, amrex::Real depth, bool cons_qflux)
 
AMREX_GPU_DEVICE AMREX_FORCE_INLINE void iterate_flux (const int &i, const int &j, const int &k, const int &max_iters, const amrex::Array4< amrex::Real > &z0_arr, const amrex::Array4< const amrex::Real > &umm_arr, const amrex::Array4< const amrex::Real > &tm_arr, const amrex::Array4< const amrex::Real > &tvm_arr, const amrex::Array4< const amrex::Real > &qvm_arr, const amrex::Array4< amrex::Real > &u_star_arr, const amrex::Array4< amrex::Real > &w_star_arr, const amrex::Array4< amrex::Real > &t_star_arr, const amrex::Array4< amrex::Real > &q_star_arr, const amrex::Array4< amrex::Real > &t_surf_arr, const amrex::Array4< amrex::Real > &q_surf_arr, const amrex::Array4< amrex::Real > &olen_arr, const amrex::Array4< amrex::Real > &pblh_arr, const amrex::Array4< amrex::Real > &, const amrex::Array4< amrex::Real > &, const amrex::Array4< amrex::Real > &) const
 

Private Attributes

most_data mdata
 
bool spec_qflux
 
similarity_funs sfuns
 
const amrex::Real tol = 1.0e-5
 
const amrex::Real WSMIN = 0.1
 

Detailed Description

Surface flux with modified charnock roughness

Constructor & Destructor Documentation

◆ surface_flux_mod_charnock()

surface_flux_mod_charnock::surface_flux_mod_charnock ( amrex::Real  zref,
amrex::Real  Tflux,
amrex::Real  Qvflux,
amrex::Real  depth,
bool  cons_qflux 
)
inline
649  {
650  mdata.zref = zref;
651  mdata.surf_temp_flux = Tflux;
652  mdata.surf_moist_flux = Qvflux;
653  mdata.Cnk_d = depth;
654  mdata.Cnk_b = mdata.Cnk_b1 * std::log(mdata.Cnk_b2 / mdata.Cnk_d);
655  spec_qflux = cons_qflux;
656  }
amrex::Real surf_moist_flux
Moisture flux.
Definition: ERF_MOSTStress.H:20
amrex::Real zref
Reference height (m)
Definition: ERF_MOSTStress.H:15
amrex::Real Cnk_b2
Modified Charnock Eq (4) https://doi.org/10.1175/JAMC-D-17-0137.1.
Definition: ERF_MOSTStress.H:24
amrex::Real Cnk_b
Definition: ERF_MOSTStress.H:26
amrex::Real Cnk_d
Modified Charnock Eq (4) https://doi.org/10.1175/JAMC-D-17-0137.1.
Definition: ERF_MOSTStress.H:25
amrex::Real Cnk_b1
Modified Charnock Eq (4) https://doi.org/10.1175/JAMC-D-17-0137.1.
Definition: ERF_MOSTStress.H:23
amrex::Real surf_temp_flux
Heat flux.
Definition: ERF_MOSTStress.H:19
most_data mdata
Definition: ERF_MOSTStress.H:740
bool spec_qflux
Definition: ERF_MOSTStress.H:741

Member Function Documentation

◆ iterate_flux()

AMREX_GPU_DEVICE AMREX_FORCE_INLINE void surface_flux_mod_charnock::iterate_flux ( const int &  i,
const int &  j,
const int &  k,
const int &  max_iters,
const amrex::Array4< amrex::Real > &  z0_arr,
const amrex::Array4< const amrex::Real > &  umm_arr,
const amrex::Array4< const amrex::Real > &  tm_arr,
const amrex::Array4< const amrex::Real > &  tvm_arr,
const amrex::Array4< const amrex::Real > &  qvm_arr,
const amrex::Array4< amrex::Real > &  u_star_arr,
const amrex::Array4< amrex::Real > &  w_star_arr,
const amrex::Array4< amrex::Real > &  t_star_arr,
const amrex::Array4< amrex::Real > &  q_star_arr,
const amrex::Array4< amrex::Real > &  t_surf_arr,
const amrex::Array4< amrex::Real > &  q_surf_arr,
const amrex::Array4< amrex::Real > &  olen_arr,
const amrex::Array4< amrex::Real > &  pblh_arr,
const amrex::Array4< amrex::Real > &  ,
const amrex::Array4< amrex::Real > &  ,
const amrex::Array4< amrex::Real > &   
) const
inline
681  {
682  int iter = 0;
683  amrex::Real ustar = 0.0;
684  amrex::Real wstar = 0.0;
685  amrex::Real tflux = 0.0;
686  amrex::Real qflux = 0.0;
687  amrex::Real z0 = 0.0;
688  amrex::Real zeta = 0.0;
689  amrex::Real psi_m = 0.0;
690  amrex::Real psi_h = 0.0;
691  amrex::Real Olen = 0.0;
692  amrex::Real umm = std::max(umm_arr(i,j,k), WSMIN);
693  if (u_star_arr(i,j,k) == 1.E34) {
694  u_star_arr(i,j,k) = mdata.kappa * umm / std::log(mdata.zref / z0_arr(i,j,k));
695  } else {
696  Olen = olen_arr(i,j,k);
697  zeta = mdata.zref / Olen;
698  psi_m = sfuns.calc_psi_m(zeta);
699  psi_h = sfuns.calc_psi_h(zeta);
700  }
701  do {
702  ustar = u_star_arr(i,j,k);
703  z0 = std::exp( (2.7*ustar - 1.8/mdata.Cnk_b) / (ustar + 0.17/mdata.Cnk_b) );
704  qflux = (spec_qflux) ? mdata.surf_moist_flux :
705  -(qvm_arr(i,j,k) - q_surf_arr(i,j,k)) * ustar * mdata.kappa /
706  (std::log(mdata.zref / z0_arr(i,j,k)) - psi_h); // <w'Qv'>
707  tflux = mdata.surf_temp_flux*(1 + 0.61*qvm_arr(i,j,k)) + qflux*0.61*tm_arr(i,j,k);
708  if (w_star_arr) {
709  // update w* and Umagmean
710  w_star_arr(i,j,k) = calc_wstar(tflux, pblh_arr(i,j,k), tvm_arr(i,j,k));
711  wstar = mdata.Bjr_beta * w_star_arr(i,j,k);
712  umm = std::sqrt(umm_arr(i,j,k)*umm_arr(i,j,k) + wstar*wstar);
713  umm = std::max(umm, WSMIN);
714  }
715  Olen = -ustar * ustar * ustar * tvm_arr(i,j,k) / (mdata.kappa * mdata.gravity * tflux);
716  zeta = mdata.zref / Olen;
717  psi_m = sfuns.calc_psi_m(zeta);
718  psi_h = sfuns.calc_psi_h(zeta);
719  u_star_arr(i,j,k) = mdata.kappa * umm / (std::log(mdata.zref / z0) - psi_m);
720  ++iter;
721  } while ((std::abs(u_star_arr(i,j,k) - ustar) > tol) && iter <= max_iters);
722  AMREX_ASSERT_WITH_MESSAGE(iter < max_iters, "Maximum number of MOST iterations reached.");
723 
724  t_surf_arr(i,j,k) = mdata.surf_temp_flux * (std::log(mdata.zref / z0) - psi_h) /
725  (u_star_arr(i,j,k) * mdata.kappa) + tm_arr(i,j,k);
726  t_star_arr(i,j,k) = -mdata.surf_temp_flux / u_star_arr(i,j,k);
727  olen_arr(i,j,k) = Olen;
728  z0_arr(i,j,k) = z0;
729  if (spec_qflux) {
730  q_surf_arr(i,j,k) = mdata.surf_moist_flux * (std::log(mdata.zref / z0_arr(i,j,k)) - psi_h) /
731  (u_star_arr(i,j,k) * mdata.kappa) + qvm_arr(i,j,k);
732  q_star_arr(i,j,k) = -mdata.surf_moist_flux / u_star_arr(i,j,k);
733  } else {
734  q_star_arr(i,j,k) = mdata.kappa * (qvm_arr(i,j,k) - q_surf_arr(i,j,k)) /
735  (std::log(mdata.zref / z0_arr(i,j,k)) - psi_h);
736  }
737  }
AMREX_GPU_DEVICE AMREX_FORCE_INLINE amrex::Real calc_wstar(const amrex::Real &ust, const amrex::Real &tst, const amrex::Real &qst, const amrex::Real &pblh, const amrex::Real &th, const amrex::Real &thv, const amrex::Real &qv=0.0)
Definition: ERF_Wstar.H:13
amrex::Real kappa
von Karman constant
Definition: ERF_MOSTStress.H:17
amrex::Real gravity
Acceleration due to gravity (m/s^2)
Definition: ERF_MOSTStress.H:18
const amrex::Real Bjr_beta
Definition: ERF_MOSTStress.H:29
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::Real calc_psi_m(amrex::Real zeta) const
Definition: ERF_MOSTStress.H:41
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::Real calc_psi_h(amrex::Real zeta) const
Definition: ERF_MOSTStress.H:55
const amrex::Real WSMIN
Definition: ERF_MOSTStress.H:744
const amrex::Real tol
Definition: ERF_MOSTStress.H:743
similarity_funs sfuns
Definition: ERF_MOSTStress.H:742
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Member Data Documentation

◆ mdata

most_data surface_flux_mod_charnock::mdata
private

◆ sfuns

similarity_funs surface_flux_mod_charnock::sfuns
private

Referenced by iterate_flux().

◆ spec_qflux

bool surface_flux_mod_charnock::spec_qflux
private

◆ tol

const amrex::Real surface_flux_mod_charnock::tol = 1.0e-5
private

Referenced by iterate_flux().

◆ WSMIN

const amrex::Real surface_flux_mod_charnock::WSMIN = 0.1
private

Referenced by iterate_flux().


The documentation for this struct was generated from the following file: