The BioCro C++ Library
energy_balance_outputs Struct Reference

#include <leaf_energy_balance.h>

Public Attributes

double Deltat
 Temperature difference (leaf - air) (degrees C) More...
 
double E_loss
 Rate of energy loss due to transpiration (J / m^2 / s) More...
 
double EPenman
 Potential transpiration rate (mmol / m^2 / s) More...
 
double EPriestly
 Priestly transpiration rate (mmol / m^2 / s) More...
 
double gbw
 Total boundary layer conductance to water vapor, for mass fluxes (m / s) More...
 
double gbw_canopy
 Canopy boundary layer conductance to water vapor, for mass fluxes (m / s) More...
 
double gbw_leaf
 Leaf boundary layer conductance to water vapor, for mass fluxes (m / s) More...
 
double gbw_molecular
 Total boundary layer conductance to water vapor, for molecular fluxes (mol / m^2 / s) More...
 
double gsw
 Stomatal conductance to water vapor, for mass fluxes (m / s) More...
 
double H
 Rate of sensible heat loss (J / m^2 / s) More...
 
double leaf_temp_check
 Equals zero if loop has converged (degrees C) More...
 
double PhiN
 Net energy available for transpiration and heat loss (J / m^2 / s) More...
 
double RH_canopy
 Relative humidity in the canopy, just outside the leaf boundary layer (dimensionless) More...
 
double storage
 Rate of energy storage by the leaf; should be zero (J / m^2 / s) More...
 
double TransR
 Transpiration rate (mmol / m^2 / s) More...
 
size_t iterations
 Number of iterations used by convergence loop. More...
 

Detailed Description

Definition at line 4 of file leaf_energy_balance.h.

Member Data Documentation

◆ Deltat

double Deltat

Temperature difference (leaf - air) (degrees C)

Definition at line 5 of file leaf_energy_balance.h.

Referenced by c3CanAC(), and CanAC().

◆ E_loss

double E_loss

Rate of energy loss due to transpiration (J / m^2 / s)

Definition at line 6 of file leaf_energy_balance.h.

◆ EPenman

double EPenman

Potential transpiration rate (mmol / m^2 / s)

Definition at line 7 of file leaf_energy_balance.h.

Referenced by c3CanAC(), and CanAC().

◆ EPriestly

double EPriestly

Priestly transpiration rate (mmol / m^2 / s)

Definition at line 8 of file leaf_energy_balance.h.

Referenced by c3CanAC(), and CanAC().

◆ gbw

double gbw

Total boundary layer conductance to water vapor, for mass fluxes (m / s)

Definition at line 9 of file leaf_energy_balance.h.

◆ gbw_canopy

double gbw_canopy

Canopy boundary layer conductance to water vapor, for mass fluxes (m / s)

Definition at line 10 of file leaf_energy_balance.h.

◆ gbw_leaf

double gbw_leaf

Leaf boundary layer conductance to water vapor, for mass fluxes (m / s)

Definition at line 11 of file leaf_energy_balance.h.

◆ gbw_molecular

double gbw_molecular

Total boundary layer conductance to water vapor, for molecular fluxes (mol / m^2 / s)

Definition at line 12 of file leaf_energy_balance.h.

Referenced by c3CanAC(), and CanAC().

◆ gsw

double gsw

Stomatal conductance to water vapor, for mass fluxes (m / s)

Definition at line 13 of file leaf_energy_balance.h.

◆ H

double H

Rate of sensible heat loss (J / m^2 / s)

Definition at line 14 of file leaf_energy_balance.h.

◆ iterations

size_t iterations

Number of iterations used by convergence loop.

Definition at line 20 of file leaf_energy_balance.h.

◆ leaf_temp_check

double leaf_temp_check

Equals zero if loop has converged (degrees C)

Definition at line 15 of file leaf_energy_balance.h.

◆ PhiN

double PhiN

Net energy available for transpiration and heat loss (J / m^2 / s)

Definition at line 16 of file leaf_energy_balance.h.

◆ RH_canopy

double RH_canopy

Relative humidity in the canopy, just outside the leaf boundary layer (dimensionless)

Definition at line 17 of file leaf_energy_balance.h.

◆ storage

double storage

Rate of energy storage by the leaf; should be zero (J / m^2 / s)

Definition at line 18 of file leaf_energy_balance.h.

◆ TransR

double TransR

Transpiration rate (mmol / m^2 / s)

Definition at line 19 of file leaf_energy_balance.h.

Referenced by c3CanAC(), and CanAC().


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