In each simulation

pars_and_input_short.csv

rows - timestep

columns - values of parameters which values where changing during the simulation.

vegetation.csv

rows - time (simulation number)

columns - variables

variable

units

description

simulation_number

-

time step counter

year

-

year

DoY

-

decimal day of year (DOY)

Photosynthesis

umol m-2 s-1

net photosynthesis of canopy (Actot)

Electron_transport

umol m-2 s-1

electron transport rate (Ja)

NPQ_energy

W m-2

non-photochemical quenching [energy units]

NPQ_photon

umol m-2 s-1

non-photochemical quenching

canopy_level_FQE

umol photons (umol photons)-1

fluorescence quantum yield at canopy level

LST

K

land surface temperature

emis

-

thermal energy emissivity

aPAR.csv

rows - time (simulation number)

columns - variables

variable

units

description

simulation_number

-

time step counter

year

-

year

DoY

-

decimal day of year (DOY)

iPAR

umol m-2 s-1

intercepted PAR

iPARE

W m-2

intercepted PAR [energy units]

LAIsunlit

m2 m-2

leaf area index of sunlit leaves

LAIshaded

m2 m-2

leaf area index of shaded leaves

aPARtot

umol m-2 s-1

absorbed PAR by all leaves

aPARsun

umol m-2 s-1

absorbed PAR by sunlit leaves

aPARsha

umol m-2 s-1

absorbed PAR by shaded leaves

aPARCabtot

umol m-2 s-1

absorbed PAR by chlorophylls a,b of all leaves

aPARCabsun

umol m-2 s-1

absorbed PAR by chlorophylls a,b of sunlit leaves

aPARCabsha

umol m-2 s-1

absorbed PAR by chlorophylls a,b of shaded leaves

aPARCartot

umol m-2 s-1

absorbed PAR by carotenoinds of all leaves

aPARCarsun

umol m-2 s-1

absorbed PAR by carotenoinds of sunlit leaves

aPARCarsha

umol m-2 s-1

absorbed PAR by carotenoinds of shaded leaves

aPARtotE

W m-2

absorbed PAR by all leaves [energy units]

aPARsunE

W m-2

absorbed PAR by sunlit leaves [energy units]

aPARshaE

W m-2

absorbed PAR by shaded leaves [energy units]

aPARCabtotE

W m-2

absorbed PAR by chlorophylls a,b of all leaves [energy units]

aPARCabsunE

W m-2

absorbed PAR by chlorophylls a,b of sunlit leaves [energy units]

aPARCabshaE

W m-2

absorbed PAR by chlorophylls a,b of shaded leaves [energy units]

aPARCartotE

W m-2

absorbed PAR by carotenoinds of all leaves [energy units]

aPARCarsunE

W m-2

absorbed PAR by carotenoinds of sunlit leaves [energy units]

aPARCarshaE

W m-2

absorbed PAR by carotenoinds of shaded leaves [energy units]

fluxes.csv

rows - time (simulation number)

columns - variables

variable

units

description

simulation_number

-

time step counter

nu_iterations

-

number of iterations in energy balance

year

-

year

DoY

-

decimal day of year (DOY)

Rnctot

W m-2

net radiation of canopy

lEctot

W m-2

latent heat flux of canopy (transpiration)

Hctot

W m-2

sensible heat of canopy

Actot

umol m-2 s-1

net photosynthesis of canopy

Tcave

ºC

‘average’ canopy temperature

Rnstot

W m-2

net radiation of soil

lEstot

W m-2

latent heat flux of soil (evaporation)

Hstot

W m-2

sensible heat of soil

Gtot

W m-2

soil heat flux

Tsave

ºC

‘average’ soil temperature

Rntot

W m-2

total net radiation

lEtot

W m-2

total latent heat flux

Htot

W m-2

total sensible heat

resistances.csv

rows - time (simulation number)

columns - variables

variable

units

description

raa

s m-1

aerodynamic resistance above the canopy

raws

s m-1

aerodynamic resistance within the soi

rss

s m-1

soil resistance to evaporation

ustar

m s-1

friction velocity u*

radiation.csv

rows - time (simulation number)

columns - variables

variable

units

description

simulation_number

-

time step counter

year

-

year

DoY

-

decimal day of year (DOY)

ShortIn (Rin)

W m-2

Incoming shortwave radiation (copy from input)

LongIn (Rli)

W m-2

Incoming longwave radiation (copy from input)

HemisOutShort (Eouto)

W m-2

hemispherical outgoing shortwave radiation

HemisOutLong (Eoutt + Eoutte)

W m-2

hemispherical outgoing longwave radiation

HemisOutTot (Eouto + Eoutt + Eoutte)

W m-2

total hemispherical outgoing radiation

Net (Rntot)

W m-2

total net radiation

Reflectance and its quantiles

For the meaning of reflectance factors, please, refer to Definition

reflectance.csv

rows - time (simulation number)

columns - wl

variable

units

description

Lo_ * pi / (Esun_ + Esky_)

-

fraction of radiation in observation direction * pi / irradiance

rsd.csv

rows - time (simulation number)

columns - wl

variable

units

description

rsd

-

directional-hemispherical reflectance factor

rdd.csv

rows - time (simulation number)

columns - wl

variable

units

description

rdd

-

bi-hemispherical reflectance factor

rso.csv

rows - time (simulation number)

columns - wl

variable

units

description

rso

-

bi-directional reflectance factor

rdo.csv

rows - time (simulation number)

columns - wl

variable

units

description

rdo

-

hemispherical-directional reflectance factor

Radiation per wavelength

Eout_spectrum.csv

rows - time (simulation number)

columns - wl number (2162)

variable

units

description

Eout_

W m-2 um-1

hemispherical outgoing radiation spectrum

Lo_spectrum.csv

rows - time (simulation number)

columns - wl number (2162)

variable

units

description

Lotot_

W m-2 um-1 sr-1

radiance spectrum in observation direction excluding fluorescence

Esun.csv

rows - time (simulation number)

columns - wl number (2162)

variable

units

description

Esun_

W m-2 um-1

direct top of canopy irradiance

Esky.csv

rows - time (simulation number)

columns - wl number (2162)

variable

units

description

Esky_

W m-2 um-1

diffuse top of canopy irradiance