This article presents a new parameterization of the global vegetation organizing carbon and hydrology in dynamic ecosystems (ORCHIDEE) model, modifying the assimilation, allocation, and phenology processes for a steppe ecosystem. It aims 1) to improve the modeled growth primary production (GPP) based on both in situ CO2 flux measurements and remote-sensing data of the fraction of absorbed photosynthetic radiation, and 2) to evaluate how GPP improvement results in better-modeled fluxes for ecosystem respiration, net ecosystem exchange, and latent heat. This new parameterization leads to a realistic annual GPP (comparable to the data within 10%), and a realistic seasonal variability of GPP (R2 = 0.80). Further, we found that improving GPP int...
A warming climate is altering land-atmosphere exchanges of carbon, with a potential for increased ve...
Grasslands and agroecosystems occupy one-third of the terrestrial area, but their contribution to th...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...
International audienceThis article presents a new parameterization of the global vegetation organizi...
International audience[1] The cold grasslands of the Qinghai-Tibetan Plateau form a globally signifi...
Estimate of net ecosystem carbon exchange (NEE) between the atmosphere and terrestrial ecosystems, t...
Climate change has significantly influenced global and regional terrestrial carbon balances. After b...
<div><p>Estimate of net ecosystem carbon exchange (NEE) between the atmosphere and terrestrial ecosy...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...
A warming climate is altering land-atmosphere exchanges of carbon, with a potential for increased ve...
Grasslands and agroecosystems occupy one-third of the terrestrial area, but their contribution to th...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...
International audienceThis article presents a new parameterization of the global vegetation organizi...
International audience[1] The cold grasslands of the Qinghai-Tibetan Plateau form a globally signifi...
Estimate of net ecosystem carbon exchange (NEE) between the atmosphere and terrestrial ecosystems, t...
Climate change has significantly influenced global and regional terrestrial carbon balances. After b...
<div><p>Estimate of net ecosystem carbon exchange (NEE) between the atmosphere and terrestrial ecosy...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...
A warming climate is altering land-atmosphere exchanges of carbon, with a potential for increased ve...
Grasslands and agroecosystems occupy one-third of the terrestrial area, but their contribution to th...
Determining whether the terrestrial biosphere will be a source or sink of carbon (C) under a future ...