International audienceDrylands occupy ∼40% of the land surface and are thought to dominate global carbon (C) cycle inter-annual variability (IAV). Therefore, it is imperative that global terrestrial biosphere models (TBMs), which form the land component of IPCC earth system models, are able to accurately simulate dryland vegetation and biogeochemical processes. However, compared to more mesic ecosystems, TBMs have not been widely tested or optimized using in situ dryland CO$_2$ fluxes. Here, we address this gap using a Bayesian data assimilation system and 89 site-years of daily net ecosystem exchange (NEE) data from 12 southwest US Ameriflux sites to optimize the C cycle parameters of the ORCHIDEE TBM. The sites span high elevation forest ...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
Due to the substantial gross exchange fluxes with the atmosphere, the terrestrial carbon cycle plays...
The Global Carbon Project estimates that the terrestrial biosphere has absorbed about one-third of a...
International audienceDrylands occupy ∼40% of the land surface and are thought to dominate global ca...
Despite their sparse vegetation, dryland regions exert a huge influence over global biogeochemical c...
International audiencePredicting terrestrial carbon, C, budgets and carbon-climate feedbacks strongl...
Drylands cover ca. 40% of the land surface and are hypothesised to play a major role in the global c...
Earth system models are intended to make long- term projections, but they can be evaluated at inter...
The Global Carbon Project estimates that the terrestrial biosphere has absorbed about one-third of a...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
Due to the substantial gross exchange fluxes with the atmosphere, the terrestrial carbon cycle plays...
The Global Carbon Project estimates that the terrestrial biosphere has absorbed about one-third of a...
International audienceDrylands occupy ∼40% of the land surface and are thought to dominate global ca...
Despite their sparse vegetation, dryland regions exert a huge influence over global biogeochemical c...
International audiencePredicting terrestrial carbon, C, budgets and carbon-climate feedbacks strongl...
Drylands cover ca. 40% of the land surface and are hypothesised to play a major role in the global c...
Earth system models are intended to make long- term projections, but they can be evaluated at inter...
The Global Carbon Project estimates that the terrestrial biosphere has absorbed about one-third of a...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
Due to the substantial gross exchange fluxes with the atmosphere, the terrestrial carbon cycle plays...
The Global Carbon Project estimates that the terrestrial biosphere has absorbed about one-third of a...