Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to environmental changes and rising levels of atmospheric CO2. To achieve this goal, biosphere models need mechanistic formulations of the processes that drive the ecosystem functioning from diurnal to decadal timescales. However, the subsequent complexity of model equations is associated with unknown or poorly calibrated parameters that limit the accuracy of long-term simulations of carbon or water fluxes and their interannual variations. In this study, we develop a data assimilation framework to constrain the parameters of a mechanistic land surface model (ORCHIDEE) with eddy-covariance observations of CO2 and latent heat fluxes made during th...
Process-based terrestrial ecosystem models have been widely used to simulate carbon cycle, climate a...
International audienceAssimilation of data from several measurements provides knowledge of the model...
International audienceDrylands occupy ∼40% of the land surface and are thought to dominate global ca...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
International audienceAssimilation of in situ and satellite data in mechanistic terrestrial ecosyste...
International audience[1] We design a Bayesian inversion method (gradient-based) to optimize the key...
International audienceThis study uses a variational data assimilation framework to simultaneously co...
Discrepancies between future projections of land carbon fluxes originate from different process repr...
Process-based terrestrial ecosystem models have been widely used to simulate carbon cycle, climate a...
International audienceAssimilation of data from several measurements provides knowledge of the model...
International audienceDrylands occupy ∼40% of the land surface and are thought to dominate global ca...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
Terrestrial ecosystem models can provide major insights into the responses of Earth's ecosystems to ...
International audienceAssimilation of in situ and satellite data in mechanistic terrestrial ecosyste...
International audience[1] We design a Bayesian inversion method (gradient-based) to optimize the key...
International audienceThis study uses a variational data assimilation framework to simultaneously co...
Discrepancies between future projections of land carbon fluxes originate from different process repr...
Process-based terrestrial ecosystem models have been widely used to simulate carbon cycle, climate a...
International audienceAssimilation of data from several measurements provides knowledge of the model...
International audienceDrylands occupy ∼40% of the land surface and are thought to dominate global ca...