The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation conditions is challenging due to the significant complexity and heterogeneity of these conditions, all of which are impacted by climate change and anthropogenic activities. To address this challenge, Earth Observations (EOs) of the land and their utilization within data assimilation (DA) systems are vital. Satellite EOs are particularly relevant, as they offer quasi-global coverage, are non-intrusive, and provide uniformity, rapid measurements, and continuity. The past three decades have seen unprecedented growth in the number and variety of land remote sensing technologies launched by space agencies and commercial companies around the world...
The representation of the Earth's surface in global monitoring and forecasting applications is movin...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
Provisionally accepted: The final, formatted version of the article will be published soon.Project C...
International audienceThe task of quantifying spatial and temporal variations in terrestrial water, ...
International audienceThe task of quantifying spatial and temporal variations in terrestrial water, ...
The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation...
International audienceThe task of quantifying spatial and temporal variations in terrestrial water, ...
The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation...
The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation...
The beginning of the 21st century is marked by a rapid growth of land surface satellite data and mod...
Recent advances in remote sensing technologies have enabled the monitoring and measurement of the Ea...
A land data assimilation system (LDAS) can merge satellite observations (or retrievals) of land surf...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
The representation of the Earth's surface in global monitoring and forecasting applications is movin...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
Provisionally accepted: The final, formatted version of the article will be published soon.Project C...
International audienceThe task of quantifying spatial and temporal variations in terrestrial water, ...
International audienceThe task of quantifying spatial and temporal variations in terrestrial water, ...
The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation...
International audienceThe task of quantifying spatial and temporal variations in terrestrial water, ...
The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation...
The task of quantifying spatial and temporal variations in terrestrial water, energy, and vegetation...
The beginning of the 21st century is marked by a rapid growth of land surface satellite data and mod...
Recent advances in remote sensing technologies have enabled the monitoring and measurement of the Ea...
A land data assimilation system (LDAS) can merge satellite observations (or retrievals) of land surf...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
The representation of the Earth's surface in global monitoring and forecasting applications is movin...
International audienceLDAS-Monde is a global land data assimilation system (LDAS) developed by Centr...
Provisionally accepted: The final, formatted version of the article will be published soon.Project C...