Determining the spatial distribution and temporal development of evaporation at regional and global scales is required to improve our understanding of the coupled water and energy cycles and to better monitor any changes in observed trends and variability of linked hydrological processes. With recent international efforts guiding the development of long-term and globally distributed flux estimates, continued product assessments are required to inform upon the selection of suitable model structures and also to establish the appropriateness of these multi-model simulations for global application. In support of the objectives of the Global Energy and Water Cycle Exchanges (GEWEX) LandFlux project, four commonly used evaporation models are eval...
Satellite and gridded meteorological data can be used to estimate evaporation (E) from land surfaces...
A process-based methodology is applied to estimate land-surface evaporation from multi-satellite inf...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project has comp...
Determining the spatial distribution and temporal development of evaporation at regional and global ...
Determining the spatial distribution and temporal development of evaporation at regional and global ...
Determining the spatial distribution and temporal development of evaporation at regional and global ...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project aims to ...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project aims to ...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project ai...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project aims to ...
International audienceThe WAter Cycle Multi-mission Observation Strategy-EvapoTranspiration (WACMOS-...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project has comp...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project has comp...
The evaporation of water from land into the atmosphere is a key component of the hydrological cycle....
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project ha...
Satellite and gridded meteorological data can be used to estimate evaporation (E) from land surfaces...
A process-based methodology is applied to estimate land-surface evaporation from multi-satellite inf...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project has comp...
Determining the spatial distribution and temporal development of evaporation at regional and global ...
Determining the spatial distribution and temporal development of evaporation at regional and global ...
Determining the spatial distribution and temporal development of evaporation at regional and global ...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project aims to ...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project aims to ...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project ai...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project aims to ...
International audienceThe WAter Cycle Multi-mission Observation Strategy-EvapoTranspiration (WACMOS-...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project has comp...
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project has comp...
The evaporation of water from land into the atmosphere is a key component of the hydrological cycle....
The WAter Cycle Multi-mission Observation Strategy – EvapoTranspiration (WACMOS-ET) project ha...
Satellite and gridded meteorological data can be used to estimate evaporation (E) from land surfaces...
A process-based methodology is applied to estimate land-surface evaporation from multi-satellite inf...
The WAter Cycle Multi-mission Observation Strategy - EvapoTranspiration (WACMOS-ET) project has comp...