Reliable estimation of the surface energy balance from local to regional scales is crucial for many applications including weather forecasting, hydrologic modeling, irrigation scheduling, water resource management, and climate change research. Numerous models have been developed using remote sensing, which permits spatially distributed mapping of the surface energy balance over large areas. This study compares flux maps over a relatively simple agricultural landscape in central Iowa, comprised of soybean and corn fields, generated with three different remote sensing-based surface energy balance models: the Two-Source Energy Balance (TSEB) model, Mapping EvapoTranspiration at high Resolution using Internalized Calibration (METRIC), and the T...
The two-source energy balance (TSEB) model uses remotely sensed maps of land-surface temperature (LS...
There are various methods available for estimating magnitude and trends of evapotranspiration. Bowen...
A number of energy balance models of variable complexity that use remotely sensed boundary condition...
he Surface Energy Balance System (SEBS) model was developed to estimate land surface fluxes using re...
Reliably and accurately quantifying evapotranspiration (ET) in a spatial and temporal domain is impo...
Evapotranspiration (ET) plays a significant role in regional and global climate through impacting re...
Presented at the fifth international conference on irrigation and drainage, Irrigation and drainage ...
The development of different energy balance models has allowed users to choose a model based on its ...
Instantaneous evapotranspiration rates and surface water stress levels can be deduced from remotely ...
The treatment of aerodynamic surface temperature in soil–vegetation–atmosphere transfer (SVAT) mod-e...
Large-scale quantification of crop evapotranspiration (ETc) from various vegetation surfaces can aid...
Evapotranspiration (ET) is a key hydrological variable and has been studies to plan irrigation sched...
Understanding the spatial variability in highly heterogeneous natural environments such as savannas ...
Accurately measuring regional evapotranspiration (ET) is of great significance for studying global c...
Due to the limited availability of land surface temperature (LST) images, thermal-based evapotranspi...
The two-source energy balance (TSEB) model uses remotely sensed maps of land-surface temperature (LS...
There are various methods available for estimating magnitude and trends of evapotranspiration. Bowen...
A number of energy balance models of variable complexity that use remotely sensed boundary condition...
he Surface Energy Balance System (SEBS) model was developed to estimate land surface fluxes using re...
Reliably and accurately quantifying evapotranspiration (ET) in a spatial and temporal domain is impo...
Evapotranspiration (ET) plays a significant role in regional and global climate through impacting re...
Presented at the fifth international conference on irrigation and drainage, Irrigation and drainage ...
The development of different energy balance models has allowed users to choose a model based on its ...
Instantaneous evapotranspiration rates and surface water stress levels can be deduced from remotely ...
The treatment of aerodynamic surface temperature in soil–vegetation–atmosphere transfer (SVAT) mod-e...
Large-scale quantification of crop evapotranspiration (ETc) from various vegetation surfaces can aid...
Evapotranspiration (ET) is a key hydrological variable and has been studies to plan irrigation sched...
Understanding the spatial variability in highly heterogeneous natural environments such as savannas ...
Accurately measuring regional evapotranspiration (ET) is of great significance for studying global c...
Due to the limited availability of land surface temperature (LST) images, thermal-based evapotranspi...
The two-source energy balance (TSEB) model uses remotely sensed maps of land-surface temperature (LS...
There are various methods available for estimating magnitude and trends of evapotranspiration. Bowen...
A number of energy balance models of variable complexity that use remotely sensed boundary condition...