Reducing uncertainties in the estimation of land surface evapotranspiration (ET) from remote-sensing data is essential to better understand earth-atmosphere interactions. This paper demonstrates the applicability of temperature-vegetation index triangle (T(s)-VI) method in estimating regional ET and evaporative fraction (EF, defined as the ratio of latent heat flux to surface available energy) from MODIS/Terra and MODIS/Aqua products in a semiarid region. We have compared the satellite-based estimates of ET and EF with eddy covariance measurements made over 4 years at two semiarid grassland sites: Audubon Ranch (AR) and Kendall Grassland (KG). The lack of closure in the eddy covariance measured surface energy components is shown to be more ...
Rangeland monitoring services require the capability to investigate vegetation condition and to asse...
With the complex nature of land surfaces, more attention should be paid to the performance of remote...
Daily evapotranspiration (ET) is modeled globally for the period 2000–2013 based on the Penman–Monte...
Estimation of evapotranspiration (ET) is of great significance in modeling the water and energy inte...
Significance of Evapotranspiration (ET) has been realized in disciplines of hydrology, meteorology a...
The commonly applied surface temperature-vegetation index (T<inf>s</inf>-VI) triangle method is used...
The commonly applied surface temperature-vegetation index (T(s)-VI) triangle method is used to estim...
The importance of accurate estimations of regional and global evapotranspiration (ET) has been recog...
Terrestrial evapotranspiration is a critical process for the energy and hydrologic partitioning at t...
Satellite remote sensing is a promising technique for estimating global or regional evapotranspirati...
In recent decades, the land surface temperature/vegetation index (LST/NDVI) feature space has been w...
In recent decades, the land surface temperature/vegetation index (LST/NDVI) feature space has been w...
Evapotranspiration (ET) is one of the most important land surface processes for terrestrial ecosyste...
Evapotranspiration (ET) is a major pathway for water loss from many ecosystems, and its seasonal var...
In this contribution, we present a simple method based on Albedo-VI (vegetation index) triangular sp...
Rangeland monitoring services require the capability to investigate vegetation condition and to asse...
With the complex nature of land surfaces, more attention should be paid to the performance of remote...
Daily evapotranspiration (ET) is modeled globally for the period 2000–2013 based on the Penman–Monte...
Estimation of evapotranspiration (ET) is of great significance in modeling the water and energy inte...
Significance of Evapotranspiration (ET) has been realized in disciplines of hydrology, meteorology a...
The commonly applied surface temperature-vegetation index (T<inf>s</inf>-VI) triangle method is used...
The commonly applied surface temperature-vegetation index (T(s)-VI) triangle method is used to estim...
The importance of accurate estimations of regional and global evapotranspiration (ET) has been recog...
Terrestrial evapotranspiration is a critical process for the energy and hydrologic partitioning at t...
Satellite remote sensing is a promising technique for estimating global or regional evapotranspirati...
In recent decades, the land surface temperature/vegetation index (LST/NDVI) feature space has been w...
In recent decades, the land surface temperature/vegetation index (LST/NDVI) feature space has been w...
Evapotranspiration (ET) is one of the most important land surface processes for terrestrial ecosyste...
Evapotranspiration (ET) is a major pathway for water loss from many ecosystems, and its seasonal var...
In this contribution, we present a simple method based on Albedo-VI (vegetation index) triangular sp...
Rangeland monitoring services require the capability to investigate vegetation condition and to asse...
With the complex nature of land surfaces, more attention should be paid to the performance of remote...
Daily evapotranspiration (ET) is modeled globally for the period 2000–2013 based on the Penman–Monte...