DocumentCode
484364
Title
Combining a Two-Source Patch Model with Satellite Data to Monitor Daily Evapotranspiration at a Regional Scale
Author
Sánchez, J.M. ; Caselles, V. ; Kustas, W.P. ; Scavone, G. ; Valor, E. ; Coll, C. ; Mira, M.
Author_Institution
Earth Phys. & Thermodynamics Dept., Univ. of Valencia, Burjassot
Volume
3
fYear
2008
fDate
7-11 July 2008
Abstract
In this work, we present a micro-meteorological approach for estimating surface energy fluxes that can be operationally used together with satellite images to monitor surface energy fluxes at a regional scale. In particular we will focus on the retrieval of daily evapotranspiration. The feasibility of the model is explored at a local scale using data collected over a maize crop in Beltsville, Maryland, USA, and a boreal forest in Sodankyla, Finland. Comparison of the results with ground measurements shows errors between plusmn15 and plusmn50 W m-2 for the retrieval of net radiation, soil heat flux, and sensible and latent heat fluxes in both sites. A methodology to apply the model to Landsat imagery is presented. Finally, we show its application to three different Landsat scenes covering the whole Basilicata region (Southern Italy). Maps of daily evapotranspiration are generated. Results are compared with ground measurements. Accuracy close to plusmn30 W m-2 is obtained.
Keywords
atmospheric boundary layer; atmospheric radiation; atmospheric temperature; crops; evaporation; hydrological techniques; land surface temperature; remote sensing; soil; transpiration; vegetation; Basilicata region; Beltsville; Finland; Landsat imagery; Maryland; Simplified Two-Source Energy Balance model; Sodankyla; Southern Italy; Two-Source Patch Model; USA; boreal forest; daily evapotranspiration monitoring; data collection; ground measurements; latent heat flux; maize crop; micro-meteorological approach; net radiation; satellite data; satellite images; sensible heat flux; soil heat flux; surface energy flux estimation; Crops; Equations; Hydrologic measurements; Hydrology; Physics; Remote monitoring; Remote sensing; Resistance heating; Satellite broadcasting; Soil; Infrared imaging; Infrared radiometry; Remote sensing;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 2008. IGARSS 2008. IEEE International
Conference_Location
Boston, MA
Print_ISBN
978-1-4244-2807-6
Electronic_ISBN
978-1-4244-2808-3
Type
conf
DOI
10.1109/IGARSS.2008.4779492
Filename
4779492
Link To Document