Daytime sensible heat flux estimation over heterogeneous surfaces using multitemporal land-surface temperature observations

Author:

Castellví F.1,Cammalleri C.2,Ciraolo G.3,Maltese A.3,Rossi F.4

Affiliation:

1. Department of Environment and Soil Sciences; University of Lleida; Lleida Spain

2. Joint Research Centre, European Commission; Ispra Italy

3. Department of Civil Engineering, Environmental, Aerospace, and Material (DICAM); Università degli Studi di Palermo; Palermo Italy

4. Institute of Biometeorology (IBIMET), Italian National Research Council; Bologna Italy

Funder

Ministerio de Ciencia y Innovación of Spain

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference85 articles.

1. A Landsat-based energy balance and evapotranspiration model in Western US water rights regulation and planning;Allen;Irrig. Drain. Syst.,2005

2. Evapotranspiration information reporting: I. Factors governing measurement accuracy;Allen;Agric. Water Manage.,2011

3. A micrometeorological investigation of a restored California wetland ecosystem;Anderson;Bull. Am. Meteorol. Soc.,2003

4. A two-source time-integrated model for estimating surface fluxes using thermal infrared remote sensing, Remote Sens;Anderson;Environ.,1997

5. Mapping daily evapotranspiration at field to continental scales using geostationary and polar orbiting satellite imagery;Anderson;Hydrol. Earth Syst. Sci.,2011

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