Articles | Volume 14, issue 3
https://doi.org/10.5194/hess-14-491-2010
https://doi.org/10.5194/hess-14-491-2010
12 Mar 2010
 | 12 Mar 2010

The Two-layer Surface Energy Balance Parameterization Scheme (TSEBPS) for estimation of land surface heat fluxes

X. Xin and Q. Liu

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Subject: Catchment hydrology | Techniques and Approaches: Remote Sensing and GIS
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Cited articles

Avissar, R.: Which type of SVAT is needed for GCMs, J. Hydrol., 50, 3751–3774, 1998.
Bastiaanssen, W. G. M., Menenti, M., Feddes, R. A., and Holtslag, A. A. M.: A remote sensing surface energy balance algorithm for land (SEBAL), J. Hydrol., 212–213, 198–212, 1998.
Blyth, E. M. and Dolman, A. J.: The roughness length for heat of sparse vegetation, J. Appl. Meteorol., 34, 583–585, 1995.
Brutsaert, W.: Evaporation into the Atmosphere, Reidel, Dordrecht, Netherlands, 299 pp., 1982.
Caselles, V., Sobrino, J. A., and Coll, C.: A physical model for interpreting the land surface temperature obtained by remote sensing sensors over incomplete canopies, Remote Sens. Environ., 39, 203–211, 1992.