Latent heat fluxes simulated with a non-hydrostatic weather forecast model using actual surface properties from measurements and remote sensing
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
http://link.springer.com/content/pdf/10.1007/s10546-006-9104-2.pdf
Reference49 articles.
1. Ács F, Szász G (2002) Characteristics of microscale evapotranspiration: comparative analysis. Theor Appl Climatol 73:189–205
2. Ad–hoc Arbeitsgruppe (AG) Boden (ed) (1996) Bodenkundliche Kartieranleitung (Cartographical guide for soil identification and reconnaissance), 4th ed., Hannover, 392 pp
3. Arora VK (2003) Simulating energy and carbon fluxes over winter wheat using coupled land surface and terrestrial ecosystem models. Agric Forest Meteorol 118:21–47
4. Bell KR, Blanchard BJ, Schmugge TJ, Witzak MW (1980) Analysis of surface moisture variations within large–field site. Water Resour Res 16:796–810
5. Berger FH (2001) Bestimmung des Energiehaushaltes am Erdboden mit Hilfe von Satellitendaten (Determination of the energy budget at the earth’s surface with remote sensing data). Tharandter Klimaprotokolle, vol 5, 206 pp (ISBN 3-86005-270-5)
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