Land-Atmosphere Models for Water and Energy Cycle Studies
Author:
Affiliation:
1. University of Arizona; Departments of Hydrology and Water Resources/Civil Engineering and Engineering Mechanics; Tucson AZ US
2. Utah State University; Department of Civil and Environmental Engineering/Utah Water Research Laboratory; Logan UT US
Publisher
John Wiley & Sons, Ltd
Reference85 articles.
1. HAPEX-MOBILHY: A hydrologic atmospheric experiment for the study of water budget and evaporation flux at the climatic scale;André;Bulletin of the American Meteorological Society,1986
2. Barrett A. P. 2003 National Operational Hydrologic Remote Sensing Center SNOw Data Assimilation System (SNODAS) Products at NSIDC 11 National Snow and Ice Data Center
3. A methodology for the assessment of surface resistance and soil water storage variability at mesoscale based on remote sensing measurements, a case study with the HAPEX-EFEDA data;Bastiaanssen;IAHS Special Publications,1994
4. Bounding the parameters of land-surface schemes using observational data
5. Parameter, structure, and model performance evaluation for land-surface schemes
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