Satellite Soil Moisture: Review of Theory and Applications in Water Resources
Author:
Publisher
Springer Science and Business Media LLC
Subject
Water Science and Technology,Civil and Structural Engineering
Link
http://link.springer.com/article/10.1007/s11269-017-1722-6/fulltext.html
Reference120 articles.
1. Al-Shrafany D, Rico-Ramirez M, Han D (2012) Calibration of roughness parameters using rainfall runoff water balance for satellite soil moisture retrieval. J Hydrol Eng 17:704–714
2. Al-Shrafany D, Rico-Ramirez MA, Han D, Bray M (2013) Comparative assessment of soil moisture estimation from land surface model and satellite remote sensing based on catchment water balance. Meteorol Appl. doi: 10.1002/met.1357
3. Andersson L, Harding RJ (1991) Soil-moisture deficit simulations with models of varying complexity for forest and grassland sites in Sweden and the U.K. Water Resour Manag 5(1):25–46
4. Argyrokastritis I, Kargas G, Kerkides P (2009) Simulation of soil moisture profiles using K(h) from coupling experimental retention curves and one-step outflow data. Water Resour Manag 23(15):3255–3266
5. Behari J (2005) Microwave dielectric behavior of wet soils, 8. Anamaya Publishers, New Delhi
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