Dual assimilation of satellite soil moisture to improve streamflow prediction in data-scarce catchments

Author:

Alvarez-Garreton Camila123,Ryu Dongryeol1,Western Andrew W.1,Crow Wade T.4,Su Chun-Hsu1,Robertson David R.5

Affiliation:

1. Department of Infrastructure Engineering; University of Melbourne; Parkville Victoria Australia

2. Laboratorio de Dendrocronologia y Cambio Global, Instituto de Conversacion, Biodiversidad y Territorio, Universidad Austral de Chile; Valdivia Chile

3. Center for Climate and Resilience Research (CR); Chile

4. USDA-ARS Hydrology and Remote Sensing Laboratory; Beltsville Maryland USA

5. CSIRO Land and Water; Highett Victoria Australia

Funder

Becas Chile scholarship

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference62 articles.

1. From near-surface to root-zone soil moisture using an exponential filter: An assessment of the method based on in-situ observations and model simulations;Albergel;Hydrol. Earth Syst. Sci.,2008

2. An evaluation of ascat surface soil moisture products with in-situ observations in southwestern France;Albergel;Hydrol. Earth Syst. Sci.,2009

3. Alvarez-Garreton , C. 2015 http://hdl.handle.net/11343/91473

4. Alvarez-Garreton , C. D. Ryu A. W. Western W. T. Crow D. E. Robertson 2013 MODSIM2013, 20th International Congress on Modelling and Simulation held at the Adelaide Convention Centre in Adelaide, South Australia, from 1 to 6 December 2013, Modelling and Simulation Society of Australia and New Zealand

5. The impacts of assimilating satellite soil moisture into a rainfall-runoff model in a semi-arid catchment;Alvarez-Garreton;J. Hydrol.,2014

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