On the connection between terrestrial and riparian vegetation: the role of storage partitioning in water-limited catchments
Author:
Affiliation:
1. Instituto de Ingeniería; Universidad Nacional Autónoma de México; Mexico
2. Department of Hydrology and Water Resources; University of Arizona; Tucson AZ USA
3. Biosphere 2 Earthscience; University of Arizona; Tucson AZ USA
Publisher
Wiley
Subject
Water Science and Technology
Reference23 articles.
1. Quantifying mountain block recharge by means of catchment-scale storage-discharge relationships;Ajami;Water Resources Research,2011
2. Global patterns in base flow index and recession based on streamflow observations from 3394 catchments;Beck;Water Resources Research,2013
3. Global maps of streamflow characteristics based on observations from several thousand catchments;Beck;Journal of Hydrometeorolology,2015
4. Process-based characterization of evapotranspiration sources over the North American monsoon region;Bohn;Water Resources Research,2016
5. Quantifying regional scale ecosystem response to changes in precipitation: Not all rain is created equal;Brooks;Water Resources Research,2011
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