Hydrologic functioning of the deep critical zone and contributions to streamflow in a high‐elevation catchment: Testing of multiple conceptual models

Author:

Dwivedi Ravindra1ORCID,Meixner Thomas1,McIntosh Jennifer C.1,Ferré P.A. Ty1,Eastoe Christopher J.2,Niu Guo‐Yue1,Minor Rebecca L.3,Barron‐Gafford Greg A.3,Chorover Jon4

Affiliation:

1. Department of Hydrology and Atmospheric Sciences University of Arizona Tucson Arizona

2. Department of Geosciences University of Arizona Tucson Arizona

3. School of Geography and Development and with Biosphere 2 University of Arizona Tucson Arizona

4. Department of Soil, Water and Environmental Science University of Arizona Tucson Arizona

Funder

Geological Society of America

Water Resources Research Center, University of Massachusetts Amherst

Division of Earth Sciences

Publisher

Wiley

Subject

Water Science and Technology

Reference94 articles.

1. Quantifying mountain block recharge by means of catchment-scale storage-discharge relationships

2. Primary weathering rates, water transit times, and concentration-discharge relations: A theoretical analysis for the critical zone

3. On the connection between terrestrial and riparian vegetation: The role of storage partitioning in water‐limited catchments;Arciniega‐Esparza S.;Hydrological Processes,2016

4. Arizona State Climate Office(2018). Arizona Drought https://azclimate.asu.edu/drought/ Access date: May 30 2018. Arizona State University Julie Ann Wrigley Global Institute of Sustainability.

5. AUTOMATED METHODS FOR ESTIMATING BASEFLOW AND GROUND WATER RECHARGE FROM STREAMFLOW RECORDS

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