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Groundwater connectivity of a sheared gneiss aquifer in the Cauvery River basin, India

Sarah L. Collins; Sian E. Loveless; Sekhar Muddu; Sriramulu Buvaneshwari; Romesh N. Palamakumbura; Maarten Krabbendam; Dan J. Lapworth; Christopher R. Jackson; Daren C. Gooddy; Siva Naga Venkat Nara; Somsubhra Chattopadhyay; Alan M. MacDonald
Hydrogeology Journal · Vol. 28, Issue 4 · pp. 1371-1388 · 2020

Abstract

Connectivity of groundwater flow within crystalline-rock aquifers controls the sustainability of abstraction and baseflow to rivers, yet is often poorly constrained at a catchment scale. Here groundwater connectivity in a sheared gneiss aquifer is investigated by studying the intensively abstracted Berambadi catchment (84 km 2 ) in the Cauvery River Basin, southern India, with geological characterisation, aquifer properties testing, hydrograph analysis, hydrochemical tracers and a numerical groundwater flow model. The study indicates a well-connected system, both laterally and vertically, that has evolved with high abstraction from a laterally to a vertically dominated flow system. Likely as a result of shearing, a high degree of lateral connectivity remains at low groundwater levels. Because of their low storage and logarithmic reduction in hydraulic conductivity with depth, crystalline-rock aquifers in environments such as this, with high abstraction and variable seasonal recharge, constitute a highly variable water resource, meaning farmers must adapt to varying water availability. Importantly, this study indicates that abstraction is reducing baseflow to the river, which, if also occurring in other similar catchments, will have implications downstream in the Cauvery River Basin.

Bibliographic Information

JournalHydrogeology Journal
PublisherSpringer
Publication Date2020-06-01
Publication Year2020
Volume28
Issue4
Pages1371-1388
Document TypeJournal Article
Print ISSN1431-2174
eISSN1435-0157
DOI10.1007/s10040-020-02140-y

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NARA Access Coverage1992-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10040
Publisher PageOpen Publisher Page
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