An Initial Framework for Understanding the Resilience of Aquifers to Groundwater Pumping

Author:

Hera-Portillo África de laORCID,López-Gutiérrez Julio,Mayor BeatrizORCID,López-Gunn Elena,Henriksen Hans JørgenORCID,Gejl Ryle NørskovORCID,Zorrilla-Miras Pedro,Martínez-Santos PedroORCID

Abstract

Groundwater stored in aquifers experiences a wide variety of natural, induced and/or anthropogenic disturbances. Among them, groundwater extraction is the main disturbance that affects most of the aquifers in the world. Aquifer’s resilience, understood as the potential of the aquifer to sustain disturbances on the long term and to guarantee essential qualities and functions, provides a key tool when assessing sustainable groundwater management alternatives. The aim of this work is to illustrate an aquifer resilience framework that can support groundwater sustainable management. A theoretical framework is based on the identification of the key variables that parameterize the quantitative and qualitative responses of the groundwater flow system to pumping. An example from the literature based in Denmark is provided as an illustration of the proposed framework. The results show that long-term high quality data are essential to make a step further in aquifers dynamic responses. The quantitative understanding of the aquifer’s behavior before, during and after groundwater extraction provides a valuable source of information in order to identify thresholds of change (tipping points, transitions or regime shifts) which could permit pro-active groundwater management decisions. Moreover, a deeper understanding on the aquifer’s dynamics provides useful information in order to avert threats that may put the sustainability of the system at risk.

Funder

Horizon 2020 Framework Programme

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference49 articles.

1. Revisiting groundwater overdraft based on the experience of the Mancha Occidental Aquifer, Spain

2. Aquifer overexploitation: what does it mean?

3. Intensive use of groundwater: A new situation which demands proactive action;Llamas,2003

4. https://h2ogeo.upc.edu/images/pdf/proyectos/Empresas/Informe_MASE.pdf

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