A new normalized groundwater age-based index for quantitative evaluation of the vulnerability to seawater intrusion in coastal aquifers: Implications for management and risk assessments

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MDPI

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The vulnerability of coastal aquifers to seawater intrusion has been largely relying on data-driven indexing approaches despite their shortcomings to depict the complex processes of groundwater flow and mass transport under variable velocity conditions. This paper introduces a modelling-based alternative technique relying on a normalized saltwater age vulnerability index post-processed from results of a variable density flow simulation. This distributed index is obtained from the steady-state distribution of the salinity and a restriction of the mean groundwater age to a mean saltwater age distribution. This approach provides a novel way to shift from the concentration space into a vulnerability assessment space to evaluate the threats to coastal aquifers. The method requires only a sequential numerical solution of two steady state sets of equations. Several variants of the hypothetical Henry problem and a case study in Lebanon are selected for demonstration. Results highlight this approach ability to rank, compare, and validate different scenarios for coastal water resources management. A novel concept of zero-vulnerability line/surface delineating the coastal area threatened by seawater intrusion has shown to be relevant for optimal management of coastal aquifers and risk assessments. Hence, this work provides a new tool to sustainably manage and protect coastal groundwater resources. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.

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Coastal aquifer management, Coastal aquifers, Groundwater age, Seawater intrusion, Vulnerability index, Zero vulnerability line, Lebanon, Aquifers, Equations of state, Groundwater flow, Hydrogeology, Numerical methods, Risk assessment, Salt water intrusion, Seawater, Concentration space, Indexing approaches, Mean groundwater ages, Quantitative evaluation, Steady-state distributions, Variable velocities, Variable-density flows, Vulnerability assessments, Coastal aquifer, Concentration (composition), Groundwater, Index method, Mass transport, Saline intrusion, Vulnerability, Water management, Groundwater resources

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