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Hanaa Aguedai—Intrusion Zones Identification in the Mnasra Aquifer (Morocco) Using the Seawater Intrusion Models and the Geophysics Data

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Geospatial Technology

Abstract

Coastal aquifers in Morocco are increasingly impacted by salt pollution. Several factors may account for the anomalies of salinization of a groundwater such as human activities, aerosols, sedimentary paleosalinity or seawater intrusion. The latter may compromise the quality of the water resource for both drinking water supply and its irrigation ability. Using the digital model, the current work aims at duplicating the pattern of evolution of the Mnasra saline intrusion mechanism that boils down to a problem of flow and transport of solutes within the aquifer, in both steady and transient conditions. We simulated the behavior of the aquifer by the numerical code to the finite elements finite element subsurface FLOW (FEFLOW). Finally, to confirm the existence of areas affected by marine intrusion, we combined the results of the FEFLOW marine intrusion model with geophysical data based on electrical tomography (electric tomography profiles). The interpretation of the geophysical data and the establishment of a new map of iso-concentrations have made it possible to identify the most impacted zones by the intrusion.

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Aguedai, H., Lahlou, F., El Mansouri, B. (2020). Hanaa Aguedai—Intrusion Zones Identification in the Mnasra Aquifer (Morocco) Using the Seawater Intrusion Models and the Geophysics Data. In: Jarar Oulidi, H., Fadil, A., Semane, N. (eds) Geospatial Technology. Advances in Science, Technology & Innovation. Springer, Cham. https://doi.org/10.1007/978-3-030-24974-8_4

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