4.6 Article

Numerical Modeling of Saltwater Intrusion in the Rmel-Oulad Ogbane Coastal Aquifer (Larache, Morocco) in the Climate Change and Sea-Level Rise Context (2040)

期刊

WATER
卷 13, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/w13162167

关键词

seawater intrusion; over-pumping; climate change; sea-level rise; numerical groundwater model; solute transport model

资金

  1. DRPE Moroccan Ministry of Water
  2. OCP and OCP Foundation [GEO-LAR-01/2017]
  3. OCP Foundation

向作者/读者索取更多资源

This study investigates the impact of climate change, over-pumping, and sea-level rise on seawater intrusion in the coastal aquifer of Rmel-Oulad Ogbane in northern Morocco. The modeling results show that seawater intrusion has led to contamination of groundwater quality, emphasizing the need for enhanced groundwater development and management approaches to protect fresh water resources.
Many coastal aquifers have experienced seawater intrusion (SWI) into fresh groundwater aquifers. The principal causes of SWI include over-pumping and events such as climate change (CC) and rising sea levels. In northern Morocco, the Rmel-Oulad Ogbane coastal aquifer (ROOCA) supplies high-quality groundwater for drinking water and agriculture. This favorable situation has led to increased pumping, resulting in environmental challenges such as dropping water table and SWI. Furthermore, the climate has resulted in less recharge, with an estimated annual precipitation of 602 mm and an average temperature of 18.5 degrees C. The goal of this study is to determine how CC, over-pumping, and sea-level rise (SLR) affect SWI. Computational groundwater and solute transport models are used to simulate the spatial and temporal evolution of hydraulic heads and groundwater solute concentrations. The calibration is based on steady and transient groundwater levels from 1962 to 2040. SWI simulations show that the NW sector of the coastal area would be polluted, with the toe reaching 5.2 km inland with a significant salinity (15-25 g/L). To protect the fresh water in the reservoir from SWI, enhanced groundwater development and management approaches for this aquifer are required, such as artificial recharge from surface water.

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