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Hydrogeological investigation of shallow aquifers in an arid data-scarce coastal region (El Daba'a, northwestern Egypt)

机译:干旱少雨的沿海地区(埃及西北部El Daba'a)浅层含水层的水文地质调查

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Hydrogeological investigations in arid regions are particularly important to support sustainable development. The study area, El Daba'a in northwestern Egypt, faces scarce water resources as a result of reported climate change that particularly affects the southern Mediterranean coast and increases stress on the local groundwater reserves. This change in climate affects the area in terms of drought, over-pumping and unregulated exploration of groundwater for irrigation purposes. The hydrogeological investigation is based on a multidisciplinary data-layer analysis that includes geomorphology, geology, slope, drainage lines, soil type, structural lineaments, subsurface data, stable isotopes, and chemical analyses. The study area contains Pleistocene and middle Miocene marine limestone aquifers. Based on lithology and microfacies analysis, the middle Miocene aquifer is subdivided into two waterbearing zones. The area is affected by sets of faults and anticline folds, and these structures are associated with fractures and joints that increase permeability and facilitate the recharge of groundwater. Stable isotope data indicate that groundwater of both the Pleistocene and middle Miocene aquifers is recharged by modern precipitation. The high salinity values observed in some groundwater wells that tap both aquifers could be attributed to leaching and dissolution processes of marine salts from the aquifers' marine limestone matrix. In addition, human activities can also contribute to an increase in groundwater salinity. A future water exploration strategy, based on the results from the multidisciplinary data-layer analysis, is proposed for the area. The derived scientific approach is transferable to other arid coastal areas with comparable conditions.
机译:干旱地区的水文地质调查对于支持可持续发展尤为重要。该研究区位于埃及西北部的El Daba'a,由于据报道的气候变化特别影响了地中海南部沿海地区并增加了当地地下水储量的压力,其水资源匮乏。这种气候变化在干旱,灌溉过度和灌溉用水不受管制的开采方面影响了该地区。水文地质调查基于多学科的数据层分析,包括地貌,地质,坡度,排水线,土壤类型,结构性,地下数据,稳定同位素和化学分析。研究区域包括更新世和中新世中期海相石灰岩含水层。根据岩性和微相分析,将中新世中层含水层划分为两个含水层。该地区受到断层和背斜褶皱的影响,这些结构与裂缝和节理有关,这些裂缝和节理增加了渗透性并促进了地下水的补给。稳定的同位素数据表明,现代降水补充了更新世和中新世中期含水层的地下水。在同时开采两个含水层的某些地下水井中观察到的高盐度值,可归因于来自含水层海洋石灰石基质中海盐的浸出和溶解过程。此外,人类活动也可以促进地下水盐分的增加。根据多学科数据层分析的结果,提出了该地区未来的水勘探策略。所得出的科学方法可以转移到条件可比的其他干旱沿海地区。

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