Understanding the impact of deep structures on the hydrological setting of the Eastern Bahira Basin in Morocco using combined geophysical analysis of gravity, seismic, and electrical resistivity data

IF 3.7 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Journal of King Saud University - Science Pub Date : 2024-10-21 DOI:10.1016/j.jksus.2024.103491
Anas Charbaoui , Mourad Guernouche , Azzouz Kchikach , Mohammed Jaffal , Abdessamad Hadri , Mihai Octavian Cimpoiasu , Samuel Zappalá , Mounir Amar , Oussama Khadiri Yazami
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Abstract

In arid regions like the Eastern Bahira Basin, communities mainly rely on groundwater for drinking and irrigation. However, efficiently managing these vital resources requires a deep understanding of the underlying aquifers’ structure and identifying the most suitable areas for exploitation. This presents a significant challenge for the success of water supply and irrigation programs in the Eastern Bahira Basin. This study is based on an integrative approach, combining Electrical Resistivity Tomography data, with the compilation and reinterpretation of pre-existing seismic, gravimetric and vertical electrical sounding data. This approach is based on compiling old gravimetric data and applying advanced processing techniques to determine the horizontal gradient maxima, which helps highlight the major structural alignments in the basin. Furthermore, the approach utilizes seismic data in order to enhance understanding of the deep structure of the basin, reinterpreting it in light of recent drilling data. The interpretation of the gravimetric and seismic data has also been validated by the results of vertical electrical soundings and electrical tomography that we recently acquired in the Eastern Bahira basin. The outcomes of this research provide new insights into the deep structure of the Eastern Bahira Basin and suggest the most promising hydrogeological prospects, thereby contributing to the success of the ongoing drinking water supply and irrigation program in the Eastern Bahira Basin.
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利用对重力、地震和电阻率数据的综合地球物理分析,了解深层结构对摩洛哥东巴伊拉盆地水文环境的影响
在东巴伊拉盆地等干旱地区,社区主要依靠地下水进行饮用和灌溉。然而,要有效管理这些重要资源,就必须深入了解地下蓄水层的结构,并确定最适合开采的区域。这对东巴伊拉盆地供水和灌溉计划的成功实施提出了重大挑战。本研究采用综合方法,将电阻率层析成像数据与先前存在的地震、重力测量和垂直电探测数据的汇编和重新解释相结合。这种方法的基础是汇编旧的重力测量数据,并应用先进的处理技术来确定水平梯度最大值,这有助于突出盆地的主要构造排列。此外,该方法还利用地震数据来加强对盆地深层结构的了解,并根据最新钻探数据对其进行重新解释。我们最近在东巴伊拉盆地获得的垂直电测深和电断层扫描结果也验证了对重力测量和地震数据的解释。这项研究的成果使人们对东巴伊拉盆地的深层结构有了新的认识,并提出了最有希望的水文地质前景,从而有助于东巴伊拉盆地正在进行的饮用水供应和灌溉计划取得成功。
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来源期刊
Journal of King Saud University - Science
Journal of King Saud University - Science Multidisciplinary-Multidisciplinary
CiteScore
7.20
自引率
2.60%
发文量
642
审稿时长
49 days
期刊介绍: Journal of King Saud University – Science is an official refereed publication of King Saud University and the publishing services is provided by Elsevier. It publishes peer-reviewed research articles in the fields of physics, astronomy, mathematics, statistics, chemistry, biochemistry, earth sciences, life and environmental sciences on the basis of scientific originality and interdisciplinary interest. It is devoted primarily to research papers but short communications, reviews and book reviews are also included. The editorial board and associated editors, composed of prominent scientists from around the world, are representative of the disciplines covered by the journal.
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