Contribution of the time domain electromagnetic method to the study of the Kalahari transboundary multilayered aquifer systems in Southern Angola

IF 2.4 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Alain P. Francés, Elsa C. Ramalho, Fernando Monteiro Santos, José M. Llorente, Teodora Mateus, Raquel Martín-Banda, Ivan Cuervo, José Luis García Lobón, Valter Dala, Manuel Ditutala, Abreu Famorosa, Américo da Mata Victorino
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引用次数: 0

Abstract

The Cunene Province (Southern Angola) is facing recurrent and pluriannual droughts. Surface water supply could be reinforced using the groundwater resources of the multilayered aquifer systems (MAS) hosted in the siliciclastic sediments of the Kalahari Group. The MAS were first identified in the early 2000s in Northern Namibia and recently in the Cunene Province, by studies of the PLANAGEO project based on modern processing and reinterpretation of legacy data from the 1960s and 1970s (electrical resistivity data and deep boreholes). This article presents the results of a time domain electromagnetic (TDEM) survey conducted in the Cunene Province to: (i) contribute to the design of the hydrogeological conceptual model of the transboundary MAS, namely their geometry and extension; (ii) validate the reprocessing of the legacy data; and (iii) guide the future location of boreholes. Results depict the geometry of the sedimentary basin and the characterization of the MAS, with particular emphasis on the intermediate and deep aquifers. The borehole siting, based on the interpretation of the new TDEM data and the legacy data (clay markers in borehole logs), was successful, with a good agreement between estimated and observed horizons of the deep aquifers. However, the presence of clayey layers, a clay-rich matrix in the detrital deposits and saline/brackish groundwater led to uncertainties in the interpretation of the electrical transects. As such, recommendations are made to improve future data collection and mapping of the MAS.

Abstract Image

时域电磁法对安哥拉南部卡拉哈里跨界多层含水层系统研究的贡献
库内内省(安哥拉南部)正面临着经常性的多年干旱。可以利用卡拉哈里群硅碎屑沉积物中的多层含水层系统(MAS)的地下水资源来加强地表水供应。多层含水层系统于 2000 年代初首次在纳米比亚北部发现,最近又在库内内省发现,是 PLANAGEO 项目根据对 20 世纪 60 和 70 年代遗留数据(电阻率数据和深钻孔)的现代处理和重新解释进行研究后发现的。本文介绍了在库内内省进行的时域电磁(TDEM)勘测的结果,目的是(i) 帮助设计跨界 MAS 的水文地质概念模型,即其几何形状和延伸;(ii) 验证遗留数据的再处理;(iii) 指导未来钻孔的位置。研究结果描述了沉积盆地的几何形状和 MAS 的特征,特别强调了中间含水层和深含水层。根据对新的 TDEM 数据和遗留数据(钻孔记录中的粘土标记)的解释,钻孔选址取得了成功,深含水层的估计地层与观测地层之间吻合良好。不过,由于存在粘土层、碎屑沉积物中富含粘土的基质以及盐/咸水地下水,电横断面的解释存在不确定性。因此,提出了改进未来数据收集和绘制 MAS 地图的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hydrogeology Journal
Hydrogeology Journal 地学-地球科学综合
CiteScore
5.40
自引率
7.10%
发文量
128
审稿时长
6 months
期刊介绍: Hydrogeology Journal was founded in 1992 to foster understanding of hydrogeology; to describe worldwide progress in hydrogeology; and to provide an accessible forum for scientists, researchers, engineers, and practitioners in developing and industrialized countries. Since then, the journal has earned a large worldwide readership. Its peer-reviewed research articles integrate subsurface hydrology and geology with supporting disciplines: geochemistry, geophysics, geomorphology, geobiology, surface-water hydrology, tectonics, numerical modeling, economics, and sociology.
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