Application of electrical resistivity tomography for groundwater evaluation in Yirgacheffe Town and its environs, Main Ethiopian Rift

Tariku Takele, Musa Husein, Dechasa Diriba, Getnet Assefa
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引用次数: 0

Abstract

Exploring groundwater is crucial in areas with poor surface water quality, such as Yirgacheffe Town and its surroundings. This study aims to assess aquifer materials and groundwater potential using Electrical Resistivity Tomography (ERT) in the region, within the Main Ethiopian Rift. Four electrical resistivity profiles were gathered using a Wenner array with a WDA-1 digital resistivity and induced polarization meter from Chongqing, China. Each profile extended 236 m with 4-m electrode spacing. Data were analyzed and inverted with Res2DinV software and validated against lithological logs. The ERT inversion revealed three subsurface geoelectric layers: (1) massive rhyolite ignimbrite and basalt (>2000 Ωm); (2) weathered rhyolite ignimbrite and basalt (200–2000 Ωm); and (3) topsoil (4–200 Ωm). These results are key for effective water resource management and highlight ERT's utility in similar geological settings.
应用电阻率层析成像技术评估埃塞俄比亚大裂谷地区伊尔加切夫镇及其周边地区的地下水
在地表水水质较差的地区,如伊尔加切夫镇及其周边地区,勘探地下水至关重要。本研究旨在利用电阻率断层扫描技术(ERT)评估埃塞俄比亚大裂谷地区的含水层材料和地下水潜力。使用中国重庆的 Wenner 阵列和 WDA-1 数字电阻率和感应极化仪采集了四条电阻率剖面图。每个剖面延伸 236 米,电极间距 4 米。使用 Res2DinV 软件对数据进行了分析和反演,并根据岩性测井进行了验证。ERT 反演揭示了三个地下地电层:(1) 块状流纹岩和玄武岩(>2000 Ωm);(2) 风化流纹岩和玄武岩(200-2000 Ωm);(3) 表土(4-200 Ωm)。这些结果对于有效的水资源管理至关重要,并突出了 ERT 在类似地质环境中的实用性。
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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CiteScore
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