使用听磁法对尼日利亚西南部奥孙州伊沃的地下水潜力进行地球物理调查

Etido Nsukhoridem Bassey , Olumide Oyewale Ajani , AbdulGaniyu Isah , Adetunji Ayokunnu Adeniji
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摘要

这项研究强调了地下水对人类活动的重要性,以及在复杂的基底地形中勘探所面临的挑战。研究建议使用声磁法(AMT)勘探地下传导结构,作为潜在地下水资源的指标。AMT 方法因其深层穿透性和对电阻率变化的敏感性而备受青睐,研究人员利用声磁层数据管理工具 (ADMT) 软件对该方法进行了数据分析。研究表明,声磁层法在绘制地下水图和描述 200 米深的地质材料特征方面非常有效。分析显示,主要由辉绿岩和米格岩片麻岩组成的各层具有不同的电阻率值。伟晶岩的电阻率较低,风化后成为含水区,而伟晶岩片麻岩的电阻率较高,表明地下水勘探依赖于基岩内的断裂带。在某些剖面中发现了 10-30 米深的潜在浅层地下水带,而在整个研究区域中则发现了 40 米及以上的深层地下水带。主要含水层系统受到断裂和风化带的影响。位于 40 米及以上深度的新鲜基岩和风化岩之间的边岩区域被认为最有可能用于钻探。总之,这项研究强调了声磁层探测技术在划定高地下水潜力区方面的有效性。研究得出结论,将听磁法与 ADMT 软件相结合,可为复杂基底地形的地下水勘探提供宝贵的工具,提供有关地下电阻率结构的详细数据,并有助于确定潜在的地下水资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geophysical investigation of groundwater potential in Iwo, Osun State, Southwestern Nigeria using audiomagnetotelluric method

This research emphasizes the significance of groundwater for human activities and the challenges of prospecting in complex basement terrain. The study suggests using the Audiomagnetotelluric (AMT) method to explore the subsurface conductivity structure as an indicator of potential groundwater resources. The AMT method, preferred for its deep penetration and sensitivity to resistivity changes, is analyzed using the Audiomagnetotelluric Data Management Tool (ADMT) software for data interpretation. The research demonstrates the effectiveness of AMT in mapping groundwater and characterizing geological materials up to a depth of 200 m.The analysis reveals distinct layers with varying resistivity values, primarily composed of Pegmatite and Migmatite gneiss. Pegmatite, with its lower resistivity, acts as a water-bearing zone when weathered, while Migmatite gneiss's higher resistivity suggests reliance on fracture zones within the bedrock for groundwater exploration. Shallow potential groundwater zones are identified at 10–30 m depth in certain profiles, while deeper zones are detected at 40 m and beyond across the study area. The prevailing aquifer systems are influenced by fractures and weathered zones. The saprock region, located between fresh bedrock and regolith at 40 m depth and above, is deemed most promising for drilling purposes. Overall, this study underscores the effectiveness of the Audiomagnetotelluric technique in delineating zones with high groundwater potential. The research concludes that combining the AMT method with ADMT software provides valuable tools for groundwater prospecting in complex basement terrain, offering detailed data on the subsurface resistivity structure and facilitating the identification of potential groundwater resources.

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