Groundwater Potential Assessment Using Vertical Electrical Sounding and Magnetic Methods: A Case of Adilo Catchment, South Nations, Nationalities and Peoples Regional Government, Ethiopia

IF 0.4 4区 化学 Q4 CHEMISTRY, PHYSICAL Concepts in Magnetic Resonance Part A Pub Date : 2021-12-08 DOI:10.1155/2021/5424865
Mulugeta Markos, A. Saka, L. Jule, N. Nagaprasad, K. Ramaswamy
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引用次数: 5

Abstract

Vertical electrical sounding and magnetic methods were carried out to assess groundwater potential in Adilo catchment, Kembata Tembaro Zone, South Nations, Nationalities and Peoples Regional Government, Main Ethiopian Rift. The data were acquired from eight VES points using Schlumberger electrode arrays with maximum half current electrode spacing ( AB / 2 = 500 ) and 253 magnetic data points were analyzed. The qualitative analysis of VES data was accomplished by using curves, apparent resistivity, and pseudodepths, and the quantitative interpretations of the VES data were constructed by the VES data using IPI-Res3, IPI2Win, and surfer software and constructing geoelectric section along with profiles and lithological information from the borehole and Geosoft interpretation was used for magnetic data. The VES results of the data revealed five geoelectric layers which differ in degree of fracturing, weathering, and formation. The upward continued magnetic field map anomaly to 560 m illustrated northwestern to the southwest; areas have a low magnetic anomaly. Examining the potential aquifer of profile one’s geoelectric section, the horizons of layer four were better potential aquifers as the highly fractured and weathered ignimbrite zone of layer five of VES13 was 219 m deeper than the depths of the other VES points, and along with profile two geoelectric sections, the horizon of layer four VES23 layer five has the lowest resistivity with large thickness at a depth of 253 m. Thus, the low resistivity and the large thickness of these formations are an indication of the high yield of groundwater potential in the study area.
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利用垂直电测深和磁法评价地下水潜力:以阿迪洛流域为例,埃塞俄比亚南部国家、民族和人民地区政府
采用垂直电测深和磁法评估了埃塞俄比亚主要裂谷南部国家、民族和人民地区政府Kembata Tembaro地区Adilo集水区的地下水潜力。使用最大半电流电极间距(AB / 2 = 500)的斯伦贝谢电极阵列从8个VES点获取数据,并分析了253个磁数据点。利用测井曲线、视电阻率、拟深度等方法对VES数据进行定性分析,利用IPI-Res3、IPI2Win和surfer软件对VES数据进行定量解释,并结合钻孔剖面和岩性信息构建地电剖面,利用Geosoft软件对磁力数据进行解释。探测结果显示了5个地电层,这些地电层的压裂程度、风化程度和地层形成程度各不相同。560m的向上连续磁场图异常由西北向西南方向显示;该地区具有低磁异常。对1号剖面地电剖面的潜在含水层进行检测发现,VES13第5层高度断裂风化的火成岩带比其他测点深度深219 m,第4层为较好的潜在含水层,与2号剖面地电剖面一样,VES23第5层的层位在深度253 m处电阻率最低,厚度较大。因此,这些地层的低电阻率和大厚度表明研究区地下水潜力高。
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: Concepts in Magnetic Resonance Part A brings together clinicians, chemists, and physicists involved in the application of magnetic resonance techniques. The journal welcomes contributions predominantly from the fields of magnetic resonance imaging (MRI), nuclear magnetic resonance (NMR), and electron paramagnetic resonance (EPR), but also encourages submissions relating to less common magnetic resonance imaging and analytical methods. Contributors come from academic, governmental, and clinical communities, to disseminate the latest important experimental results from medical, non-medical, and analytical magnetic resonance methods, as well as related computational and theoretical advances. Subject areas include (but are by no means limited to): -Fundamental advances in the understanding of magnetic resonance -Experimental results from magnetic resonance imaging (including MRI and its specialized applications) -Experimental results from magnetic resonance spectroscopy (including NMR, EPR, and their specialized applications) -Computational and theoretical support and prediction for experimental results -Focused reviews providing commentary and discussion on recent results and developments in topical areas of investigation -Reviews of magnetic resonance approaches with a tutorial or educational approach
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