利用基于明古鲁市甘榜美拉裕岩石电阻率和孔隙度的垂直电探测 (VES) 数据进行地下水研究

Tella Dwi Syaputri, Suhendra Suhendra, Halauddin Halauddin, Liza Lidiawati, Risma Nurhidayah
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引用次数: 0

摘要

本研究旨在根据岩石的电阻率和孔隙率值确定地下水,这些参数是该地区地下水资源管理和发展规划的重要参数。本地下水研究使用基于岩石电阻率和孔隙度值的垂直电探测(VES)数据,在位于明古鲁市甘榜美拉裕区的 20 个探测点使用(VES)方法测量电阻率。VES 法是地质电法中确定地下岩石岩性特征的方法之一。对获得的电阻率数据进行反演、分析和解释,以获得明古鲁市甘榜美拉裕地区地下岩石的岩性和地下水位分布。结果表明,根据低电阻率异常值,西部地区存在 5 至 30 米的地下水,东部地区存在 10 至 50 米的地下水,电阻率值从 5 Ω.m 到 45 Ω.m 不等。这项研究有望为明古鲁市甘榜美拉裕地区的地下水资源管理做出重大贡献,并可作为该地区发展规划的基础。此外,还希望本研究成果能够为水文地质和地下水建模领域的进一步研究提供参考:含水层;地电;地下水;孔隙度;电阻率
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Groundwater Study Using Vertical Electrical Sounding (VES) Data Based on Resistivity and Porosity of Rocks in Kampung Melayu, Bengkulu City
This research aims to identify groundwater based on the value of resistivity and porosity of rocks, which are important parameters in the management of groundwater resources and Development Planning in the region. This groundwater research using Vertical Electrical Sounding (VES) data based on the value of resistivity and porosity of rocks was carried out by measuring resistivity using the (VES) method at 20 sounding points located in Kampung Melayu District, Bengkulu City. The VES method is one of the approaches in the geoelectric method to determine the lithological characteristics of subsurface rocks. Resistivity Data obtained were then inverted and analyzed and interpreted to obtain lithology of subsurface rocks and groundwater level distribution in Kampung Melayu, Bengkulu City. The results showed the presence of groundwater based on low resistivity anomaly values with a range of values from 5 to 30 meters in the West and 10 to 50 meters in the East, with resistivity values ranging between 5 Ω.m up to 45 Ω.m. This research is expected to make a significant contribution to the management of groundwater resources in the District of Kampung Melayu, Bengkulu City and can be the basis for development planning in the area. In addition, it is hoped that the results of this research can be a reference for further research in the field of hydrogeology and groundwater modeling. Keywords: Aquifer; geoelectricity; groundwater; porosity; resistivity
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