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Hydrogeological and geophysical study for deeper groundwater resource in quartzitic hard rock ridge region from 2D resistivity data

机译:利用二维电阻率资料研究石英质硬岩脊区较深层地下水的水文地质地球物理研究

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Electrical resistivity method is a versatile and economical technique for groundwater prospecting in different geological settings due to wide spectrum of resistivity compared to other geophysical parameters. Exploration and exploitation of groundwater, a vital and precious resource, is a challenging task in hard rock, which exhibits inherent heterogeneity. In the present study, two-dimensional Electrical Resistivity Tomography (2D-ERT) technique using two different arrays, viz., polea€“dipole and polea€“pole, were deployed to look into high signal strength data in a tectonically disturbed hard rock ridge region for groundwater. Four selected sites were investigated. 2D subsurface resistivity tomography data were collected using Syscal Pro Switch-10 channel system and covered a 2 km long profile in a tough terrain. The hydrogeological interpretation based on resistivity models reveal the water horizons trap within the clayey sand and weathered/fractured quartzite formations. Aquifer resistivity lies between a??3a€“35 and 100a€“200 e??o m. The results of the resistivity models decipher potential aquifer lying between 40 and 88 m depth, nevertheless, it corroborates with the static water level measurements in the area of study. The advantage of using polea€“pole in conjunction with the polea€“dipole array is well appreciated and proved worth which gives clear insight of the aquifer extent, variability and their dimension from shallow to deeper strata from the hydrogeological perspective in the present geological context.
机译:电阻率法是一种适用于不同地质环境下的地下水勘探的通用且经济的技术,因为与其他地球物理参数相比,电阻率谱范围广。勘探和开采地下水是一种至关重要的宝贵资源,这对具有固有异质性的硬岩来说是一项艰巨的任务。在本研究中,使用二维极化电阻层析成像(2D-ERT)技术,使用两种不同的阵列,即极地“偶极子”和“极地”极子,以研究构造扰动的硬岩中的高信号强度数据地下水的山脊区域。调查了四个选定的地点。使用Syscal Pro Switch-10通道系统收集了2D地下电阻率层析成像数据,并在崎a的地形中覆盖了2 km长的剖面。基于电阻率模型的水文地质解释揭示了粘土砂和风化/破裂石英岩地层中的水位圈闭。含水层电阻率在3a?35和100a?200e?m之间。电阻率模型的结果破译了潜在的含水层,深度在40至88 m之间,这与研究区域的静态水位测量结果相符。极点与极点偶极子阵列结合使用的优势已广为人知并被证明是值得的,这可以从当前地质背景下的水文地质角度清晰地了解浅层至深层的含水层范围,变化性及其尺寸。 。

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