首页> 外文期刊>Arabian journal of geosciences >Identifications of fractured zones in part of hard rock area of Sonebhadra District, U.P., India using integrated surface geophysical method for groundwater exploration
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Identifications of fractured zones in part of hard rock area of Sonebhadra District, U.P., India using integrated surface geophysical method for groundwater exploration

机译:集成地表物探方法在印度桑巴哈德拉地区硬岩区部分裂缝区域的识别

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Surface geophysical methods were used to determine the locations of fracture zones in part of the hard rock area in Sonebhadra District of Uttar Pradesh, India. The survey comprises three DC resistivity profile using the gradient profiling technique and ten very low frequency electromagnetic (VLF-EM) traverses profiles. The methods were used over survey lines extending between 200 and 400 m; the results were correlated to locate fracture zones for the purpose of groundwater exploration. Qualitative interpretation of the VLF-EM was carried out using Fraser and Karous–Hjelt filters. The result of the interpretation revealed a number of subsurface zones with high real component current density that defines the potential subsurface features (probably fracture zones). The subsurface feature concurred with the low resistive zones indentified from the gradient resistivity profiling. The zones where further inferred quantitatively using data obtained from DC resistivity sounding at some selected anomalous points. The result obtained proves the efficiency of integrating both methods in detecting fractures zones in hard rock area.
机译:地面地球物理方法用于确定印度北方邦Sonebhadra区部分硬岩区域的裂缝带位置。该测量包括使用梯度分布技术的三个直流电阻率曲线和十个极低频电磁(VLF-EM)导线曲线。这些方法在200至400 m之间的勘测线上使用;为了确定地下水勘探的目的,将结果关联到裂缝区域的位置。使用Fraser和Karous-Hjelt滤波器对VLF-EM进行定性解释。解释的结果表明,许多地下区域具有较高的实际分量电流密度,从而定义了潜在的地下特征(可能是断裂区域)。地下特征与低电阻区一致,该低电阻区由梯度电阻率分布图确定。使用从某些选定的异常点处的直流电阻率测得的数据进一步定量推断出这些区域。所获得的结果证明了将两种方法结合在一起用于检测硬岩地区裂缝区域的效率。

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