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Active faults and bedrock detection with super-high-density electrical resistivity imaging

机译:具有超高密度电阻率成像的主动故障和基岩检测

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Electrical resistivity imaging can reveal the spatial information of subsurface geological structures, especially active faults and bedrock. In this study, we introduced an improved super-high-density resistivity method, based on network parallel technique with an exploration mode similar to seismic method. The proposed technique simplifies the conventional electrical arrays, e.g., Dipole-Dipole and Wenner-Schlumberger arrays into AM and ABM arrays and enhances the data acquisition efficiency. A comparison between the two arrays and conventional ones revealed that AM and ABM array data can be transformed into all kinds of existing electrical arrays. We performed six 2D electrical resistivity surveys on a construction site at Yantai (Shandong Province, Eastern China) with AM and ABM array of 5-m electrode spacing to produce a similar to 2.5-m spatial resolution. For the inversion routine, the least squares method was used to obtain the subsurface electrical structures for objective interpretation. Consequently, a set of electrical anomalies associated with the active faults and bedrock interface were identified with four resistivity tomographic profiles. In these resistivity profiles, the electrical anomalies show good correlations with the drilling results. Therefore, the super-high-density electrical resistivity method is useful for quick evaluation of subsurface geological structures in an urbanized area and provides more precise and faster data acquisition than conventional techniques.
机译:电阻率成像可以揭示地下地质结构的空间信息,尤其是有源断层和基岩。在这项研究中,我们介绍了一种改进的超高密度电阻率方法,基于网络并行技术,具有类似于地震方法的勘探模式。所提出的技术简化了传统的电气阵列,例如偶极子 - 偶极子和Wenner-Schlumberger阵列进入AM和ABM阵列并增强数据采集效率。两个阵列和传统的比较显示AM和ABM阵列数据可以转换为各种现有电阵列。我们在烟台(山东省)的建筑工地上进行了六个2D电阻率调查,AM和ABM阵列为5-M电极间距,产生类似于2.5米的空间分辨率。对于反演程序,最小二乘法用于获得用于客观解释的地下电学结构。因此,用四个电阻率断层概况识别与有源故障和基岩界面相关的一组电异常。在这些电阻率轮廓中,电异常与钻井结果显示出良好的相关性。因此,超高密度电阻率法可用于快速评估城市化区域中的地质地质结构,并提供比传统技术更精确和更快的数据采集。

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