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首页> 外文期刊>Journal of Applied Geophysics >Capability of cross-hole electrical configurations for monitoring rapid plume migration experiments
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Capability of cross-hole electrical configurations for monitoring rapid plume migration experiments

机译:跨孔电气配置能够监视快速羽流迁移实验

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摘要

Cross-hole electrical resistivity tomography is a useful tool in geotechnical, hydrogeological or fluid/gas plume migration studies. It allows better characterization of deep subsurface structures and monitoring of the involved processes. However, due to the large amount of possible four-electrode combinations between boreholes, the choice of the most efficient ones for rapid plume migration experiments (real-time monitoring), becomes a challenge. In this work, a numerical simulation to assess the capabilities and constraints of the most common cross-hole configurations for real-time monitoring is presented. Four-electrode configurations, sensitivity, dependence on the body location and amount of data were taken into account. The analysis of anomaly detection and the symmetry of the sensitivity pattern of cross-hole configurations allowed significant reduction of the amount of data and maintaining the maximum potential resolution of each configuration for real-time monitoring. The obtained results also highlighted the benefit of using the cross-hole AB-MN configuration (with both current-or potential-electrodes located in the same borehole) combined with other configurations with complementary sensitivity pattern. (C) 2015 Elsevier B.V. All rights reserved.
机译:跨孔电阻层析成像是岩土工程,水文地质或流体/气柱羽流运移研究中的有用工具。它可以更好地表征深层地下结构并监控所涉及的过程。但是,由于井眼之间可能存在大量的四电极组合,因此如何选择最有效的方法进行快速羽流迁移实验(实时监控)成为一个挑战。在这项工作中,提出了一种数值模拟,用于评估最常见的跨孔配置的功能和约束条件,以进行实时监控。考虑了四电极配置,灵敏度,对身体位置的依赖性和数据量。通过对异常检测的分析和交叉孔配置的灵敏度模式的对称性,可以显着减少数据量,并保持每种配置的最大潜在分辨率以进行实时监控。所获得的结果还突出了使用交叉孔AB-MN配置(电流或电位电极都位于同一钻孔中)与其他具有互补灵敏度模式的配置相结合的好处。 (C)2015 Elsevier B.V.保留所有权利。

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