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Validation of a new magnetometric survey for mapping 3D subsurface leakage paths

机译:验证用于映射3D地下泄漏路径的新磁体勘测

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摘要

Techniques for more reliable detection of 3D subsurface flow paths are highly important for most water-related geotechnical projects. In this case study, a magnetometric resistivity method with a new approach and state-of-the-art technology (Willowstick survey) was applied to the testbed dam (YD dam) site, and its applicability was validated by geotechnical investigation techniques including borehole drilling and sampling, Lugeon test, flow direction and velocity test, and seismic tomography. In addition to the magnetometric survey, a 3D electrical resistivity survey was performed independently and the results were compared and discussed. The electrical resistivity survey was effective in detecting groundwater levels, but it was limited in mapping leakage paths. On the other hand, the Willowstick magnetometric survey effectively detected geologic weaknesses (e.g., fault fracture) and potential leakage paths of the dam site foundation rocks. The results of this research are expected to be effective for water infrastructures where leakage is an important issue.
机译:对于大多数水有关的岩土工程,用于更可靠地检测3D地下流动路径的技术对大多数水有关的岩土工程非常重要。在这种情况下,利用具有新方法和最先进的技术(Willowstick Survey)的磁力电阻率法应用于测试平坝(YD大坝)现场,并通过岩土调查技术(包括钻孔钻井)验证其适用性和采样,脱果试验,流动方向和速度试验,以及地震断层扫描。除了磁体测量之外,独立进行3D电阻率调查,并进行比较和讨论结果。电阻率调查有效地检测地下水位,但它在绘制泄漏路径中受到限制。另一方面,Willowstick磁体测量有效地检测到坝址基础岩石的地质弱点(例如,故障骨折)和潜在的泄漏路径。该研究的结果预计对水基础设施有效,泄漏是一个重要问题。

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