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A new geophysical exploration method based on electrical resistivity to detect underground utility lines and geological anomalies: Theory and field demonstrations

机译:一种基于电阻率的新地球物理勘探方法,以检测地下效用线和地质异常:理论与野外示威性

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摘要

Although ground investigation had carried out prior to the construction, many problems have arisen during the civil-engineering works because of the presence of the unexpected underground utility lines or anomalies. In this study, a new geophysical exploration method was developed to solve those problems by improving and supplementing the existing methods. This new method was based on the difference of electrical resistance values between anomalies and surrounding ground medium. A theoretical expression was suggested to define the characteristics of the anomalies such as location, size and direction, by applying the electric field analysis. An inverse analysis algorithm was also developed to solve the theoretical expression using the measured electrical resistance values which were generated by the voltage flowing the subsurface medium. To verify the developed method, field applications were conducted at the sites under construction or planned. From the results of the field tests, it was found that not only the new method was more predictive than the existing methods, but its results were good agreed with the measured ones. Therefore, it is expected that application of the new exploration method reduces the unexpected accidents caused by the underground uncertainties during the underground construction works.
机译:尽管在建造之前进行了地面调查,但由于存在意外地下效用线或异常,在土木工程作品中出现了许多问题。在这项研究中,开发了一种新的地球物理勘探方法来解决这些问题,通过改善和补充现有方法来解决这些问题。这种新方法基于异常和周围地介质之间的电阻值的差异。建议通过施加电场分析来确定理论表达以定义异常,尺寸和方向的异常特性。还开发了一种逆分析算法来解决使用通过流动地下介质的电压产生的测量的电阻值来解决理论表达。为了验证开发的方法,现场应用在建设或计划的地点进行。从现场测试的结果来看,发现新方法不仅比现有方法更具预测,而且其结果与测量的结果很好。因此,预计新勘探方法的应用会降低地下建设工程期间地下不确定性引起的意外事故。

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