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An application of the high-density electrical resistivity method for detecting slide zones in deep-seated landslides in limestone areas

机译:高密度电阻率法检测石灰岩区深层滑坡中载玻片的应用

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摘要

The deep-seated landslide near the Nanheng town, located in eastern China, is exhibited by the limestone at its bottom. The landslide process is related to the geological succession'sweak interlayer covering the bedrock and is characterized by the loose deposit's over-position on the silty clay. A field survey and the 2D high-density electrical method were carried out to detect the overburden thickness, karst cavities and sliding zone location. After confirming the abnormal area, the casing drilling method and numerical simulation were used to verify the geophysical results. The results show that the interpretation results of the slide zone were verified by the FLAC2D simulation on the sliding zone determined by the high-density electrical method and drilling method, and the reliability of the landslide stability evaluation was improved. This research proposes a method for accurately dividing the landslide profile, that is, the high-density electrical resistance tomography (ERT), which is used to preliminarily divide the formation lithology and limestone distribution area, and then the casing drilling method is used to correct the distribution and location of the formation. The sliding zone determined by these two methods can be used in numerical simulations to improve the accuracy of landslide stability evaluations. Crown Copyright (C) 2020 Published by Elsevier B.V. All rights reserved.
机译:位于中国东部的南夜镇附近的深层滑坡在其底部的石灰石展出。山体滑坡过程与覆盖基岩的地质继承的中间层,其特征在于粉质粘土上松散的沉积物。进行现场调查和2D高密度电气方法,以检测覆盖层厚度,岩溶腔和滑动区位置。在确认异常区域之后,使用套管钻井方法和数值模拟来验证地球物理结果。结果表明,通过高密度电气方法和钻井方法确定的滑动区上的FLAC2D模拟验证了滑动区的解释结果,提高了滑坡稳定性评价的可靠性。该研究提出了一种用于精确地分割滑坡型材的方法,即,用于预先划分地层岩性和石灰石分布区域的高密度电阻断层扫描(ERT),然后使用套管钻孔方法来校正形成的分布和位置。通过这两种方法确定的滑动区可以用于数值模拟,以提高滑坡稳定性评估的准确性。皇冠版权(c)2020由elsevier b.v发布。保留所有权利。

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