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Analysis of the mechanism and failure mode of landslides subjected to transient seepage in a Piedmont region of Nanjing area

机译:南京地区皮埃蒙特地区瞬态渗流机制和失效模式分析

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摘要

The landslide mechanism and failure mode of the gently sloping Piedmont region are analyzed in Fangshan and Zhutoushan hills in the Nanjing area of Jiangsu Province, China. These hills are underlain by volcanic rocks and have a distinctive stratigraphic structure composed of fill or clay at the surface, coarse-grained soil or fully weathered rock in the middle, and highly or moderately weathered rock at the bottom. Landslides occurred during or after heavy rainfall, and the monitored displacements of the slope surface indicated that sliding had not stopped after a long period of continuous rainfall. Through monitoring of groundwater and simulation, we found that the low-permeability highly weathered rock can restrict the activity of the lower aquifer, resulting in a rapid rise of pore pressure and formation of confined water in response to rainfall, which can lead to slope failure. We discuss the mechanism and avulsed-drifted failure mode of the landslides considering seepage deformation and pressure balance. Finally, we propose appropriate control measures for these landslides. The results of this paper will contribute to prevention of similar landslide geological hazards.
机译:中国江苏省南京地区的南京地区的山坡和秋山山脉山体滑坡机制和失效模式。这些山丘是由火山岩底层的,并且具有在地面,粗粒土壤或中间粗糙的土壤或完全被风化的岩石组成的独特的地层结构,底部高度或中度风化的岩石。降雨期间或之后发生的山体滑坡,斜坡表面的受监测位移表明,在长期连续降雨之后,滑动尚未停止。通过监测地下水和模拟,我们发现低渗透性高度风化的岩石可以限制下含水层的活性,导致孔隙压力的快速升高和局限性的压力,这导致坡度衰竭。我们讨论了考虑渗流变形和压力平衡的滑坡机构和撕血漂移模式。最后,我们为这些山体滑坡提出了适当的控制措施。本文的结果将有助于预防类似的滑坡地质危害。

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