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Comprehensive study on failure prediction of landslide dams by piping

机译:管道滑坡大坝破坏预测的综合研究

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Failure prediction of landslide dams is a very important aspect of landslide disaster reduction. This paper presents the results of a comprehensive study on the prediction of piping-induced failure of landslide dams in the following aspects: (1) Extensive geophysical investigations for understanding the internal structure of landslide dams using the Microtremor Chain Array Survey (MCAS) in the Higashi-Takezawa landslide dam in Niigata, Japan, and Kel-Tor landslide dam in the Kyrgyz Republic, and to evaluate their susceptibility to piping; (2) Large-scale landslide dam model tests to simulate the failure mechanisms of landslide dams in real case scenarios, coupled with transient pore-water pressure variations in the dam models, as well as changes in turbidity of the effluent seepage at the downstream toe in relation to the subsidence that occurred at the dam crest; (3) Parametric study using laboratory model tests to determine the critical hydraulic parameters under steady-state seepage.
机译:滑坡大坝的破坏预测是减少滑坡灾害的一个非常重要的方面。本文从以下几个方面对滑坡大坝的管道诱发破坏进行了全面的研究,其结果是:(1)利用微震链阵列勘测技术(MCAS)对滑坡大坝的内部结构进行了广泛的地球物理研究。日本新泻的Higashi-Takezawa滑坡坝和吉尔吉斯共和国的Kel-Tor滑坡坝,并评估它们对管道的敏感性。 (2)大型滑坡坝模型试验,以模拟真实情况下的滑坡坝破坏机理,并结合大坝模型中的瞬态孔隙水压力变化以及下游脚趾渗流的浊度变化关于在坝顶发生的沉降; (3)使用实验室模型测试进行参数研究,以确定稳态渗流下的临界水力参数。

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