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Simulating the failure process of the Xinmo landslide using discontinuous deformation analysis

机译:使用不连续变形分析模拟Xinmo滑坡的故障过程

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摘要

The Xinmo landslide slope in Sichuan, China, was stable during the intensive Wenchuan Earthquake in 2008 but failed on June 24, 2017. Landslide debris buried Xinmo Village and blocked the Songpinggou River at the slope toe. This study aims to clarify the post-failure behavior of the landslide using two-dimensional discontinuous deformation analysis (2D DDA). The simulation results provide comprehensive information on the initiation and the evolution of the landslide. The failure process determined by the DDA correlates well with the seismic signal analysis results. In addition, the location of the calculated rock deposit is similar to that shown by the topographic map after the landslide. The maximum rock velocity in the landslide is 65.4 m/s. Therefore, the impacts of the high-velocity blocks and the buildings in Xinmo Village must be considered to simulate the burial of Xinmo Village by rocks and the transport of additional rocks across the Songpinggou River. This Xinmo landslide study demonstrates that the DDA accurately simulates the post-failure behavior and determines the impact area of a landslide with complicated failure processes and topography.
机译:中国四川的Xinmo Landslide坡度在2008年四川省密集的汶川地震期间稳定,但2017年6月24日失败。山体滑坡碎片埋藏了Xinmo村,并在斜坡上封锁了歌曲沟河。本研究旨在利用二维不连续变形分析(2D DDA)阐明滑坡后失效行为。仿真结果提供了有关山体滑坡的启动和演变的综合信息。由DDA确定的故障过程与地震信号分析结果很好地相关。此外,计算出的岩石沉积物的位置类似于滑坡后地形图所示的位置。滑坡中的最大岩石速度为65.4米/秒。因此,高速块和Xinmo村庄建筑物的影响必须被认为是通过岩石模拟Xinmo村的墓葬和宋沟河上的额外岩石的运输。这项Xinmo Landslide研究表明,DDA准确模拟失败后行为,并确定滑坡的冲击区域具有复杂的故障过程和地形。

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