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Dynamic process analysis for the formation of Yangjiagou landslide-dammed lake triggered by the Wenchuan earthquake, China

机译:汶川地震引发杨家沟滑坡堰塞湖形成的动力学过程分析

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The damming of rivers by landslides resulting in the formation of a lake was one of the typical secondary geological hazards triggered by the Wenchuan earthquake which occurred on May 12, 2008. Some landslide-dammed lakes were at a high risk of causing further damage since the rainstorm season was expected soon after the earthquake. Understanding the dynamic processes in the formation of landslide-dammed lakes is helpful in planning the mitigation measures. The Yangjiagou landslide-dammed lake was selected as a case study to investigate the typical processes of dam formation. The dynamic simulation of the formation of the Yangjiagou landslide-dammed lake was divided into two steps: the landslide step and the overflow/overtopping step. Two-dimensional discrete element method (DEM) was adopted to investigate the mechanics of the Yangjiagou landslide. The landslide process was found to be controlled by the bond strength and residual friction coefficient of the DEM models. Computational results show that the formation of the landslide dam took approximately 35 s. The maximum velocity of a typical particle was approximately 26.8 m/s. The shallow-water equation and finite difference method were used to analyze the hydrodynamic mechanisms of the overflow process of the landslide-dammed lake. Computational results show that overflow would have occurred 15.1 h after the river was blocked, and overtopping failure occurs for the landslide dam in the rainstorm season when the water flow is large enough, causing a major disaster.
机译:自2008年5月12日发生的汶川地震以来,滑坡对河流的阻塞导致形成湖泊,这是典型的次要地质灾害之一。自滑坡以来,一些滑坡淹没的湖泊极有可能造成进一步破坏。地震后不久将出现暴雨季节。了解形成滑坡坝的湖泊的动态过程有助于规划缓解措施。以杨家沟滑坡堰塞湖为例,研究大坝形成的典型过程。杨家沟滑坡堰塞湖形成过程的动力学模拟分为两个步骤:滑坡步骤和溢流/超压步骤。采用二维离散元法研究了杨家沟滑坡的力学特征。发现滑坡过程受DEM模型的粘结强度和残余摩擦系数控制。计算结果表明,滑坡坝的形成历时约35 s。典型颗粒的最大速度约为26.8 m / s。利用浅水方程和有限差分法分析了滑坡堰塞湖溢流过程的水动力机理。计算结果表明,河道阻塞后15.1 h会发生溢流,在雨季,水流量足够大时,滑坡坝会发生翻倒破坏,造成重大灾害。

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