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A kinematic model of the Hsiaolin landslide calibrated to the morphology of the landslide deposit

机译:校正滑坡沉积物形态的肖林滑坡运动学模型

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This paper presents results of a case study on the Hsiaolin catastrophic landslide, including its kinematic process and the geometry of deposition. Based on geomorphologic analysis, the landslide initiated in thick, multi-aged colluvium soils at the headwaters of a small stream upslope of Hsiaolin village. A 3D discrete element program, PFC3D was used to model the kinematic process that led to the landslide and destruction of Hsiaolin village. The landslide advanced from debris slide to debris avalanche during the kinematic process. Assuming a friction coefficient of each particle of 0.1, the predicted maximum velocity was about 70 m/s, a velocity which permits the debris to cross Qishanxi stream and deposit on the opposite bank. Based on simulation results, Hsiaolin village was inundated in 60 to 65 s after failure initiation and at 112 s after the event, the debris avalanche came to rest, forming a landslide dam.
机译:本文介绍了一个针对Hsiaolin灾难性滑坡的案例研究结果,包括其运动过程和沉积的几何形状。根据地貌分析,滑坡始于萧山村小溪上坡上游源头的厚厚,多年龄的坡积土。使用3D离散元素程序PFC3D对运动过程进行建模,该运动过程导致了Hsiaolin村的滑坡和破坏。在运动过程中,滑坡从碎屑滑坡推进到碎屑雪崩。假设每个粒子的摩擦系数为0.1,则预测的最大速度约为70 m / s,该速度允许碎片穿过岐山溪流并沉积在对岸。根据模拟结果,肖林村在破坏发生后的60到65 s内被淹没,事件发生后的112 s被淹没,碎石雪崩停止,形成了滑坡坝。

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