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Dynamic analysis and field investigation of a fluidized landslide in Guanling, Guizhou, China

机译:贵州关岭流化滑坡的动力学分析与现场调查

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摘要

On June 28, 2010, a large catastrophic landslide was triggered by a heavy rainfall in Guanling, Guizhou, China. This catastrophic event destroyed two villages and caused 99 casualties. The landslide involved the failure of about 985, 000 m[3] of sandstone from the source area. The displaced materials traveled about 1300 m with a descent of about 400 m, covering an area of 129, 000 m2 with the final volume being accumulated to be 1, 840, 000 m[3], approximately. To provide information for hazard zonation of similar type of landslides in the same area, we used a dynamic model (DAN3D) to simulate the runout behavior of the displaced landslide materials, and found that a combined frictional–Vollemy model could provide the best performance in simulating this landslide and the runout is precisely duplicated with a dynamic friction angle (ϕ) of 30° and a pore pressure ratio (ru) of 0.55 for the materials at the source area and with Vollemy parameters of friction coefficient f = 0.1 (dimensionless) and turbulent coefficient ξ = 400 m/s[2]. The simulated results indicated that the duration of the movement is estimated at about 60 s for a mean velocity 23 m/s. To examine the effectiveness of simulation by means of DAN3D and also to evaluate the reactivation potential of these displaced landslide materials depositing on the valley, we used electrical resistivity tomography (ERT) method to survey the depth and internal structure of landslide deposits. The ERT results showed that DAN3D gave a good prediction on the shape and runout distance of the landslide deposits, although the predicted maximum depths of landslide deposit on some areas were differing from those obtained by ERT method.
机译:2010年6月28日,中国贵州关岭的一次强降雨引发了一场巨大的灾难性滑坡。这场灾难性事件摧毁了两个村庄,造成99人伤亡。滑坡涉及源区约985,000 m [3]的砂岩破坏。位移后的物料沿下降约400 m的距离移动了1300 m,覆盖了129,000 m2的区域,最终体积大约为1,840,000 m [3]。为了提供相同区域内类似类型滑坡的危险性分区信息,我们使用了动态模型(DAN3D)来模拟位移滑坡材料的跳动行为,并发现组合的“摩擦-体积”模型可以提供最佳的性能。模拟该滑坡和跳动时,源区域材料的动摩擦角(ϕ)为30°,孔压比(ru)为0.55,并且Vollemy参数的摩擦系数为f = 0.1(无量纲),从而精确地复制了跳动湍流系数ξ= 400 m / s [2]。模拟结果表明,对于平均速度23 m / s,运动持续时间估计为60 s。为了检查通过DAN3D进行模拟的有效性,并评估这些沉积在山谷上的滑坡物质的再活化潜力,我们使用电阻层析成像(ERT)方法调查了滑坡沉积物的深度和内部结构。 ERT结果表明,DAN3D可以很好地预测滑坡沉积物的形状和跳动距离,尽管某些地区的滑坡沉积物最大预测深度不同于ERT方法获得的最大深度。

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