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Centrifuge Model Simulations of Rainfall-Induced Slope Instability

机译:降雨诱发边坡失稳的离心模型模拟

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This study focused on landslides resulting from heavy precipitation, such as rainfall from hurricanes. A series of centrifuge model simulations were performed with reference to a landslide that occurred during Typhoon Nabi in Japan in 2005. The procedures of simulation on the slope using a sand-clay soil mixture were illustrated. The rainfall event was simulated by applying precipitation in increments to the slope surface until it exceeded that of the field measurements. The instability was examined using an infinite slope analysis, and the mechanism of rainfall-induced failure was discussed. For this particular study, the results showed that incremental rainfall of less than 200 mm led to local failures, whereas total accumulation of 400 mm resulted in a global slope failure. A reduction in apparent cohesion in the soil combined with an increase in pore pressure because of infiltration was responsible for the slope instability during rainfall.
机译:这项研究的重点是由强降雨(例如飓风造成的降雨)引起的滑坡。参照2005年日本台风“纳比”期间发生的山体滑坡,进行了一系列离心模型模拟。举例说明了使用砂土混合土在斜坡上进行模拟的过程。降雨事件是通过以下方式模拟的:将降水量逐步应用到坡面,直到超过实地测量的降雨量。使用无限边坡分析检查了失稳,并讨论了降雨引起的破坏的机理。对于此特定研究,结果表明,小于200 mm的增量降雨会导致局部破坏,而400 mm的总累积会导致整体边坡破坏。土壤的表观凝聚力的降低与渗透作用导致的孔隙压力的增加是降雨期间边坡失稳的原因。

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