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Influence of reservoir water level variations on slope stability and evaluation of landslide tsunami

机译:水库水位变化对山坡稳定性的影响及山坡海啸评价

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Reservoir filling and water level variations are important factors that induce slope failures near the reservoir banks. Once a landslide occurs, a tsunami might form which can result in a far greater disaster. This study provides insight and a method for analyzing the disaster chain of a landslide near the reservoir water by taking a slope near the bank of A'lagou reservoir in Xinjiang, China, as an example. The instability mechanisms of the slope are studied based on the field investigation and numerical analysis. The results show that there are two factors that increase the process of slope instability: the rock structure of the slope, which is an important internal factor, and the reservoir filling, especially the rapid drawdown which is an important external factor. Then, a numerical simulation that is based on SPH-DEM coupling method is used to evaluate the landslide tsunami process. The quantitative analysis of the tsunami indicates the initial wave height is about 22 m, the tsunami run-up on the opposite slope is about 44 m high, the maximum overtopping flow is about 1.35x10(4) m(3)/s, the maximum velocity is about 9 m/s, the maximum overtopping depth is about 7 m, and the erosive velocity on the downstream slope of the dam is 20m/s. The results of this study will be useful for preventing and mitigating landslide hazards in reservoirs.
机译:水库填充和水位变化是诱导水库银行附近的斜坡故障的重要因素。发生山体滑坡后,可能会形成一个海啸,这可能导致更大的灾难。本研究提供了洞察力,通过在中国新疆的南部储层附近的坡度附近分析水库水附近的滑坡灾害链。作为一个例子。基于现场研究和数值分析研究了斜率的不稳定机制。结果表明,有两个因素可以增加坡不稳定性的过程:坡度的岩石结构,这是一个重要的内部因素,储层填充,尤其是重要的外部因素的快速降低。然后,使用基于SPH-DEM耦合方法的数值模拟来评估滑坡Tsunami过程。海啸的定量分析表明初始波高约22米,对相反斜率的海啸延伸约为44米,最大速率约为1.35x10(4)m(3)/ s,最大速度约为9米/秒,最大速度深度约为7米,坝下游坡度腐蚀速度为& 20m / s。该研究的结果对于预防和减轻水库中的滑坡危害是有用的。

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