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Energy approach to seismically induced slope failure and its application to case histories

机译:地震诱发边坡破坏的能量方法及其在案例历史中的应用

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摘要

An energy approach is proposed here to make a simple evaluation of travel distance of debris during seismically induced slope failures. In the evaluation, earthquake energy and gravitational potential energy are dissipated in large flow deformations. Shake table tests on dry sand slopes together with theoretical consideration on a rigid block model are revisited to show that measured slope displacements can be evaluated by the proposed energy approach if an appropriate friction coefficient of the slope is specified. Then, slope failures during recent earthquakes are investigated, and the energy approach is applied to them. Mobilized friction coefficients during failures are back-calculated, revealing their strong dependency on initial slope inclinations. The friction coefficients are found to be smaller than the initial slope inclinations for gentler slopes, indicating that the failed debris tends to accelerate. The friction coefficients tend to decrease with increasing volume of failed slopes, which is consistent with previous case studies on huge landslides.
机译:这里提出一种能量方法,以简单评估地震诱发的边坡破坏过程中碎屑的行进距离。在评估中,地震能量和重力势能在大流量变形中耗散。回顾了在干燥砂土边坡上的振动台试验以及在刚性块模型上的理论考虑,以表明如果指定了适当的边坡摩擦系数,则可以通过提出的能量方法来评估实测边坡位移。然后,研究了最近地震中的边坡破坏,并应用了能量方法。对破坏过程中的动员摩擦系数进行了反算,显示了它们对初始坡度的强烈依赖性。对于较平缓的斜坡,发现摩擦系数小于初始斜坡倾角,这表明破裂的碎屑倾向于加速。摩擦系数倾向于随着失败斜坡的增加而减小,这与先前关于巨大滑坡的案例研究是一致的。

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