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Dynamic Response and Failure Characteristics of Slope with Weak Interlayer under Action of Near-Fault Ground Motion

机译:近端故障地面运动作用下弱层间坡度的动态响应与故障特征

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摘要

Investigations into the Wenchuan earthquake (2008, China) demonstrated that landslides were concentrated in the near-fault areas, and numerous large-scale landslides occurred in slopes with weak interlayers. A mathematical model was established based on the shear beam theory, while a numerical model was developed based on the discrete element method which perfectly matched layer boundary theory. Through a theoretical analysis and numerical simulation, the dynamic response and failure modes of the slope with a weak interlayer under the near-fault ground motion were studied. It was found that a combined effect took place between the near-fault ground motion and the weak interlayer, causing the slope near a fault to be destroyed more easily. The coupling between the near-fault ground motion and the weak interlayer leads to a maximum amplification effect of the slope. The existence of a weak interlayer induces nonconforming vibration between the upper and the lower rock masses of the interlayer. The variation in the amplification effect along the slope elevation is related to the ratio of the input seismic period to the natural slope period. Under horizontal ground motion, weak interlayers will be subjected to impacting and shearing action. The failure mode of the slope with a weak interlayer under near-fault ground motion can be expressed as a trailing edge tension crack, as well as weak interlayer impacting and shearing failure.
机译:调查汶川大地震(2008年,中国)证实,山体滑坡主要集中在近断层区,以及众多的大型山体滑坡发生在弱夹层斜坡。基于所述剪切梁理论建立的数学模型,而数值模型是基于其完全匹配层边界理论离散单元法显影。通过理论分析和数值模拟,与近断层地运动下一个弱的层间的斜率的动态响应和失效模式进行了研究。结果发现,组合效应拿了近断层地面运动和软弱夹层之间发生,引起斜率断层附近更容易被破坏。近断层地震动和弱夹层通向斜率的最大放大效应之间的耦合。弱层间诱导不合格的上部和中间层的下岩体之间振动的存在。在沿坡高程的放大效应的变化与输入地震期间自然坡度期间的比率。下水平地面运动,弱夹层将受到影响和剪切作用。用下近断层地运动的弱的层间的斜率的故障模式可以被表达为一个后缘张力裂缝,以及弱夹层冲击和剪切失效。

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