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Discrete element simulation of the dynamic response of a dip slope under shaking table tests

机译:振动台试验下垂度响应的离散元素模拟

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摘要

A dip slope contains weak planes in the same dip direction along the slope face. In this study, a discrete element simulation was implemented to investigate the behavior of a dip slope under shaking table tests. The simulated dip slope model was first verified by testing under different horizontal excitations. Then, the influence of the slope angle and dynamic force on the deformation characteristics of the dip slopes was explored. The simulations provide detailed descriptions of the deformation processes and potential sliding mechanisms associated with the dip slopes. The results of this study are summarized as follows: (1) Two types of slope sliding, namely differential and complete, were recognized. The model with a dip angle lower than 20°was more stable, and differential sliding developed gradually during external excitation. In the model with a dip angle higher than 20°, the external excitation easily triggered complete sliding. (2) For threshold slope angles higher than 20°, the behavior of the dip slope model changed from deformation to sliding, and the displacement within the models increased with increasing slope angle. (3) An increase in frequency led to a decrease in the trigger time for slope sliding. In addition, the slope angle was negatively correlated with the triggering time for sliding. (4) The amplification factor of peak ground displacement (PGD) increased as the slope angle increased. The amplification factors corresponding to low excitation frequencies were considerably lower than those for high excitation frequencies. In contrast to the trends for PGD, the amplification factor of peak ground acceleration (PGA) decreased as the slope angle increased.
机译:倾角斜率沿着斜面沿着倾斜方向上的弱平面。在该研究中,实施了离散的元件模拟以研究振动台测试下的倾角斜率的行为。首先通过在不同的水平激励下进行测试来验证模拟的DIP斜率模型。然后,探讨了倾斜角度和动态力对浸坡倾斜的变形特性的影响。模拟提供了与倾角斜坡相关联的变形过程和潜在滑动机构的详细描述。本研究的结果总结如下:(1)认识到两种类型的坡度滑动,即差异和完整。倾角低于20°的模型更稳定,在外部激励过程中逐渐呈差动滑动。在具有高于20°的倾角的模型中,外部激励容易触发完全滑动。 (2)对于高于20°的阈值斜率角度,DIP斜率模型的行为从变形变为滑动,并且模型内的位移随着斜率的增加而增加。 (3)频率的增加导致斜坡滑动触发时间的减少。另外,倾斜角与滑动的触发时间呈负相关。 (4)随着斜角的增加而增加峰接地位移(PGD)的放大因子。对应于低激发频率的放大因子显着低于高励磁频率的因子。与PGD的趋势相反,随着倾斜角的增加,峰接地加速度(PGA)的放大因子降低。

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