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Influence of interactions between topographic and soil layer amplification on seismic response of sliding mass and slope displacement

机译:地形与土层放大相互作用对滑动质量地震反应和边坡位移的影响

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In the conventional evaluation of earthquake-induced displacement of slopes, the two-dimensional (2D) full-slope amplification as a result of the interaction of topography, soil layer and seismic ground motion is commonly neglected. To investigate this coupling effect on the evaluation of sliding displacements of earth slopes, linear and non-linear seismic response analyses are conducted on slope models with different inclinations and potential sliding mechanisms, subjected to simplified wavelets and recorded earthquake ground motions with various frequencies and amplitudes. The equivalent acceleration time histories of the sliding masses and the induced sliding displacements are derived. The results indicate that the soil layer amplification generally dominates the overall seismic response of the sliding mass. The controlling factors include the fundamental natural period of the soil deposit, the geometry of the sliding mass, the slope inclination, and the normalized depth of the sliding mass. Predictive models for the equivalent seismic ground motions of sliding masses are developed by including the 2D full-slope responses. Finally, an example application is presented to estimate the seismic response of the sliding mass and the slope displacements by using the proposed model.
机译:在对地震引起的边坡位移的常规评估中,由于地形,土壤层和地震地震动的相互作用而导致的二维(2D)全边坡放大通常被忽略。为了研究这种耦合对评价土质边坡滑动位移的影响,对具有不同倾角和潜在滑动机制的边坡模型进行了线性和非线性地震响应分析,简化了小波并记录了各种频率和振幅的地震地震动。 。推导了滑动块的等效加速时间历史和所引起的滑动位移。结果表明,土层放大通常主导滑动块体的整体地震响应。控制因素包括土壤沉积的基本自然周期,滑动块的几何形状,坡度和滑动块的归一化深度。通过包括2D全斜率响应,开发了等效的滑动质量地震地面运动的预测模型。最后,提出了一个示例应用程序,通过使用所提出的模型来估计滑动质量和边坡位移的地震响应。

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