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Extended Newmark method to assess stability of slope under bidirectional seismic loading

机译:扩展纽马克方法以评估双向地震载荷下坡度稳定性

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The paper concerns the dynamic behavior of a simple slope model subjected to simultaneous horizontal and vertical excitations. The proposed method is based on Newmark?s sliding block concept, however, four new features are introduced. The most important assumption is that the normal component of dynamic excitations affects the resisting force both before and after the initiation of the relative slope motion, making it time dependent. The proposed formula and solution method is validated by experiments conducted on the shaking table and the bidirectional oscillatory device. The block displacement and acceleration time-histories are measured and analyzed. Experiments results conducted for bidirectional cyclic motion showed that the influence of vertical acceleration on the stability of the slope can be both negligible and significant (up to 57%). The numerical tests results, performed for thirty-five European seismic records, showed the underestimation of permanent displacement can reach up to 19% if the vertical excitation is neglected.
机译:本文涉及经受同时水平和垂直激发的简单斜坡模型的动态行为。该方法基于纽马克的滑动块概念,然而,引入了四种新功能。最重要的假设是动态激励的正常组件在相对倾斜运动开始之前和之后影响抵抗力,使其依赖于时间。通过在振动台和双向振荡装置上进行的实验验证所提出的公式和解决方案方法。块位移和加速时间历史是测量和分析。进行双向循环运动进行的实验结果表明,垂直加速度对斜坡稳定性的影响可以是可忽略不计的(高达57%)。对于三十五个欧洲地震记录表演的数值测试结果表明,如果忽略垂直激发,则低估永久性位移的依次最高可达19%。

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