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Computation Of Sliding Displacements Of Bridge Abutments by Pseudo-dynamic Method

机译:拟动力法计算桥台滑移量

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The paper focuses on seismic sliding displacement calculations of gravity wall bridge abutments when subjected to passive condition during earthquakes. Pseudo-dynamic approach has been used for the calculation of the passive seismic earth pressure. A novel element of the present investigation is the computation of seismic passive earth pressure coefficients by considering the composite curved rupture surface behind the abutment wall in the framework of limit equilibrium method. Sliding failure along the wall base is considered in the new pseudo-dynamic method. The critical seismic acceleration coefficient for sliding and sliding component of the displacement, resulting from horizontal and vertical sinusoidal ground accelerations, are computed by using Newmark's sliding block method. The effect of sliding on the response of earth structures is evaluated and comparisons are made between sliding displacements calculated using planar and composite failure mechanisms. Results of the comparative study showed that the assumption of planar failure mechanism for rough soil-wall interfaces significantly overestimates the critical seismic accelerations for sliding and underestimates the sliding displacements.
机译:本文重点研究了地震作用下重力墙桥台在被动条件下的地震滑动位移计算。拟动力方法已用于被动地震土压力的计算。本研究的一个新颖元素是在极限平衡法的框架内,通过考虑基台墙后的复合弯曲破裂面来计算地震被动土压力系数。新的拟动力方法考虑了沿墙基的滑动破坏。使用Newmark的滑块方法,计算了水平和垂直正弦地面加速度产生的位移的滑动和滑动分量的临界地震加速度系数。评估了滑动对土结构响应的影响,并比较了使用平面破坏机制和复合破坏机制计算的滑动位移。比较研究的结果表明,粗糙土-墙界面的平面破坏机制的假设大大高估了滑动的临界地震加速度,而低估了滑动位移。

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