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Pounding Reduction of Highway Bridges with Pounding Effect by Using Magnetorheological Dampers Under Earthquake Excitations

机译:地震作用下磁流变阻尼器对具有冲击作用的公路桥梁的减重作用

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Seismic pounding between the adjacent segments of the multi-span concrete highway bridges can result significant structural damage. The aim of this paper is to investigate the possibility of using magnetorheological (MR) dampers to reduce the collision between the adjacent segments of the highway bridges in severe seismic events. The analysis of this study is focused on the highway bridges with base-isolated rubber bearings. The nonlinear equation of dynamic equilibrium of the structures is first established considering the pounding effect of the bridges under earthquake excitations. As a basis for the design of the semi-active control system, an active control system is developed by employing the instantaneous optimal control algorithm to determine the active control forces of the actuators. The MR dampers of the semi-active control system are designed to trace the instantaneous optimal control forces for manipulating the dampers. The control algorithm is then modified to incorporate the time delay effect of the control system based on predictive control algorithm. A highway bridge with five segments is analyzed by using the proposed method. The results show that the semi-active control system can effectively reduce the structural pounding of the highway bridges under earthquake excitations if the semi-active control system is appropriately designed.
机译:多跨混凝土公路桥梁的相邻部分之间的地震震荡会导致严重的结构损坏。本文的目的是研究在严重地震事件中使用磁流变(MR)阻尼器减少公路桥梁相邻路段之间的碰撞的可能性。这项研究的分析重点是基础隔离橡胶轴承的公路桥梁。首先考虑地震激励下桥梁的撞击效应,建立了结构动力平衡的非线性方程。作为半主动控制系统设计的基础,通过采用瞬时最优控制算法确定执行器的主动控制力来开发主动控制系统。半主动控制系统的MR阻尼器设计用于追踪用于操纵阻尼器的瞬时最佳控制力。然后对控制算法进行修改,以结合基于预测控制算法的控制系统的时间延迟效果。利用该方法对五段公路桥梁进行了分析。结果表明,如果适当地设计了半主动控制系统,那么该半主动控制系统可以有效地减少地震激励下公路桥梁的结构冲击。

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