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Seismic performance assessment of a curved bridge equipped with a new type spring restrainer

机译:装有新型弹簧减震器的弯桥的抗震性能评估

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Severe damages of curved bridge, such as pounding, unseating of superstructure and pier collapse, have been frequently observed in previous strong earthquakes. This paper demonstrates the effectiveness of a new type multi-level spring restrainer (MLSR) on reducing the seismic responses of a curved bridge. The optimal parametric values of the device are determined by response surface method (RSM). The numerical models of the curved bridge with and without MLSR are established using OpenSees. Three earthquake records are selected from PEER strong motion database matching the site condition of the bridge. Nonlinear time history analyses are performed for the bridge with and without MLSR. The force-deformation behavior of the bridge components, the relative displacements between adjacent girders, and the maximum pier curvature are evaluated. The numerical results show that the application of MLSR on the curved bridge will not only avoid the pounding and unseating of the superstructure, but also mitigate the pier damages of the bridge. (C) 2017 Published by Elsevier Ltd.
机译:在以前的强地震中,经常观察到弯曲桥梁的严重破坏,例如撞击,上部结构失稳和墩台坍塌。本文演示了新型的多层弹簧减振器(MLSR)在减少弯曲桥梁的地震响应方面的有效性。设备的最佳参数值由响应面法(RSM)确定。使用OpenSees建立有或没有MLSR的弯桥的数值模型。从PEER强震数据库中选择了三个地震记录,以匹配桥梁的位置条件。对有和没有MLSR的桥梁进行非线性时程分析。评估桥梁构件的受力变形行为,相邻大梁之间的相对位移以及最大桥墩曲率。数值结果表明,MLSR在弯桥上的应用不仅可以避免上部结构的撞击和松动,而且可以减轻桥墩的损伤。 (C)2017由Elsevier Ltd.发布

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