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Effects of Ground Motion Incidence Angles in a Reinforced Concrete Skewed Bridge Retrofitted with Bucking Restrained Braces

机译:屈曲约束支撑加固的钢筋混凝土斜桥中地震动入射角的影响

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This study evaluates the effect of ground motion incidence angle on the responses of skewed bridges retrofitted with buckling restrained braces (BRBs) in the bents. A three-span skewed bridge with no retrofit is used as a baseline case. The assessment is carried out in OpenSees using a model that accounts for the BRBs between bent columns, abutment and shear keys, as wells as soil-structure interaction effects. The models are subjected to 21 far-field ground motions, and the maximum response under 11 incidence angles is obtained. The two components in each ground motion set are first rotated to their principal directions to minimize correlation among horizontal orthogonal directions. Thereafter, the ground motion components are scaled to the maximum considered earthquake (MCE) level. Nonlinear time history analyses indicate that seismic behavior of skewed bridges can be significantly different from that of straight bridges due to torsional effects caused by the combination of longitudinal and transverse seismic responses. The skew configuration decreases the difference in responses among different angles due to the combinational effects of longitudinal and transverse directions. After the retrofit implementation, the BRBs in column bents can mitigate the influence of incidence angle. Therefore, to predict the maximum bridge response is usually sufficient to apply the minor principal direction ground motion in the bridge longitudinal axis, and the major principal direction orthogonal to the longitudinal axis. The study shows that the use of BRBs as a seismic retrofit increases the seismic performance of the bridge components, reducing transverse drifts, abutment and shear key seismic demands; and reducing strains in bent columns.
机译:这项研究评估了地震动入射角对在弯管中加装屈曲约束支撑(BRB)的斜桥的响应的影响。没有改造的三跨斜桥被用作基准案例。评估是在OpenSees中使用模型进行的,该模型考虑了弯柱,桥台和剪切键之间的BRB,以及土壤与结构之间的相互作用。这些模型经受了21次远场地面运动,并获得了在11个入射角下的最大响应。首先将每个地面运动集中的两个分量旋转到其主方向,以最大程度地减少水平正交方向之间的相关性。此后,将地震动分量缩放到最大考虑地震(MCE)级别。非线性时程分析表明,由于纵向和横向地震响应的组合所引起的扭转效应,斜桥的地震行为可能与直桥的地震行为显着不同。由于纵向和横向的组合效应,偏斜配置减小了不同角度之间的响应差异。实施改造后,柱弯曲处的BRB可以减轻入射角的影响。因此,预测最大桥梁响应通常足以在桥梁纵轴上应用次要主方向地面运动,并在正交于纵轴的方向上进行主主方向。研究表明,使用BRB进行抗震改造可提高桥梁构件的抗震性能,减少横向漂移,桥台和抗剪强度。并减少弯管中的应变。

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