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Effect of incidence angle on the seismic performance of skewed bridges retrofitted with buckling-restrained braces

机译:发射角对屈曲抑制牙套偏置桥梁抗震性能的影响

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This study examines the effect of ground motion (GM) incidence angles on the seismic response of skewed bridges retrofitted with buckling-restrained braces (BRBs) under far-field and near-field ground motions (FFGMs and NFGMs). Bridge models for a three-span reinforced concrete bridge with skew angles of 0 degrees, 18 degrees, 36 degrees, and 54 degrees are used as a case study. Three-dimensional nonlinear dynamic analyses are performed with scaled GMs under 11 incidence angles (from 0 degrees to 180 degrees) to obtain the maximum bridge response parameters on the maximum considered earthquake hazard level. This study demonstrates the effectiveness of a BRB retrofit to reduce the influence of GM incidence angle. The results indicate that skewed bridges are less sensitive to the GM incidence angle and BRBs further decrease the incidence effect. Also, the seismic response under different GM incidence angles is more predictable when the bridge is subjected to FFGMs. In general, the maximum response of skewed bridges could be estimated by applying the scaled principal GMs along the bridge's longitudinal axis and its orthogonal direction (i.e., 0 degrees and 90 degrees), regardless of GM characteristics, skewed angle, and BRB retrofit.
机译:本研究探讨了地面运动(GM)入射角对偏置桥梁围绕的围栏(BRB)的偏置桥接的地震反应的影响,近场和近场地面运动(FFGMS和NFGM)。用倾斜角度为0度,18度,36度和54度的三跨钢筋混凝土桥的桥梁模型作为案例研究。在11个入射角(0度为180度)下进行三维非线性动态分析,以获得最大抗震危险水平的最大桥梁响应参数。本研究证明了BRB改造的有效性,以降低GM入射角的影响。结果表明,倾斜的桥梁对GM发射角度敏感,BRB进一步降低了发病效果。而且,当桥接桥对FFGMS进行不同的GM入射角下的地震反应更可预测。通常,无论GM特性,偏斜角度和BRB改装如何,都可以通过沿桥梁的纵向轴线及其正交方向(即0度和90度)施加缩放的主GM来估计偏斜桥的最大响应。

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