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Influence of non-stationary content of ground-motions on nonlinear dynamic response of RC bridge piers

机译:地震动的非平稳分量对RC桥墩非线性动力响应的影响

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摘要

This paper quantifies the impact of the non-stationary content (time-varying parameters that are not captured by power spectral content alone) of different ground-motion types (near/far field, with/without pulses time-series) on the nonlinear dynamic response of reinforced concrete bridge piers, taking into account the material cyclic degradation. Three groups of ground motions are selected to represent far-field, near-field without pulse and near-field pulse-like ground motions. Three analysis cases are considered corresponding to acceleration series matched to the mean response spectrum of: (1) far field, (2) near-field without pulse and (3) near-field pulse-like ground-motions, respectively. Using the selected ground motions, several nonlinear incremental dynamic analyses of prototype reinforced concrete bridge piers with a range of fundamental periods are conducted. Finally, a comparison between the response of the structures using the material model accounting for both buckling and low-cycle fatigue of reinforcing steel and the more conventional material model that does not account for these effects is made. The results show that the inelastic buckling and low-cycle fatigue have a significant influence on the nonlinear response of the RC bridge piers considered and that pulse effects can increase the mean acceleration response by about 50%.
机译:本文量化了不同地面运动类型(近/远场,有/无脉冲时间序列)的非平稳内容(仅由功率谱内容无法捕获的时变参数)对非线性动力的影响考虑到材料的循环退化,钢筋混凝土桥墩的响应。选择三组地面运动来表示远场,无脉冲的近场和类似脉冲的近场地震动。分别考虑了三种与加速度响应序列相匹配的分析案例,这些加速度序列分别与(1)远场,(2)无脉冲的近场和(3)类似于脉冲的近场地震动的平均响应谱相匹配。利用选定的地震动,对具有一定基频范围的钢筋混凝土原型桥墩进行了几次非线性增量动力分析。最后,在使用考虑了钢筋屈曲和低周疲劳的材料模型与不考虑这些影响的更传统的材料模型之间进行结构的响应之间的比较。结果表明,非弹性屈曲和低周疲劳对所考虑的RC桥墩的非线性响应有显着影响,脉冲效应可使平均加速度响应提高约50%。

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