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Influence of axial loads and higher order modes on the seismic response of slender bridge piers

机译:轴向荷载与高阶模式对苗条桥墩抗震反应的影响

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A significant number of bridges is built on tall and slender piers in zones exposed to seismic hazard. The seismic behaviour of slender piers can be strongly influenced by higher modes contribution, related to the distributed pier mass, and also by second order effects, related to the interaction between axial loads and transverse seismic displacements. Although these latter effects may induce an increase or decrease of seismic demand, in current design practice they are usually taken into account by introducing amplification factors for the pier base moments evaluated by first-order analysis. This paper presents an analytical approach that permits to investigate efficiently and accurately the influence of both axial loads and higher order modes on the seismic behaviour of slender bridge piers. The proposed approach is based on a continuous pier model and on an analytical solution of the eigenvalue and seismic problem. The proposed analysis technique is applied to three case studies with different pier properties. The results show that the effects of axial loads and higher order modes can play different roles on the seismic response of slender bridge piers.
机译:在暴露于地震危险的区域的高大和细长的码头上建立了大量桥梁。细长桥墩的地震行为可以受到较高模式贡献的强烈影响,与分布式墩料有关,以及与轴向载荷和横向地震位移之间的相互作用相关的二阶效应。虽然这些后一种效果可能会引起地震需求的增加或减少,但在目前的设计实践中,通常通过引入一级分析评估的码头基地时刻的放大因子来考虑它们。本文介绍了一种分析方法,允许有效,准确地调查轴向载荷和高阶模式对纤维桥墩的地震行为的影响。所提出的方法基于连续码头模型和对特征值和地震问题的分析解决方案。所提出的分析技术应用于不同码头特性的三种案例研究。结果表明,轴向载荷和高阶模式的影响可以在细长桥墩的地震响应上发挥不同的作用。

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