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Seismic control of a single-tower extradosed railway bridge using the E-Shaped steel damping bearing

机译:使用E形钢阻尼轴承的单塔胶束铁路桥接的地震控制

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摘要

An extradosed bridge is a hybrid structure that combines the main elements of the classic cable-stayed bridge and continuous girder bridge. Almost all extradosed bridges have the main girder transversely restrained at the pier locations, which may cause extremely large transverse shear force and bending moment on bridge substructures during strong earthquakes. This study thoroughly investigates the efficacy of using the E-shaped steel damping bearing (ESSDB) for lateral seismic control of a prototype extradosed railway bridge. Firstly, high-fidelity finite element models are developed for nonlinear time history analyses for both the ESSDB isolated bridge and two conventional non-isolated configurations (i.e., rigid frame system and continuous system). Parametric sensitivity study is then carried out, which indicates a tendency of decreasing transverse deck displacements and increasing pier base transverse forces with the increase of the ESSDB yield force. The optimal ESSDB yield force is thus selected mainly based on a tradeoff between maximizing the structural force reduction and limiting the deformation demand of the ESSDB. Finally, through detailed comparisons of bridge seismic responses with the two non-isolated cases, it shows that the ESSDB can significantly reduce the transverse seismic force demands in bridge substructures, at a cost of a moderate increase in superstructure displacements and formation of permanent inelastic deformation in the ESSDB. It is concluded that the ESSDB can provide a simple and efficient solution to the transverse seismic control of the extradosed railway bridge.
机译:引渡桥是混合结构,其结合了经典缆车座桥和连续梁桥的主要元件。几乎所有带状桥梁都有横向抑制码头位置的主要梁,这可能在强烈地震期间引起极大的横向剪切力和桥梁子结构上的弯矩。本研究彻底研究了使用E形钢阻尼轴承(ESSDB)对原型引用铁路桥的侧面地震控制的功效。首先,为ESSDB隔离电桥和两个传统的非隔离配置(即,刚性框架系统和连续系统)开发了高保真有限元模型的非线性时间历史分析。然后进行参数敏感性研究,表明随着ESSDB屈服力的增加,降低横向甲板位移和增加墩基横向力的趋势。因此,主要基于最大化结构力减少和限制EssDB的变形需求之间的权衡来选择最佳EssdB屈服力。最后,通过对两个非隔离案件的桥梁地震反应进行详细比较,表明ESSDB可以显着降低桥梁子结构中的横向地震力需求,以适度的上层结构位移和永久性无弹性变形的形成在EssdB中。结论是,ESSDB可以为引导铁路桥的横向地震控制提供简单有效的解决方案。

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