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Influence of Dampers on Seismic Response of Cable-Supported Bridge Towers

机译:阻尼器对斜拉桥塔架地震响应的影响

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摘要

Nonlinear time history analyses were performed to investigate the seismic response of the new San Francisco-Oakland Bay Bridge East Span self-anchored suspension (SAS) bridge and cable-stayed (CS) bridge alternative with the signature towers protected by friction dampers and viscous dampers in lieu of the as-designed steel shear links. Response of the damper and shear link equipped towers were compared to determine if equipping bridge signature towers with passive dampers, that would not experience residual deformations, is a viable option for cable supported bridges, particularly in retrofit applications. Viscous dampers were the most beneficial to the SAS and CS tower response in the transverse direction of the bridges. Dampers placed in toggle-braced configurations further improved the tower response for the SAS bridge transverse direction by magnifying the damper displacement demands. With the addition of stiffness to the signature tower being more critical in the longitudinal direction than in the transverse direction, the diagonal friction dampers were the most beneficial in the longitudinal direction of the SAS bridge tower.
机译:进行了非线性时程分析,以研究新型旧金山-奥克兰湾大桥东跨自锚式悬索式(SAS)桥和斜拉式(CS)桥的地震响应,其特征是塔架由摩擦阻尼器和粘性阻尼器保护代替设计中的钢剪杆。比较了装有阻尼器和剪力连杆的塔架的响应,以确定是否在桥签名塔上安装不会经历残余变形的被动阻尼器,对于电缆支撑的桥梁,特别是在翻新应用中,是可行的选择。粘性阻尼器对桥梁横向的SAS和CS塔式响应最有利。通过放大阻尼器位移需求,以肘节式配置放置的阻尼器进一步改善了SAS桥横向方向的塔架响应。由于在签名塔上增加的刚度在纵向上比在横向上更为关键,对角摩擦阻尼器在SAS桥塔的纵向上是最有利的。

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