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首页> 外文期刊>Journal of bridge engineering >Influence of Inelastic Tower Links on Cable-Supported Bridge Response
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Influence of Inelastic Tower Links on Cable-Supported Bridge Response

机译:非弹性塔式链节对斜拉桥响应的影响

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A new concept for bridge tower designs in seismic zones incorporates sacrificial link schemes that enable the tower shafts to remain elastic under large seismic excitation. In order to study the influence of inelastic tower links on the seismic response of cable-supported bridges, global seismic time history analyses were performed on models of the new San Francisco-Oakland Bay Bridge East Span self-anchored suspension bridge (SASB) and a cable-stayed bridge (CSB) alternative. The addition of inelastic links to the signature tower improved the behavior of both structures. The tower and overall bridge demands were reduced, including the tower drift and moments as well as the suspension cable, cable stay, and superstructure drifts and axial loads. The inelastic tower links protected the SASB and CSB tower shafts from nonlinear behavior under the 1,500-year Safety Evaluation Earthquake (SEE) event as well as a 2,500-year event. When the inelastic tower links were removed, the SASB tower shafts yielded under the SEE. It was shown that the inelastic tower links could be used to tune the dynamic response of bridge towers in regions of high seismicity.
机译:地震带中桥梁塔楼设计的新概念采用了牺牲连杆方案,该方案使塔身在大地震激励下保持弹性。为了研究非弹性塔架连接对斜拉桥地震响应的影响,对新的旧金山-奥克兰湾大桥东跨自锚式悬索桥(SASB)的模型进行了全球地震时程分析。斜拉桥(CSB)替代品。向签名塔添加非弹性连接可改善两种结构的性能。降低了塔架和整个桥梁的需求,包括塔架漂移和弯矩以及悬索,悬索,上层建筑的漂移和轴向载荷。在1,500年的安全评估地震(SEE)事件和2500年的地震事件中,无弹性的塔杆保护了SASB和CSB塔轴免受非线性行为的影响。当拆除无弹性的塔架连杆时,SASB塔架竖井在SEE下屈服。结果表明,在高地震地区,非弹性塔架可以用来调节桥塔的动力响应。

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