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首页> 外文期刊>Journal of structural engineering >Buffeting Analysis of Long-Span Bridges under Typhoon Winds with Time-Varying Spectra and Coherences
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Buffeting Analysis of Long-Span Bridges under Typhoon Winds with Time-Varying Spectra and Coherences

机译:台风风中的长跨度桥梁的缓冲分析与时变光谱和一致性

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摘要

Typhoon winds near the external eye wall of a strong typhoon are extremely nonstationary and disastrous due to its vortex and convective origin as well as its high wind speeds. However, typhoon-induced nonstationary responses of long-span bridges are currently analyzed with the assumption of time-invariant wind coherence. By taking the Stonecutters cable-stayed bridge in Hong Kong under Typhoon Hato in 2017 as an example, this paper presents the time-varying wind spectra and coherences for the bridge based on the wind data recorded by the multiple anemometers installed on the bridge. The analytical framework for nonstationary buffeting analysis of long-span bridges under typhoon winds is enhanced by considering time-varying wind coherence and applied to the Stonecutters Bridge under Typhoon Hato. The computed responses are compared with the field measurement responses. The comparative results demonstrate the feasibility and accuracy of the enhanced framework for buffeting analysis of long-span bridges with time-varying wind spectra and coherences. Comparative results with the other two cases of time-invariant coherence functions also highlight the importance and necessity of considering the time-varying wind coherence in the nonstationary buffeting analysis of long-span bridges under typhoon winds. DOI: 10.1061/(ASCE) ST.1943-541X.0002835. (c) 2020 American Society of Civil Engineers.
机译:由于其涡流和对流起源以及其高风速,强大的台风的外眼墙附近的台风风非常不稳定和灾难性。然而,目前通过不变风相干的假设分析了台风诱导的长跨度桥梁的响应。通过在2017年在台风哈托下乘坐香港的石头斜视桥梁,本文介绍了基于桥上的多个风速仪记录的风数据的桥梁时变风光光谱和一致性。通过考虑时变风相干,通过考虑时变风相干,并应用于台风哈托下的石管桥梁,增强了台风风下的长跨度桥梁的非突变桥的分析框架。将计算的响应与现场测量响应进行比较。比较结果表明,随着时变风光谱和一致性的长跨度桥梁缓冲分析的增强框架的可行性和准确性。比较结果与其他两种时间不变一致性功能的情况也突出了考虑在台风风中的长跨度桥梁的不间断的探索中的时变风相干的重要性和必要性。 DOI:10.1061 /(asce)st.1943-541x.0002835。 (c)2020年美国土木工程师协会。

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