非平稳风速模型对闭箱梁悬索桥抖振性能的影响

IF 2.9 3区 工程技术 Q2 ENGINEERING, MECHANICAL Advances in Aerodynamics Pub Date : 2023-10-17 DOI:10.1186/s42774-023-00158-w
Rui Zhou, Yinan Lin, Peng Lu, Yongxin Yang, Jinbo Zhu
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引用次数: 0

摘要

摘要自然风作用下桥梁的非平稳特性对大跨度桥梁的抖振性能影响很大。研究了非平稳风速模型中关键参数对某特大跨径悬索桥非线性抖振响应的影响。首先,将时变平均风速与指数函数相结合,将波动风速与4种调制函数相结合,分别建立了4种非平稳风速模型;这些非平稳风速模型具有明显的非平稳特征,并通过经典功率谱密度进行了验证。最后,比较了指数函数中4种自变量β和4种调制函数作用下桥面的位移响应。结果表明,使用两种非均匀调制函数(NMF)的湍流强度大于使用均匀调制函数(uMF)的湍流强度。三种位移响应的均方根(RMS)值均随β的减小而增大。另外,两种NMFs下三种位移的RMS值均大于两种uMF下的RMS值,且第二种uMF下的RMS值最小。
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Effects of non-stationary wind velocity models on buffeting performance of closed-box girder suspension bridges
Abstract Non-stationary characteristic in nature wind has a great effect on buffeting performance of long-span bridges. The influence of key parameters in non-stationary wind velocity models on nonlinear buffeting responses of a super long-span suspension bridge was investigated in this paper. Firstly, four non-stationary wind velocity models are established by combing the time-varying average wind velocity with an exponential function and the fluctuating wind velocity with four modulation functions, respectively. These non-stationary wind velocity models have obvious non-stationary characteristics and then are validated by the classical power spectrum densities. Finally, three displacement responses of the bridge deck under four different independent variables of β in the exponential function and four modulation functions were compared, respectively. Results show that the turbulence intensities using two non-uniform modulation functions (NMF) are larger than those using uniform modulation functions (uMF). Moreover, the root mean square (RMS) values of three displacement responses increase with the decrease of β . Besides, the RMS values of three displacement under two NMFs are larger than those under two uMFs, and their RMS values under the second uMF are the smallest.
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来源期刊
CiteScore
4.50
自引率
4.30%
发文量
35
审稿时长
11 weeks
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