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首页> 外文期刊>Journal of Engineering Mechanics >Estimation of Nonstationary Crosswind Response of Tall Buildings with Nonlinear Aeroelastic Effect
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Estimation of Nonstationary Crosswind Response of Tall Buildings with Nonlinear Aeroelastic Effect

机译:非线性空气弹性效应估计高层建筑物的非间断交叉风响应

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摘要

This study addresses analysis of the crosswind response of tall buildings under nonstationary wind excitations. The wind load under nonstationary wind excitation was quantified using the force parameters under stationary wind, but the effect of the time-varying mean wind speed was considered in a quasi-stationary manner. For buildings without consideration of nonlinear aerodynamic damping, the evolutionary spectral analysis approach and statistical moment equation approach are presented, which provide analytical solutions of time-varying response standard derivation (STD), extreme response, and fatigue damage. For buildings with consideration of nonlinear aerodynamic damping, the governing equations of statistical moments of the building motion including time-varying STD, or variance/covariance, and kurtosis of response were established and solved using the non-Gaussian moment closure technique. The higher-order moments involved were estimated from a kurtosis-based translation process model. Narrowband response characteristics were applied to simplify the non-Gaussian closure approach. The nonstationary extreme response and fatigue damage were further estimated from time-varying STD and kurtosis of response. The effectiveness of the analysis framework was examined through comparison with a response time history simulation. The characteristics of the crosswind response under nonstationary excitations are also discussed.
机译:本研究解决了在非营养风刺激下高层建筑的交叉风响应的分析。使用静止风中的力参数量化非间断风激励的风力负荷,但以准固定方式考虑时变平均风速的效果。对于不考虑非线性空气动力学阻尼的建筑物,提出了进化谱分析方法和统计矩等式方法,其提供了时变响应标准推导(STD),极端响应和疲劳损坏的分析解。对于考虑非线性空气动力学阻尼的建筑物,建筑物统计时刻的控制方程包括时变的STD,或方差/协方差,以及使用非高斯时刻闭合技术确定并解决了反应的峰值。所涉及的高阶矩是从基于Kurtosis的翻译过程模型估算的。应用窄带响应特性来简化非高斯闭合方法。从时变的STD和反应峰氏症进一步估计了非间断的极端响应和疲劳损伤。通过与响应时间历史模拟进行比较检查分析框架的有效性。还讨论了非间断激发下的交叉风响应的特征。

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