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Dynamic response and reliability analysis of tall buildings subject to wind loading

机译:风荷载作用下高层建筑的动力响应及可靠性分析

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This paper explores the wind stochastic field from a new viewpoint of stochastic Fourier spectrum (SFS). The basic random parameters of the wind stochastic field, the roughness length z(0) and the mean wind velocity at 10m height U-10, as well as their probability density functions (PDF), are obtained. It provides opportunities to use probability density evolution method (PI)EM), which had been proved to be of high accuracy and efficiency, in computing the dynamic response and reliability of tall buildings subject to the wind loading. Principals and corresponding numerical solving algorithm of the PDEM are first presented. Then, the adopted model of the wind stochastic field is described briefly. The simulation method of the fluctuating wind velocity based on the SFS is introduced. Finally, as an example of the application of the PDEM, a 20-storey frame subject to wind loading is investigated in detail. The responses, including the mean value and the standard deviation, and the reliabilities of the frame are evaluated by the PDEM. The results demonstrate that the PDEM is applicable and efficient in the dynamic response and reliability analysis of wind-excited tall building. (c) 2007 Elsevier Ltd. All rights reserved.
机译:本文从随机傅里叶谱(SFS)的新观点探讨了风的随机场。获得了随机风场的基本随机参数,粗糙度长度z(0)和10m高度U-10处的平均风速及其概率密度函数(PDF)。它提供了使用概率密度演化法(PI)EM的机会,该方法已被证明具有很高的准确性和效率,可以用来计算高层建筑在风荷载作用下的动态响应和可靠性。首先介绍了PDEM的原理和相应的数值求解算法。然后,简要描述了随机风场的采用模型。介绍了基于SFS的风速波动模拟方法。最后,以PDEM的应用为例,详细研究了20层风荷载框架。包括平均值和标准偏差在内的响应以及帧的可靠性由PDEM评估。结果表明,PDEM在风振高层建筑的动力响应和可靠性分析中适用且有效。 (c)2007 Elsevier Ltd.保留所有权利。

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