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Wind-tunnel tests on high-rise buildings: wind modes and structural response

机译:高层建筑的风洞测试:风模式和结构响应

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The evaluation of pressure fields acting on slender structures under wind loads is currently performed in experimental aerodynamic tests. For wind-sensitive structures, in fact, the knowledge of global and local wind actions is crucial for design purpose. This paper considers a particular slender structure under wind excitation, representative of most common high-rise buildings, whose experimental wind field on in-scale model was measured in the CRIACIV boundary-layer wind tunnel (University of Florence) for several angles of attack of the wind. It is shown that an efficient reduced model to represent structural response can be obtained by coupling the classical structural modal projection with the so called blowing modes projection, obtained by decomposing the covariance or power spectral density (PSD) wind tensors. In particular, the elaboration of experimental data shows that the first few blowing modes can effectively represent the wind-field when eigenvectors of the PSD tensor are used, while a significantly larger number of blowing modes is required when the covariance wind tensor is used to decompose the wind field.
机译:目前在实验空气动力学试验中评估风荷载作用在细长结构上的压力场。实际上,对于风敏感结构,了解全局和局部风活动对于设计目的至关重要。本文考虑了在风激励下的一种特殊的细长结构,代表了最常见的高层建筑,在CRIACIV边界层风洞(佛罗伦萨大学)中对比例模型的实验风场进行了测量,确定了风向的几个迎角。风。结果表明,可以通过将经典的结构模态投影与所谓的吹塑模投影耦合来获得表示结构响应的有效简化模型,该吹模投影是通过分解协方差或功率谱密度(PSD)风张量而获得的。特别是,实验数据的详细说明表明,当使用PSD张量的特征向量时,前几种吹气模式可以有效地表示风场,而当使用协方差风张量进行分解时,则需要大量的吹气模式风场。

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