首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Evaluation of aerodynamic instability for building using fluid-structure interaction analysis combined with multi-degree-of-freedom structure model and large-eddy simulation
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Evaluation of aerodynamic instability for building using fluid-structure interaction analysis combined with multi-degree-of-freedom structure model and large-eddy simulation

机译:利用流体结构相互作用分析与多自由度结构模型和大涡模拟相结合的建筑空气动力学不稳定性

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摘要

To evaluate the aerodynamic instability for buildings considering their high-order oscillation mode and torsional oscillation mode on which it is difficult to perform the usual wind tunnel experiments, the fluid-structure interaction (FSI) analysis code combined with a multi-degree-of-freedom structure model and large-eddy simulation was developed. The calculation results obtained in this study and the results of wind tunnel tests conducted in a previous study using a building model (average breadth 0.14 m x length 0.28 m x height 1 m; scale: 1/600) with a multi-degree-of-freedom structure were compared. The comparison showed that the FSI analysis results were corresponded well with those of the wind tunnel tests; for each spectrum of response displacement (wind, along-wind, and torsional direction) at the top mass node, the frequency distribution and the peak frequency of the first and second oscillation modes were in good agreement with the calculation results and the wind tunnel test results. As for the amplitude of the top displacement of the building, the results for both the along- and across-wind directions showed good correspondence. For the torsional direction, the calculation results reproduced a torsional flutter oscillation with a slightly low wind level in comparison with that observed in the wind tunnel experiments.
机译:考虑到其高阶振荡模式和扭转振荡模式的建筑物的空气动力学不稳定性,难以执行通常的风洞实验,流体 - 结构交互(FSI)分析代码与多程度相结合 - 自由结构模型和大涡模拟开发。在本研究中获得的计算结果以及使用建筑模型(平均宽度0.14mX长度为0.28 mx长度为0.28mx高度为0.28 mx高度为1 m; scale:1/600),在先前的研究中进行的风洞测试结果具有多程度自由度结构进行了比较。比较表明,FSI分析结果与风洞试验相对应;对于顶部质量节点的响应位移(沿风,沿风和扭转方向)的每个光谱,第一和第二振荡模式的频率分布和峰值频率与计算结果和风洞测试吻合良好结果。至于建筑物顶部位移的幅度,沿着风向和风向方向的结果显示出良好的对应关系。对于扭转方向,计算结果与在风隧道实验中观察到的相比,计算结果再现扭转颤动振荡,其具有稍低的风电平。

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