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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Investigation of torsional aeroelastic effects on high-rise buildings using forced vibration wind tunnel tests
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Investigation of torsional aeroelastic effects on high-rise buildings using forced vibration wind tunnel tests

机译:采用强制振动风洞试验调查高层建筑扭转空气弹性效应

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In this study, the torsional aeroelastic effects are investigated for high-rise buildings by carrying out a series of forced vibration wind tunnel tests. In these tests nine building models with different side ratios and structural eccentricities are considered, where the structural responses and surface pressures for each model are measured. The method used to determine the torsional aerodynamic stiffness and damping ratios from the experimental data is introduced. The effects of the vibration amplitude, side ratio, and structural eccentricities on these two ratios are examined. The results show that the amplitude of the vibration does not have a significant effect on the torsional aeroelastic effect. Also, the torsional aerodynamic stiffness ratio can be neglected in the absence of structural eccentricity. However, the side ratio has a significant effect on the aerodynamic damping ratio where it decreases with increasing side ratio. Although the cross-wind eccentricities are found to have no significant influence on the aeroelastic effects, the along-wind eccentricities greatly influence the aeroelastic effects. Furthermore, a windward eccentricity can increase both the aerodynamic stiffness and damping ratios, whereas a leeward eccentricity can decrease these ratios.
机译:在这项研究中,通过执行一系列强制振动风洞测试,对高层建筑进行扭转空气弹性效果。在这些测试中,考虑了具有不同侧比和结构偏心的九种建筑模型,其中测量每个模型的结构响应和表面压力。介绍了用于确定实验数据的扭转空气动力学刚度和阻尼比的方法。检查振动幅度,侧比和结构偏心对这两种比率的影响。结果表明,振动的幅度对扭转空气弹性效应没有显着影响。而且,在没有结构偏心的情况下可以忽略扭转空气动力学刚度比。然而,侧比对空气动力学阻尼比具有显着影响,其随着副比率的增加而降低。虽然发现横向偏心对空气弹性效应没有显着影响,但是沿着风偏心极大地影响了空气弹性效应。此外,迎风偏心可以增加空气动力刚度和阻尼比,而Leeward偏心率可以降低这些比率。

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