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Aeroelastic model tests to study tall building vibration in boundary-layer and tornado winds

机译:空气弹性模型测试,以研究高层建筑在边界层和龙卷风中的振动

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摘要

A three-degree-of-freedom aeroelastic model of the standard CAARC Tall Building with a rectangular cross section was tested in both atmospheric-boundary-layer (ABL) wind tunnel and tornado simulator to assess its susceptibility to wind-induced vibration in straight-line wind and tornado wind and compare the two responses. Time histories of acceleration at roof-height and mid-height of the model were measured at different wind speeds. The normalized response of the tall building model was obtained with respect to reduced velocities at critical angles of attack for the boundary-layer wind and at critical locations and orientations with respect to the tornado path. The aerodynamic damping of the tall building was identified from the measurements and validated with other tests; furthermore, the results were analyzed in both time-domain and frequency-domain to reveal the response characteristics. A comparison of the vibration response shows that the characteristics of the tornado-induced excitation are different and its magnitudes are much more severe from those of the conventional straight-line wind. The results obtained from this study can be used to validate both wind-tunnel and numerical methodologies used for assessing the wind-induced vibration of a tall building and will eventually help to develop guidelines to reduce the wind-induced damage or occupant discomfort as a result of excessive vibration.
机译:在大气边界层(ABL)风洞和龙卷风模拟器中测试了标准CAARC高层建筑(具有矩形横截面)的三自由度空气弹性模型,以评估其在直管中对风致振动的敏感性。线风和龙卷风比较两个响应。在不同风速下测量模型的车顶高度和中高度的加速度的时间历史。高层建筑模型的归一化响应是针对边界层风的临界迎角以及相对于龙卷风路径的临界位置和方向的速度降低而得出的。通过测量确定高层建筑的空气动力学阻尼,并通过其他测试进行验证。此外,在时域和频域对结果进行分析,以揭示响应特性。振动响应的比较表明,与传统的直线风相比,龙卷风引起的激振的特性是不同的,并且其强度要严重得多。这项研究获得的结果可用于验证风洞和用于评估高层建筑风致振动的数值方法,最终将有助于制定减少风致伤害或乘员不适的指南过度振动。

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