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Identification of the dynamic properties of a reinforced concrete coupled shear wall residential high-rise building

机译:钢筋混凝土剪力墙住宅高层建筑动力特性的识别

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As high-rise buildings increase with height and slenderness, they become increasingly sensitive to dynamic vibra-tions, and therefore the natural frequency of vibration and damping ratio are very important design parameters, as they di-rectly impact the design wind forces. Recent advances in sensing and computing technology have made it possible to monitor the dynamic behaviour of full-scale structures, which was not possible in the past. Full-scale validation of the dynamic properties is useful for high-rise designers to verify design assumptions, especially since recent measurements have shown that damping decreases as the height of the building increases, and in situ damping measurements have been lower than many currently assumed design values, potentially leading to unconservative designs. A 50-storey residential building in downtown Toronto, with a reinforced concrete coupled shear wall lateral load resisting system with outriggers was monitored using current state-of-the-art sensing technologies and techniques to determine, in situ, the dynamic properties under real wind loads. The in situ measurements were then compared with results obtained using current state-of-the-art computer modelling techniques.
机译:随着高层建筑随着高度和细长度的增加而增加,它们对动态振动变得越来越敏感,因此,振动的固有频率和阻尼比是非常重要的设计参数,因为它们直接影响设计风力。传感和计算技术的最新进展使得监视全尺寸结构的动态行为成为可能,而这在过去是不可能的。动态特性的全面验证对于高层设计人员来说可以用来验证设计假设,尤其是因为最近的测量表明,阻尼随着建筑物高度的增加而减小,并且原位阻尼测量已经低于许多当前假设的设计。值,可能导致不保守的设计。使用当前最先进的传感技术和技术来监测多伦多市中心一栋50层高的住宅建筑,该建筑带有钢筋混凝土耦合的剪力墙抗侧倾系统和悬臂,用于现场确定真实风下的动态特性负载。然后将原位测量结果与使用最新技术的计算机建模技术获得的结果进行比较。

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