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Field measurement-based wind-induced response analysis of multi-tower building with tuned mass damper

机译:基于现场测量的风力诱导的多塔建筑用调谐质量阻尼器的响应分析

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摘要

The 246.8-m-tall Beijing Olympic Tower (BOT) is a new landmark in Beijing City, China. Its unique architectural style with five sub-towers and a large tower crown gives rise to complex dynamic characteristics. Thus, it is wind-sensitive, and a double-stage pendulum tuned mass damper (DPTMD) has been installed for vibration mitigation. In this study, a finite-element analysis of the wind-induced responses of the tower based on full-scale measurement results was performed. First, the structure of the BOT and the full-scale measurement are introduced. According to the measured dynamic characteristics of the BOT, such as the natural frequencies, modal shapes, and damping ratios, an accurate finite-element model (FEM) was established and updated. On the basis of wind measurements, as well as wind-tunnel test results, the wind load on the model was calculated. Then, the wind-induced responses of the BOT with the DPTMD were obtained and compared with the measured responses to assess the numerical wind-induced response analysis method. Finally, the wind-induced serviceability of the BOT was evaluated according to the field measurement results for the wind-induced response and was found to be satisfactory for human comfort.
机译:北京市246.8-M-Tall Town(Bot)是中国北京市的新地标。它具有五个亚塔和大型塔冠的独特建筑风格,带来了复杂的动态特性。因此,它是风敏感的,并且已经安装了双级摆动调谐质量阻尼器(DPTMD)以进行振动缓解。在该研究中,进行了基于全规模测量结果的塔风感应的有限元分析。首先,介绍了机器人的结构和全尺度测量。根据机器人的测量动态特性,例如自然频率,模态形状和阻尼比,建立并更新了精确的有限元模型(FEM)。在风测量的基础上,以及风洞测试结果,计算了模型上的风力载荷。然后,获得与DPTMD的机器人的风诱导的响应,并与测量的反应进行比较,以评估数值风引起的响应分析方法。最后,根据风诱导的反应的现场测量结果评价机器人的风诱导的可用性,并且发现人类舒适性令人满意。

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