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Improving the wind-induced human comfort of the Beijing Olympic Tower by a double-stage pendulum tuned mass damper

机译:双级摆调谐质量阻尼器改善北京奥运塔风致人的舒适感

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摘要

With five sub towers and a maximum height of 246.8 m, the Beijing Olympic Tower (BOT) is a landmark of Beijing. The complex structural properties and slenderness of the BOT render it prone to wind loading. As far as the wind-induced performance of this structure is concerned, this paper thus aims at a tuned mass damper-based mitigation system for controlling the wind-induced acceleration response of the BOT. To this end, the three-dimensional wind loading of various wind directions are simulated based on the fluctuating wind force obtained by the wind tunnel test, by which the wind-induced vibration is evaluated in the time domain by using the finite element model. A double-stage pendulum tuned mass damper (DPTMD), which is capable of controlling the long period dynamic response and requires only a limited space of installation, is optimally designed at the upper part of the tower. Finally, the wind-induced response of the structure with and without DPTMD is compared with respect to various wind directions and in both the time and frequency domains. The comparative results show that the wind-induced accelerations atop the tower with the wind directions of 45, 135, 225, and 315 degrees are larger than those with the other directions. The DPTMD significantly reduces the wind-induced response by the maximum acceleration reduction ratio of 30.05%. Moreover, it is revealed that the control effect varies noticeably for the five sub towers, depending on the connection rigidity between Tower1 and each sub tower.
机译:北京奥林匹克塔(BOT)有5个子塔,最大高度为246.8 m,是北京的地标建筑。 BOT的复杂结构特性和细长特性使其易于受到风的影响。就此结构的风致性能而言,本文旨在针对基于质量阻尼器的减震系统,以控制BOT的风致加速度响应。为此,基于风洞试验获得的脉动风,模拟了各种风向的三维风载荷,并利用有限元模型在时域内评估了风致振动。在塔架的上部优化设计了一个双级摆式质量阻尼器(DPTMD),该阻尼器能够控制长时间的动态响应,只需要有限的安装空间。最后,比较了在有和没有DPTMD的情况下,结构在不同时域和频域的风致响应。比较结果表明,风向为45、135、225和315度的风塔顶的风向加速度大于其他方向的风向加速度。 DPTMD的最大加速度降低率为30.05%,显着降低了风响应。而且,揭示出,取决于塔1与每个子塔之间的连接刚性,五个子塔的控制效果显着变化。

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