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Viscous-Tuned Hybrid Structural Vibration Mitigation System: Wind-Induced Response Analyses Method and Case Study

机译:粘性调谐混合结构振动缓解系统:风诱导的反应分析方法和案例研究

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The wind-induced vibrations of super tall buildings become excessive due to strong wind loads, super building height and high flexibility. Tuned mass dampers (TMDs) and viscous dampers have been widely used to control vibrations for actual super tall buildings for decades. Sometimes people tend to use TMDs and viscous dampers simultaneously, for example the space is not sufficient for TMDs. An innovative supplemental damping system which is composed of both viscous damper and TMD, namely viscous-tuned damper system (VTD), is proposed to control the wind-induced vibrations of tall buildings. The governing equations are generated for the motion of both the primary structure and the VTD and solved to anticipate the dynamic response of the VTD-structure system. A two story frame is studied to verify the design method. The wind-induced vibration mitigation efficiency of super tall buildings equipped with both viscous dampers and tuned mass dampers (VTD) are investigated in this study. The results show that the VTD system has sound vibration mitigation capacity. Considering the practical engineering situation, the VTD system is a competitive option for wind-induced vibration control of super tall buildings.
机译:由于强风荷载,超大建筑物高度和高度灵活性,风致超大建筑的振动变得过大。调谐质量阻尼器(TMDS)和粘性阻尼器已被广泛用于控制实际超高层建筑的振动数十年。有时人们倾向于同时使用TMDS和粘性阻尼器,例如空间不足以用于TMD。建议采用粘性阻尼器和TMD组成的创新补充阻尼系统,即粘性调谐阻尼系统(VTD),以控制高层建筑的风引起的振动。为主结构和VTD的运动产生控制方程,并解决以期望VTD结构系统的动态响应。研究了两个故事框架以验证设计方法。本研究研究了配备有粘性阻尼器和调谐质量阻尼器(VTD)的超高层建筑的风力诱导的减震效率。结果表明,VTD系统具有声音缓解容量。考虑到实用工程状况,VTD系统是风力诱导超大建筑振动控制的竞争选择。

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