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Application of a 245 metric ton Dual-Use Active TMD System

机译:应用245公吨两用有源TmD系统

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摘要

The slender design of a 245 m tall tower structure requires additional structural damping to reduce vortex shedding induced vibrations. Wind tunnel tests indicate that wind speeds can produce critical accelerations at the observation deck on the tower’s top level. The resulting displacements not only raise concern regarding the fatigue capacity at the concrete core of the tower, but would also lead to the discomfort of its visitors. To mitigate critical displacements, a state of the art passive Tuned Mass Damper (TMD) system was chosen to be implemented. The primary use of the tower is not only to give visitors access to its observation deck but to also serve as a test facility for equipment susceptible to building sway. To test the equipment under real life conditions the TMD system is required to be either in passive or in active mode, where in the latter it could excite the tower in its fundamental mode of vibration and cause a significant, yet controlled, building sway in any direction. To satisfy these requirements a novel dual purpose active/passive TMD system was developed. This hybrid TMD is capable of even suppressing the occurring vibrations in one direction while, with the aid of active control, synchronously exciting the tower’s perpendicular direction. The following paper reports on the design approach of the passive system and describes the control strategy when switched into excitation mode. The initial optimization approach will be presented as well as the in-situ results of vibration tests during a monitoring campaign on the tower. In addition, the safety concept to avoid excessive displacements of the tower will be presented.
机译:245 m高的塔架结构的细长设计需要附加的结构阻尼,以减少涡旋脱落引起的振动。风洞测试表明,风速会在塔楼顶层的观景台产生临界加速度。由此产生的位移不仅引起人们对塔架混凝土核心层疲劳能力的担忧,而且还会导致游客的不适。为了减轻临界位移,选择了一种最先进的无源调谐质量阻尼器(TMD)系统。该塔的主要用途不仅是使访客可以进入其观景台,而且还可以作为易受建筑物摇摆影响的设备的测试设施。为了在现实条件下测试设备,TMD系统必须处于被动或主动模式,在后者下,它可能以其基本的振动模式激励塔架,并在任何情况下引起明显但可控的建筑物摇摆方向。为了满足这些要求,开发了新颖的双重目的的主动/被动TMD系统。这种混合式TMD甚至可以抑制一个方向上的振动,同时借助主动控制同步激励塔的垂直方向。以下论文报告了无源系统的设计方法,并介绍了切换到励磁模式时的控制策略。将介绍初始的优化方法以及在塔架上进行监视活动期间进行的振动测试的现场结果。另外,将提出避免塔架过度位移的安全概念。

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