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首页> 外文期刊>The structural design of tall buildings >Study on adaptive-passive eddy current pendulum tuned mass damper for wind-induced vibration control
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Study on adaptive-passive eddy current pendulum tuned mass damper for wind-induced vibration control

机译:用于风诱导振动控制的自适应无源涡流摆型调谐质量阻尼器

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摘要

Tuned mass dampers (TMDs) are used to control wind-excited responses of high-rise building as traditional vibration control devices. A TMD will have an excellent control effect when it is well tuned. However, a traditional passive TMD is sensitive to the frequency deviation; the mistuning in frequency and damping ratio both will decrease its control effect. In the previous research, an adaptive-passive variable pendulum TMD (APVP-TMD) is proposed, which can identify the TMD optimal frequency and retune itself through varying its pendulum length. However, it is found that the frequency variation will change the TMD damping ratio, and an unreasonable damping ratio will lead to a decrement in the robustness of a TMD. In this study, an adaptive-passive eddy current pendulum TMD (APEC-PTMD) is presented, which can retune the frequency through varying the pendulum length, and retune the damping ratio through adjusting the air gap between permanent magnets and conductive plates. An adjustable eddy current pendulum TMD (PTMD) is tested, and then, a single-degree-of-freedom (SDOF) primary model with an APEC-PTMD is built, and functions of frequency and damping ratio retuning are verified. The 76-story wind-sensitive benchmark model is proposed in the case study. The original model without uncertainty and +/- 15% stiffness uncertainty models are considered, and response control effects of different controllers are compared. Results show that because the APEC-PTMD can both retune its frequency and damping ratio; it is more robust and effective than a passive TMD. It is also found that the APEC-PTMD has a similar control effect with the active TMD, with little power consumption and better stability.
机译:调谐质量阻尼器(TMDS)用于控制高层建筑物作为传统振动控制装置的风力激励反应。在调谐时,TMD将具有出色的控制效果。然而,传统的被动TMD对频率偏差敏感;频率和阻尼比的迷雾均均可降低其控制效果。在先前的研究中,提出了一种自适应 - 无源可变摆动TMD(APVP-TMD),其可以通过改变其摆率长度来识别TMD最佳频率并通过其旋转自身。然而,发现频率变化会改变TMD阻尼比,并且不合理的阻尼比率将导致TMD的鲁棒性衰减。在该研究中,提出了一种自适应 - 无源涡流摆动TMD(APEC-PTMD),其可以通过改变摆长来重温频率,并通过调节永磁体和导电板之间的气隙来调节阻尼比。测试可调节的涡流摆动TMD(PTMD),然后构建了具有APEC-PTMD的单一自由度(SDOF)初级模型,验证了频率和阻尼比率Reying的功能。在案例研究中提出了76层风敏基准模型。考虑了没有不确定性和+/- 15%刚度不确定性模型的原始模型,并比较了不同控制器的响应控制效果。结果表明,因为APEC-PTMD既可以调速其频率和阻尼比;它比被动TMD更强大而有效。还发现APEC-PTMD具有与活性TMD类似的控制效果,具有很少的功耗和更好的稳定性。

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