Passive control of along-wind response of tall building

被引:0
|
作者
KIM Young-moon [1 ,2 ]
YOU Ki-pyo [1 ,2 ]
YOU Jang-youl [3 ]
机构
[1] Department of Architecture Engineering, Chonbuk National University
[2] Long-Span Steel Frame System Research Center, Chonbuk National University
[3] KOCED Wind Tunnel Center, Chonbuk National University
基金
新加坡国家研究基金会;
关键词
tuned mass damper(TMD); along-wind vibration; tall building;
D O I
暂无
中图分类号
TU973.32 [];
学科分类号
081405 ;
摘要
Most of modern tall buildings using lighter construction materials with high strength and less stiffness are more flexible, which occurs excessive wind-induced vibration, resulting in occupant discomfort and structural unsafety. It is necessary to predict wind-induced vibration response and find out a method to mitigate such an excessive wind-induced vibration at the preliminary design stage. Recently, many studies have been conducted in using actuator control force based on the linear quadratic optimum control algorithm. It was accepted as a common knowledge that the performance of passive tuned mass damper(TMD) could increase by incorporating a feedback active control force in the design of TMD, which is called active tuned mass damper(ATMD). However, the fact that ATMD is superior to TMD to reduce wind-induced vibration of a tall building is still a question. The effectiveness of TMD for mitigating the along-wind vibration of a tall building was investigated. Optimum parameters of tuning frequency and damping ratio for TMD under a random load which has a white noise spectra were used. Fluctuating along-wind load acting on a tall building treated as a stationary Gaussian random process was simulated numerically using the along-wind load spectra. And using this simulated along-wind load, along-wind responses of a tall building with and without TMD were calculated and the effectiveness of TMD in mitigating the along-wind response of a tall building was found out.
引用
收藏
页码:4002 / 4006
页数:5
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