[论文][Paper] 深圳某400m双塔连体结构TLD风振控制可行性研究 (Feasibility investigation of wind-induced vibration control using TLD for a 400-meter twin-tower connected structure in Shenzhen)

The structural system of a 400m twin-tower linked project in Shenzhen features a frame-core tube configuration with outriggers and belt truss strengthening story, comprising eastern and western towers connected by connective structure. Due to complex architectural geometry, high wind loads, and unique site-specific wind conditions, under 10-year return period wind loads from the southeastern direction, the towers exhibit significant dynamic responses. Wind-induced accelerations at the tower tops substantially exceed code limits, resulting in occupant comfort deficiencies. To address this, tuned liquid dampers (TLDs) were proposed for wind vibration control. Spectrum analysis was employed to identify governing vibration modes of structural wind-induced responses. Time-history analysis was conducted to evaluate wind-induced dynamic responses of the TLDs-equipped structure, with parametric sensitivity analysis subsequently optimizing TLD design parameters. The results demonstrate that the structural base shear and the wind-induced acceleration spectrum at the eastern tower top exhibit a single-peak characteristic, primarily governed by the first translational mode of the eastern tower. The wind-induced acceleration spectrum at the top of the western tower shows a double-peak characteristic, influenced concurrently by the first translational modes of both the eastern and western towers. TLDs installed atop the eastern tower significantly reduce base shear and wind-induced accelerations at both tower tops. However, TLDs at the top of the western tower only effectively mitigate accelerations perpendicular to the connective structure but show no significant control effect on accelerations along the connective structure direction, the accelerations at the top of the eastern tower, or the structural base shear. Furthermore, when TLDs are installed simultaneously at the tops of both towers, wind-induced accelerations are effectively controlled, ensuring compliance with code-specified limits.

[日记][图] “济济一谈”沙龙 12期 | 基于调谐液体阻尼器(TLD)的高层建筑风振控制分析与工程应用

实干、实践、积累、思考、创新。 2023年5月29日,“济济一谈”沙龙 2023年第12期活动在 RBS 广州总部举行。这次我分享的题目是《基于调谐液体阻尼器(TLD)的高层建筑风振控制分析与工程应用》,介绍了高层建筑结构风振控制概况、常用风振控制措施、调谐液体阻尼器(TLD)的减振原理、TLD阻尼器抗风减振设计流程、某450m超高层塔楼TLD抗风减振分析、某400m双塔连体结构TLD抗风减振分析。这次“济济一谈”沙龙采取了线下对外开放的方式,部分其他单位的朋友也来参加了讨论,非常感谢。这里做个记录。 济济一谈是RBS内部的技术学习交流专享会,2023年正值事务所20周年纪念,秉承分享的初心,我们首次开通线上报名,鼓励大家到场参与学习和交流,因部分课程内容涉及较多自身研究,带一定的探索特性,可能存在较多一家之言的地方,需更严谨的探讨。后续还有其他课程和继续分享,请持续关注本群发布动态,再次感谢大家的支持。 相关信息 [01] [日记][图] “济济一谈”沙龙 08期 | ENGT超限结构辅助设计集成系统-研发与应用 [02] [预告][济济一谈] 基于调谐液体阻尼器(TLD)的高层建筑风振控制分析与工程应用 微信公众号 ( Wechat Subscription) 欢迎关注 “结构之旅” 微信公众号

[预告][济济一谈] 基于调谐液体阻尼器(TLD)的高层建筑风振控制分析与工程应用

实干、实践、积累、思考、创新。 内部讲座预告,欢迎广州地区的朋友线下参加! 济济一谈” 是RBS内部相当活跃的技术交流平台,在实际工程中遇到的各类问题和解决方案,同事们都可以开放地交流,相互启迪。 微信公众号 ( Wechat Subscription) 欢迎关注 “结构之旅” 微信公众号