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Performance and Cost Evaluation of a Smart Tuned Mass Damper for Suppressing Wind-Induced Lateral-Torsional Motion of Tall Structures

机译:智能调谐质量阻尼器用于抑制高层结构风致侧向扭转运动的性能和成本评估

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摘要

The implementation of a vibration control system has always been associated with considerable capital and long-standing maintenance costs, resulting in limited practical applications of damping devices. The notion of a massive implementation cost is largely the result of a lack of cost analysis of vibration control systems in the literature. This paper presents the structural design of a wind-sensitive tall building at various design stages and the results of a collaborative study with two damper construction companies on the cost estimation of a control device. A series of wind tunnel pressure tests were conducted on a 1:400 scale model to determine the translational and torsional wind forces acting on the studied building. A structural optimization was subsequently employed to reduce the excessive top deflection, and a smart tuned mass damper was implemented at the final design stage to meet occupant comfort criteria. The details of each structural design stage, the implementation of vibration control devices, and a collaborative study on damper cost are outlined in this paper.
机译:振动控制系统的实施一直与可观的资金投入和长期的维护成本相关联,从而导致减震装置的实际应用受到限制。大量实施成本的概念很大程度上是由于文献中缺乏对振动控制系统的成本分析的结果。本文介绍了风敏感高层建筑在不同设计阶段的结构设计,以及与两家风能建筑公司就控制设备的成本估算进行合作研究的结果。在1:400比例模型上进行了一系列风洞压力测试,以确定作用在研究建筑物上的平移和扭转风力。随后采用了结构优化来减少过度的顶部挠度,并在最终设计阶段实施了智能调谐质量阻尼器,以满足乘客的舒适度标准。本文概述了每个结构设计阶段,振动控制装置的实施以及阻尼器成本的协作研究的详细信息。

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