首页> 外文期刊>International journal of structural stability and dynamics >INTEGRATED STRUCTURAL OPTIMIZATION AND VIBRATION CONTROL FOR IMPROVING WIND-INDUCED DYNAMIC PERFORMANCE OF TALL BUILDINGS
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INTEGRATED STRUCTURAL OPTIMIZATION AND VIBRATION CONTROL FOR IMPROVING WIND-INDUCED DYNAMIC PERFORMANCE OF TALL BUILDINGS

机译:集成结构优化和振动控制,以提高高层建筑的风感动力性能

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摘要

Structural optimization and vibration control have long been recognized as effective approaches to obtain the optimal structural design and to mitigate excessive responses of tall building structures. However, the combined effects of both techniques in the structural design of wind sensitive tall buildings with excessive responses have not been revealed. Therefore, this paper develops an integrated design technique making use of both the advantages of structural optimization and vibration control with an empirical cost model of the control devices. While the structural optimization is based on a very efficient optimality criteria (OC) method, a smart tuned mass damper (STMD) is used for the structural control purposes. Utilizing data obtained from synchronous pressure measurements in the wind tunnel, a 60-story building of mixed steel and concrete construction with three-dimensional (3D) mode shapes was employed as an illustrative example to demonstrate the effectiveness of the proposed optimal performance-based design framework integrating with structural vibration control.
机译:长期以来,结构优化和振动控制一直是获得最佳结构设计并减轻高层建筑结构过度响应的有效方法。但是,尚未揭示这两种技术在对风敏感的高层建筑结构设计中具有过度响应的组合效果。因此,本文利用结构优化和振动控制的优点,结合控制装置的经验成本模型,开发了一种集成设计技术。虽然结构优化基于非常有效的最优性标准(OC)方法,但智能调谐质量阻尼器(STMD)用于结构控制。利用从风洞中的同步压力测量获得的数据,以60层钢和混凝土混合结构的建筑物(具有三维(3D)模式形状)作为说明性示例,以证明所提出的基于最佳性能的设计的有效性框架与结构振动控制相集成。

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