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首页> 外文期刊>Practice periodical on structural design and construction >Tuned Sloshing Dampers in Tall Buildings: A Practical Performance-Based Design Approach
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Tuned Sloshing Dampers in Tall Buildings: A Practical Performance-Based Design Approach

机译:高层建筑的调谐晃动阻尼器:基于实用的性能的设计方法

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摘要

It is becoming increasingly common to employ tuned sloshing damper (TSD) systems to reduce the wind-induced motion of tall buildings due to their affordability and apparent simplicity. However, TSD systems are relatively new to the high-rise construction industry, and, due to their unfamiliarity, design and construction teams may perceive these devices as having considerable risk. Since the implementation of these systems requires a performance-based design approach (rather than a prescriptive approach) to ensure serviceability performance objectives are achieved, knowledge of their function and operation is paramount to their efficient design and installation. The goal of this study is to reduce the perceived risks by describing the function of TSDs, as well as the practical aspects of the design and installation process. The process is described in four phases: concept design, detailed design, construction, and tuning and commissioning. The key tasks associated with each phase are defined and common challenges identified. This paper does not present new theory to further advance the TSD research; instead, it summarizes current theory and presents practical guidance accumulated from years of experience with the design, installation, and as-built performance verification of many TSD systems.
机译:采用调谐晃动阻尼器(TSD)系统越来越普遍,以减少由于其负担能力和明显的简单而导致高层建筑的风力诱导的运动。然而,TSD系统对高层建筑行业相对较新,而且由于他们的陌生性,设计和施工团队可能会将这些设备视为具有相当大的风险。由于这些系统的实现需要基于性能的设计方法(而不是规范性的方法),以确保实现可维护性性能目标,因此了解其功能和操作的知识对于其有效的设计和安装至关重要。本研究的目标是通过描述TSD的功能以及设计和安装过程的实际方面来减少感知风险。该过程有四个阶段描述:概念设计,详细的设计,建设和调整和调试。定义了与每个阶段相关的关键任务,并确定了常见的挑战。本文并未提出新理论,以进一步推进TSD研究;相反,它总结了当前的理论,并呈现了多年多年的设计,安装和竣工性能验证多年的经验的实用指导。

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