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An energy based method for seismic design of frame structures equipped with metallic yielding dampers considering uniform inter-story drift concept

机译:考虑均匀层间漂移概念的基于能量的框架结构抗震设计方法

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摘要

Application of passive control systems in earthquake-resistant structures has attracted much attention in recent decades. One of the most important obstacles to the widespread use of these systems is the lack of simple methods for analysis and design of these systems. Energy based approach is one of design methods that has been considered extensively in recent years. In this paper, an energy-based method is proposed for seismic design of the building structures equipped with metallic yielding dampers. Considering the concepts of energy balance in the structure, the required equations to determine the number of dampers in each story are developed so that uniform drift and ductility demands are achieved in different stories. A step-by-step design flowchart is presented, and then several building structures are designed using a computer code written based on it. To check efficiency of the method, seismic responses of designed structures are evaluated under two sets of artificial and real records using dynamic analysis of the FE models. The responses are compared with the assumptions and objectives of the proposed design method. The results indicate a good agreement and it is concluded that the proposed method can be successfully used to design building structures equipped with metallic yielding dampers.
机译:近几十年来,被动控制系统在抗震结构中的应用引起了广泛的关注。广泛使用这些系统的最重要障碍之一是缺乏用于分析和设计这些系统的简单方法。基于能量的方法是近年来被广泛考虑的设计方法之一。本文提出了一种基于能量的方法,对装有金属屈服阻尼器的建筑结构进行抗震设计。考虑到结构中能量平衡的概念,开发了确定每个楼层中的阻尼器数量所需的方程式,以便在不同楼层中实现均匀的漂移和延性要求。给出了逐步的设计流程图,然后使用基于该流程图编写的计算机代码来设计几种建筑结构。为了检查该方法的有效性,使用FE模型的动态分析在两组人工和真实记录下评估了设计结构的地震响应。将响应与提出的设计方法的假设和目标进行比较。结果表明,该方法具有良好的一致性,并得出结论,该方法可成功用于设计装有金属屈服阻尼器的建筑结构。

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