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首页> 外文期刊>Bulletin of earthquake engineering >Direct displacement-based seismic design of steel eccentrically braced frame structures
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Direct displacement-based seismic design of steel eccentrically braced frame structures

机译:钢偏心支撑框架结构基于位移的直接抗震设计

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摘要

This paper details a direct displacement-based design procedure for steel eccentrically braced frame (EBF) structures and gauges its performance by examining the non-linear dynamic response of a series of case study EBF structures designed using the procedure. Analytical expressions are developed for the storey drift at yield and for the storey drift capacity of EBFs, recognising that in addition to link beam deformations, the brace and column axial deformations can provide important contributions to storey drift components. Case study design results indicate that the ductility capacity of EBF systems will tend to be relatively low, despite the large local ductility capacity offered by well detailed links. In addition, it is found that while the ductility capacity of EBF systems will tend to reduce with height, this is not necessarily negative for seismic performance since the displacement capacity for taller EBF systems will tend to be large. To gauge the performance of the proposed DBD methodology, analytical models of the case study design solutions are subject to non-linear time-history analyses with a set of spectrum-compatible accelerograms. The average displacements and drifts obtained from the NLTH analyses are shown to align well with design values, confirming that the new methodology could provide an effective tool for the seismic design of EBF systems.
机译:本文详细介绍了一种基于直接位移的钢偏心支撑框架(EBF)结构的设计程序,并通过检查使用该程序设计的一系列案例研究EBF结构的非线性动力响应来评估其性能。认识到EBF的层间漂移和层间漂移能力的分析表达式已经开发出来,认识到除了连杆梁变形之外,支撑和柱体的轴向变形还可以为层间漂移分量提供重要的贡献。案例研究的设计结果表明,尽管详细链接提供了很大的局部延展能力,但EBF系统的延展能力往往相对较低。另外,已经发现,虽然EBF系统的延性能力将随着高度而降低,但由于较高EBF系统的位移能力将趋于大,因此这不一定会对地震性能产生负面影响。为了评估提议的DBD方法的性能,案例研究设计解决方案的分析模型要经过非线性时程分析,并带有一组频谱兼容的加速度计。结果表明,从NLTH分析获得的平均位移和漂移与设计值很好地吻合,证实了新方法可以为EBF系统的抗震设计提供有效的工具。

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