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A Comparative Study of Alternative Approaches for Stability Design of Steel Frames

机译:钢框架稳定性设计替代方法的比较研究

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Approaches for stability design of steel frames include the traditional and the modified effective length methods and the notional load approach. This paper presents a storey-based stability factor approach in which storey slenderness and a stability coefficient for a storey are defined, the stability of a storey is checked as a whole. Also presented are detailed comparison of the modified effective length approach, the notional load approach and the proposed storey-based method with FEM. Seven frames, with different bases or beam-to-column connections, one or two spans, one or two stories, with or without leaning columns, uniformly or unevenly loaded, are analysed. Various imperfections are considered. All frames are assumed to be axially loaded to serve as benchmark problems for checking the priority of available methods. It is found that the notional load approach is ideal for frames that are uniformly loaded, and if the modified effective length factors of columns are within 1~2. The modified effective length is not accurate enough in considering the inter-column interaction of a storey failing in an elastic-plastic state. The proposed storey-based stability factor approach shows good agreement with FEM for all the frames analysed.
机译:钢框架稳定性设计的方法包括传统的和改进的有效长度方法以及名义载荷方法。本文提出了一种基于层的稳定性因子方法,其中定义了层的细长度和层的稳定性系数,从整体上检查了层的稳定性。还介绍了修改后的有效长度法,名义荷载法和建议的基于层的有限元法的详细比较。分析了七个具有不同基础或梁到柱连接,一或两个跨度,一或两层,有无斜柱,均布或不均布的框架。考虑了各种缺陷。假定所有框架都轴向加载,以作为基准问题来检查可用方法的优先级。结果表明,假设荷载法是均匀荷载框架的理想选择,且修正后的有效柱长系数在1〜2之间。考虑到在弹塑性状态下失效的楼层的柱间相互作用,修改后的有效长度不够准确。所提出的基于层的稳定性因子方法对于所分析的所有框架都显示出与FEM的良好一致性。

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