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首页> 外文期刊>The Structural Design of Tall and Special Buildings >SEISMIC ANALYSIS OF INELASTIC MOMENT-RESISTING FRAMES PART I: MODIFIED FORCE ANALOGY METHOD FOR END OFFSETS
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SEISMIC ANALYSIS OF INELASTIC MOMENT-RESISTING FRAMES PART I: MODIFIED FORCE ANALOGY METHOD FOR END OFFSETS

机译:弹性矩框架的地震分析第一部分:端部偏移的修正力模拟方法

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摘要

An analytical method of performing inelastic structural dynamic analysis based on the force analogy method to study real moment-resisting frames with plastic hinge offsets from member ends and rigid panel zones is proposed. New stiffness matrices used in the force analogy method for members with two ends being rigid are theoretically derived using the unit displacement method. Through static condensation, each term in the stiffness matrices is found to be modified simply through multiplying by a scale factor. This is an enhancement to the original force analogy method or other conventional methods, where the condensed form reduces the size of the structural problem by eliminating the unnecessary additional degrees of freedom that must be placed at the plastic hinges. But more importantly, this is a significant improvement on other conventional methods where the present inelastic analysis procedure is more of a theoretical nature rather than numerical. Numerical simulation for seismic analysis is performed on a single degree of freedom system, and the results show that plastic hinge end offsets have significant effects on the seismic response and therefore they should be carefully considered in dynamic analysis. The companion paper further discusses the influence of panel zone deformation on the dynamic response based on the method proposed in this part of the research.
机译:提出了一种基于力类比法的非弹性结构动力分析方法,以研究塑性铰铰距构件端部和刚性面板区域的真实抗弯框架。理论上,使用单位位移法导出了在力模拟方法中两端为刚性构件的新刚度矩阵。通过静态缩合,刚度矩阵中的每个项都可以通过简单地乘以比例因子来进行修改。这是对原始力模拟方法或其他常规方法的增强,其中压缩形式通过消除必须放置在塑料铰链上的不必要的额外自由度来减小结构问题的大小。但是更重要的是,这是对其他常规方法的重大改进,在这些常规方法中,当前的非弹性分析过程更多是理论性质,而不是数值性质。在单自由度系统上进行了地震分析的数值模拟,结果表明,塑料铰链端部偏移对地震响应具有重大影响,因此在动力学分析中应谨慎考虑。伴随论文将根据本部分研究中提出的方法,进一步讨论面板区域变形对动力响应的影响。

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