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An investigation on the accuracy of pushover analysis for estimating the seismic deformation of braced steel frames

机译:作者:张莹莹,王汝传,工程抗震与加固改造F

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摘要

This paper investigates the potentialities of the pushover analysis to estimate the seismic deformation demands of concentrically braced steel frames. Reliability of the pushover analysis has been verified by conducting nonlinear dynamic analysis on 5, 10 and 15 story frames subjected to 15 synthetic earthquake records representing a design spectrum. It is shown that pushover analysis with predetermined lateral load pattern provides questionable estimates of inter-story drift. To overcome this inadequacy, a simplified analytical model for seismic response prediction of concentrically braced frames is proposed. In this approach, a multistory frame is reduced to an equivalent shear-building model by performing a pushover analysis. A conventional shear-building model has been modified by introducing supplementary springs to account for flexural displacements in addition to shear displacements. It is shown that modified shear-building models have a better estimation of the nonlinear dynamic response of real framed structures compared to nonlinear static procedures.
机译:本文研究了推覆分析的潜力,以估计同心支撑钢框架的地震变形需求。推覆分析的可靠性已通过对5个,10个和15个故事框架进行非线性动态分析来验证,这些框架经受了15个代表设计谱的合成地震记录。结果表明,具有预定横向载荷模式的俯冲分析提供了层间漂移的可疑估计。为了克服这一不足,提出了一种用于同心支撑框架地震反应预测的简化分析模型。在这种方法中,多层框架通过执行下推分析而简化为等效的剪力墙模型。通过引入补充弹簧来修正传统的剪力构建模型,以解决剪力位移之外的挠曲位移。结果表明,与非线性静态程序相比,修改后的剪切构建模型可以更好地估计真实框架结构的非线性动力响应。

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