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首页> 外文期刊>Journal of structural engineering >Adaptive Modal Combination Procedure for Nonlinear Static Analysis of Building Structures
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Adaptive Modal Combination Procedure for Nonlinear Static Analysis of Building Structures

机译:建筑结构非线性静力分析的自适应模态组合程序

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摘要

A new pushover analysis procedure derived through adaptive modal combinations (AMC) is proposed for evaluating the seismic performance of building structures. The methodology offers a direct multimode technique to estimate seismic demands and attempts to integrate concepts built into the capacity spectrum method recommended in ATC-40 (1996), the adaptive method originally proposed by Gupta and Kunnath (2000) and the modal pushover analysis advocated by Chopra and Goel (2002). The AMC procedure accounts for higher mode effects by combining the response of individual modal pushover analyses and incorporates the effects of varying dynamic characteristics during the inelastic response via its adaptive feature. The applied lateral forces used in the progressive pushover analysis are based on instantaneous inertia force distributions across the height of the building for each mode. A novel feature of the procedure is that the target displacement is estimated and updated dynamically during the analysis by incorporating energy-based modal capacity curves in conjunction with constant-ductility capacity spectra. Hence it eliminates the need to approximate the target displacement prior to commencing the pushover analysis. The methodology is applied to two existing steel moment-frame buildings and it is demonstrated that the AMC procedure can reasonably estimate critical demand parameters such as roof displacement and interstory drift for both far-fault and near-fault records, and consequently provides a reliable tool for performance assessment of building structures.
机译:提出了一种通过自适应模态组合(AMC)导出的推覆分析新程序,用于评估建筑结构的抗震性能。该方法提供了一种直接的多模技术来估算地震需求,并试图将内置的概念整合到ATC-40(1996)建议的容量谱方法,Gupta和Kunnath(2000)最初提出的自适应方法以及由Bupta和Kunnath(2000)提倡的模态推覆分析中。 Chopra和Goel(2002)。 AMC程序通过组合各个模态下垂分析的响应来考虑较高模态的影响,并通过其自适应特征在非弹性响应期间合并了变化的动态特征的影响。渐进式推覆分析中使用的施加的侧向力基于每种模式下建筑物高度上的瞬时惯性力分布。该程序的一个新颖特征是,在分析过程中,通过结合基于能量的模态容量曲线和恒定延性容量谱,可以动态估算和更新目标位移。因此,它无需在开始推覆分析之前就近似估算目标位移。该方法被应用于两座现有的钢框架结构建筑,并且证明了AMC程序可以合理估计关键需求参数,例如远动和近动记录的屋顶位移和层间漂移,因此提供了可靠的工具用于建筑结构的性能评估。

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