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SEISMIC RETROFIT OF PRE-NORTHRIDGE STEEL MOMENT FRAME BUILDING USING NONLINEAR STATIC ANALYSIS PER ASCE 41-06

机译:使用非线性静态分析每ries106使用非线性静态分析的地震改装41-06

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The need to perform cost-effective seismic rehabilitation of essential facilities has made the use of nonlinear analysis techniques an attractive option. The estimation of seismic demands on structures requires explicit consideration of the structural inelastic behavior. Therefore, nonlinear procedures such as pushover analyses are inevitably going to be more widely used. This paper presents a case study of a 10-story Pre-Northridge steel moment frame hospital building in California that was analyzed using nonlinear pushover analysis approach. Nonlinear force-deformation relationships and acceptance criteria of primary structural components were modeled in accordance to ASCE 41-06 and supplemented by experimental component testing results. Given the nature of steel moment frame buildings constructed during this era, existing connections are highly susceptible to damages during a major earthquake which could lead to an unfavorable failure mechanism. Based on nonlinear pushover analysis results, potential structural deficiencies will be identified and different rehabilitation methods will be presented. Besides, the comparisons of retrofit scopes between conventional and nonlinear methods will be highlighted. Finally and most importantly, this paper also addresses some challenges found by the authors in the implementation of nonlinear pushover analysis in seismic retrofit application, as well as recommendations from practitioner perspectives.
机译:需要执行成本效益的基本设施的地震恢复已经利用非线性分析技术具有吸引力的选择。对结构的地震要求的估计需要明确考虑结构性非弹性行为。因此,不可避免地使用诸如推进分析之类的非线性手术。本文介绍了在加利福尼亚州一家10层前诺诺里奇钢力矩框架医院建筑的案例研究,这些建筑使用非线性推动分析方法进行了分析。根据ASCE 41-06进行模拟主要结构组分的非线性力变形关系和验收标准,并通过实验组分测试结果进行补充。鉴于在该时代构建的钢矩框架建筑物的性质,现有的连接在可能导致不利的失效机制的主要地震中非常易受损害的影响。基于非线性推动分析结果,将识别潜在的结构缺陷,并呈现不同的康复方法。此外,将突出传统和非线性方法之间改造范围的比较。最后,最重要的是,本文还解决了作者在地震改造申请中实施非线性推动分析的一些挑战,以及从业者观点的建议。

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