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Influence of modeling assumptions and aftershock hazard level in the seismic response of post-mainshock steel framed buildings

机译:建模假设和余震危害水平对主震后钢框架房屋地震反应的影响

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Seismic response under strong aftershocks has become an important topic in performance-based earthquake engineering recently. This paper examines the influence of the modeling approach in the response of a case-study four-story steel framed building designed with modern seismic provisions when subjected to two sets of aftershocks representing different aftershock-hazard levels. It was assumed that the building models experienced specific post-mainshock residual drifts prior of being subjected to the aftershocks. Results shown that including additional sources of stiffness and strength (i.e. inclusion of the interior gravity framing and participation of the slab in the beams) in the building analytical model lead to a different response under aftershocks in terms of maximum and residual interstory drifts than that of the analytical model commonly used in previous studies. Particularly, additional overstrength and post-yield stiffness ratio help to constrain residual drift demands under strong aftershocks, and decrease the probability of imminent demolition due to excessive post-mainshock residual drifts. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近来,强余震下的地震响应已经成为基于性能的地震工程中的重要课题。本文研究了建模方法对案例研究的四层钢框架建筑的影响,该建筑采用现代抗震设计,受到两组表示不同余震危害水平的余震的影响。假定建筑模型在遭受余震之前经历了特定的主震后残余漂移。结果表明,在建筑物分析模型中包括刚度和强度的其他来源(即,包括内部重力框架和梁中平板的参与)会导致在余震下,最大和残余层间位移的响应不同于先前研究中常用的分析模型。特别是,额外的超强度和屈服后刚度比有助于限制强余震下的残余漂移需求,并减少由于过大的主震后残余漂移而导致即将拆除的可能性。 (C)2017 Elsevier Ltd.保留所有权利。

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