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Influence of scaling of different types of ground motions on analysis of code-compliant four-story reinforced concrete buildings isolated with elastomeric bearings

机译:不同类型的地震动的比例对采用橡胶支座隔离的符合规范的四层钢筋混凝土建筑的分析的影响

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Understanding the effects of selection and scaling of ground motions on the response of base-isolated buildings is important because these structures are routinely designed using nonlinear response history analysis (RHA). Previous studies lack a comprehensive evaluation of the influence of choices made in the selection of type of ground motions and the method of scaling on a range of response indicators of code compliant base-isolated reinforced concrete (RC) buildings. Therefore, in this study four-story base isolated RC buildings with a range of isolation system properties are designed in accordance with the provisions of ASCE 7-10 and large sets of near-fault pulse-like and far-fault non-pulse-like ground motions are considered. The effects of scaling (weighted scaling versus spectral matching) on the mean values as well as dispersions of various response indicators are systematically evaluated. Uncertainties in isolator properties are accounted for by conducting bounding analysis. Three-dimensional finite element models are developed considering nonlinearity of the isolation system as well as that of the superstructure and RHAs are conducted using risk-targeted maximum Considered earthquake (MCER)-level ground motions. It is found that the type of ground motion and scaling method have more pronounced effects on superstructure response indicators compared with those on isolation system displacement demands. For the base-isolated buildings considered in this study, inter-story drift ratios and column curvature ductilities are affected significantly due to the choices made in the selection and scaling of ground motions while superstructure base shear forces and roof accelerations are less severely affected. Lengthening of the fundamental period was found to be more efficient than increasing effective damping in the isolation system in order to not only reduce superstructure demands but also to reduce the variability of the superstructure response to selection and scaling of ground motions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:了解地震动的选择和缩放对基础隔离建筑物的响应的影响非常重要,因为这些结构通常使用非线性响应历史分析(RHA)进行设计。先前的研究缺乏对地震动类型选择中的选择的影响以及对符合规范的基础隔离钢筋混凝土(RC)建筑物的响应指标范围进行缩放的方法的综合评估。因此,在这项研究中,根据ASCE 7-10的规定设计了具有一定隔离系统特性的四层基础隔离RC建筑物,并设计了大套近断脉冲状和远断非脉冲状考虑地面运动。系统评估了缩放(加权缩放与频谱匹配)对平均值的影响以及各种响应指标的离散度。隔离器属性的不确定性通过进行边界分析来解决。考虑隔离系统以及上层建筑的非线性,建立了三维有限元模型,并使用风险目标最大考虑地震(MCER)级地震动来进行RHA。研究发现,与隔震系统位移指标相比,地震动的类型和缩放方法对上部结构响应指标的影响更为明显。对于本研究中考虑的基础隔震建筑物,由于地震动的选择和缩放比例的选择,层间漂移率和柱曲率延展性受到显着影响,而上部结构基础剪力和屋顶加速度受到的影响较小。发现延长基本周期比增加隔离系统中的有效阻尼更有效,这不仅是为了减少上层建筑的需求,而且是为了减少上层建筑对地震动的选择和缩放响应的变化。 (C)2017 Elsevier Ltd.保留所有权利。

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