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Seismic response of non-structural components attached to reinforced concrete structures with different eccentricity ratios

机译:不同偏心率比的钢筋混凝土结构非结构构件的地震响应

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This paper presents average numerical results of 2128 nonlinear dynamic finite element (FE) analyses of lightweight acceleration-sensitive non-structural components (NSCs) attached to the floors of one-bay three-storey reinforced concrete (RC) primary structures (P-structures) with different eccentricity ratios. The investigated parameters include the NSC to P-structure vibration period ratio, peak ground acceleration, P-structure eccentricity ratio, and NSC damping ratio. Appropriate constitutive relationships were used to model the behaviour of the RC P-structures. The NSCs were modelled as vertical cantilevers fixed at their bases with masses on the free ends and varying lengths so as to match the vibration periods of the P-structures. Full dynamic interaction was considered between the NSCs and P-structures. A set of seven natural bi-directional ground motions were used to evaluate the seismic response of the NSCs. The numerical results show that the acceleration response of the NSCs depends on the investigated parameters. The accelerations of the NSCs attached to the flexible sides of the P-structures increased with the increase in peak ground acceleration and P-structure eccentricity ratio but decreased with the increase in NSC damping ratio. Comparison between the FE results and Eurocode 8 (EC8) predictions suggests that, under tuned conditions, EC8 provisions underestimate the seismic response of the NSCs mounted on the flexible sides of the plan-irregular RC P-structures.
机译:本文介绍了2128个非线性动态有限元(FE)分析的轻量化的加速度敏感非结构构件(NSC)的平均数值结果,该构件附着在单层三层钢筋混凝土(RC)主结构(P结构)的地板上)具有不同的偏心率。研究的参数包括NSC与P结构的振动周期比,峰值地面加速度,P结构的偏心率和NSC阻尼比。适当的本构关系用于对RC P结构的行为进行建模。将NSC建模为固定在其底部的垂直悬臂,其自由端具有质量且长度可变,以匹配P结构的振动周期。 NSC与P结构之间考虑了完全动态的相互作用。使用一组七个自然双向地面运动来评估NSC的地震响应。数值结果表明,NSC的加速度响应取决于所研究的参数。附着在P结构柔性侧的NSC的加速度随峰值地面加速度和P结构偏心率的增加而增加,但随NSC阻尼比的增加而减小。有限元结果与欧洲规范8(EC8)预测之间的比较表明,在调整的条件下,EC8规定低估了安装在平面不规则RC P结构柔性侧上的NSC的地震响应。

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