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Effect of axial force-bending moment interaction on stochastic nonzero mean seismic response of reinforced concrete frames

机译:弯矩-弯矩相互作用对钢筋混凝土框架随机非零平均地震响应的影响

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摘要

Inelastic seismic analysis of buildings should consider the interaction of resisting axial force and bending moment in the columns, second order effects apart. Many fiber-based models are available but unsuitable for stochastic analysis, except Monte Carlo simulation. In contrast, a lumped plasticity frame model based on Bouc-Wen hysteresis, as recently extended to introduce interaction in a simple fashion, is straightforward to implement within stochastic equivalent linearization. Herein the interaction effect on the nonzero mean response is discussed. The model parameters are tuned for engineering structural analysis. Application is to eight reinforced concrete frames under gravity load and horizontal seismic excitation. The interstory drift appears to be almost insensitive to interaction. The rotation and energy ductility demands may change significantly, not only in the columns but also in the beams. All in all, increase prevails on decrease; the interaction effect is negative. For instance, decrease in the 95th percentile of rotation ductility demand is at most 10% or, in very few cases, 30%, whereas increase is up to 60% in most frames, and even two and three times in two frames. The bending moment statistics may change as well. Mean value is affected more than variance. Results are consistent with established outcome on nonzero mean random vibration. The interaction effect is marked on the outer members at bottom stories, tall frames, and soft ground. The lumped plasticity model seems to be suitable for practical structural analysis.
机译:建筑物的非弹性地震分析应考虑柱子中的轴向力和弯矩的相互作用,二阶效应分开。除了蒙特卡洛模拟外,还有许多基于光纤的模型可用,但不适用于随机分析。相反,基于Bouc-Wen磁滞的集总可塑性框架模型(最近扩展为以简单方式引入相互作用)可以在随机等效线性化中直接实现。在此讨论了对非零均值响应的交互作用。调整模型参数以进行工程结构分析。适用于重力荷载和水平地震激励下的八个钢筋混凝土框架。层间漂移似乎对相互作用几乎不敏感。旋转和能量延展性的要求可能不仅在圆柱中而且在梁中都发生显着变化。总而言之,增加胜于减少;交互作用是负面的。例如,旋转延展性需求的第95个百分位减少最多为10%,在极少数情况下为30%,而在大多数帧中增加到60%,甚至在两个帧中增加到两倍和三倍。弯矩统计数据也可能会更改。平均值受到的影响大于方差。结果与非零平均随机振动的既定结果一致。外部层的底部,高框和柔软的地面上标记了交互效果。集总可塑性模型似乎适合于实际的结构分析。

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