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Elastic-plastic behavior of AP1000 nuclear island structure under mainshock-aftershock sequences

机译:主震-余震序列下AP1000核岛结构的弹塑性行为

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This paper studies dynamic responses of AP1000 nuclear island structure in strong earthquake sequences. A numerical model to simulate nuclear structural behaviors in earthquake is validated by comparison with data from a previous study on a nonlinear dynamic analysis of a reinforced concrete shield building. The validated numerical model is then used to carry out a series of parametric analyses with 112 computational cases so as to determine influence of strong aftershocks on structural elastic-plastic behavior considering input of three-dimensional ground motions. The results indicate that the influence of aftershocks on structural horizontal vertical dynamic responses is very small in design basis earthquake sequences. However, the influence must be considered seriously in beyond-design basis earthquake sequences as values of RMVs (Ratio of Mean Value) deviating IPRs (Input Peak Ratio) obviously, which means structural dynamic responses are greatly changed in strong aftershocks. Damage aggravating effect induced by strong aftershocks can cause severe damage of structural members and it is found the greater the magnitude of aftershocks, the severer the aggravation effect. Although earthquake input energy is mostly dissipated by damping energy, plastic damage energy plays considerable role in strong aftershocks as it shares beyond 8 percent of the total input energy, which is 10 times more compared to design basis earthquake sequences. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文研究了AP1000核岛结构在强地震序列中的动力响应。通过与先前对钢筋混凝土屏蔽建筑非线性动力分析的研究数据进行比较,验证了模拟地震中核结构行为的数值模型。然后使用经过验证的数值模型对112个计算案例进行一系列参数分析,以便在考虑三维地面运动输入的情况下确定强余震对结构弹塑性行为的影响。结果表明,在设计基准地震序列中,余震对结构水平竖向动力响应的影响很小。但是,在超出设计基准的地震序列中,必须认真考虑影响,因为RMV(平均值比)的值明显会偏离IPR(输入峰值比),这意味着在强余震中结构动力响应会发生很大变化。强余震引起的损伤加重效果可能会严重破坏结构构件,并且发现余震量越大,加重效果越严重。尽管地震输入能量主要由阻尼能量消散,但塑性破坏能量在强余震中起着相当重要的作用,因为它所占份额超过总输入能量的8%,是设计基准地震序列的10倍。 (C)2018 Elsevier Ltd.保留所有权利。

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