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The capacity loss of a RCC building under mainshock-aftershock seismic sequences

机译:主轴余震震动序列下RCC建设的容量丧失

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Reinforced concrete containment (RCC) building has long been considered as the last barrier for keeping the radiation from leaking into the environment. It is important to quantify the performance of these structures and facilities considering extreme conditions. However, the preceding research on evaluating nuclear power plant (NPP) structures, particularly considering mainshock-aftershock seismic sequences, is deficient. Therefore, this manuscript serves to investigate the seismic fragility of a typical RCC building subjected to mainshock-aftershock seismic sequences. The implementation of the fragility assessment has been performed based on the incremental dynamic analysis (IDA) method. A lumped mass RCC model considering the tri-linear skeleton curve and the maximum point-oriented hysteretic rule is employed for IDA analyses. The results indicate that the seismic capacity of the RCC building would be overestimated without taking into account the mainshock-aftershock effects. It is also found that the seismic capacity of the RCC building decreases with the increase of the relative intensity of aftershock ground motions to mainshock ground motions. In addition, the effects of artificial mainshock-aftershock ground motions generated from the repeated and randomized approaches and the polarity of the aftershock with respect to the mainshock on the evaluation of the RCC are also researched, respectively.
机译:钢筋混凝土容器(RCC)建筑物长期被认为是保持辐射泄漏到环境中的最后一个障碍。考虑到极端条件,量化这些结构和设施的性能非常重要。然而,关于评估核电厂(NPP)结构的前述研究,特别是考虑主轴 - 余震地震序列,缺陷。因此,该稿件用于研究经受主轴 - 余震地震序列的典型RCC建筑物的地震脆性。已经基于增量动态分析(IDA)方法来执行脆弱性评估的实现。考虑到三线性骨架曲线和最大点导向的滞后规则的集总质量RCC模型用于IDA分析。结果表明,RCC建设的地震能力将被高估,而不考虑主轴余震效果。还发现RCC建设的地震能力随着余震地面运动的相对强度的增加而降低到主轴地面运动。此外,还研究了从重复和随机方法和余震的返回座的极性相对于MACSHOCK对RCC评估的影响的人工主轴 - 余震接地运动的影响。

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