Analytical Study on Dynamic Response of Reinforced Concrete Structure With Internal Equipment Subjected to Projectile Impact

Y. Okuda, Zuoyi Kang, A. Nishida, H. Tsubota, Yinsheng Li
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Abstract

In case of a projectile impact on a reactor building of a nuclear power plant, stress waves propagate from the impacted wall to the structure’s interior. It is important to assess the effect of dynamic responses generated by the projectile’s impact on internal equipment, because stress waves are likely to excite high-frequency vibrations of internal equipment. The OECD (Organization for Economic Co-operation and Development) / NEA (Nuclear Energy Agency) launched the IRIS (Improving Robustness Assessment Methodologies for Structures Impacted by Projectiles) benchmark project in order to assess the dynamic response of a nuclear facility to projectile impact, and the third phase of IRIS (IRIS 3) [1] contributes to the investigation of the dynamic responses of reinforced concrete (RC) structures that house internal equipment. We have participated in IRIS 3 and have performed calibration analyses of projectile impact tests on a structure that models a reactor building that houses internal equipment. Specifically, we have developed and validated a numerical approach to investigation of impact responses of an RC structure that houses internal equipment through calibration correction. This paper presents partial simulation results of the dynamic responses of this structure and discusses the effects of support conditions of the internal equipment and stress wave propagation.
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带有内部设备的钢筋混凝土结构受弹丸冲击动力响应分析研究
当弹丸撞击核电站的反应堆建筑时,应力波从被撞击的墙传播到结构内部。由于应力波可能激发内部设备的高频振动,因此评估弹丸冲击对内部设备产生的动态响应的影响是很重要的。OECD(经济合作与发展组织)/ NEA(核能机构)启动了IRIS(改进受弹丸冲击结构的鲁棒性评估方法)基准项目,以评估核设施对弹丸冲击的动态响应,IRIS (IRIS 3)[1]的第三阶段有助于研究内部设备的钢筋混凝土(RC)结构的动态响应。我们参加了IRIS 3,并对一个结构进行了弹丸冲击试验的校准分析,该结构模拟了一个容纳内部设备的反应堆建筑。具体来说,我们已经开发并验证了一种数值方法,通过校准校正来研究RC结构内部设备的冲击响应。本文给出了该结构动力响应的部分仿真结果,并讨论了内部设备支护条件和应力波传播的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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