首页> 外文期刊>International Journal of Pressure Vessels and Piping >Parametric structural integrity assessment of a nuclear reactor reinforced containment and interior components under postulated aircraft collision conditions
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Parametric structural integrity assessment of a nuclear reactor reinforced containment and interior components under postulated aircraft collision conditions

机译:假设飞机碰撞条件下核反应堆增强孔和内部部件的参数结构完整性评估

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摘要

The security of containment structures has been highlighted as a vital component of isolating and protecting internal devices in nuclear power plants from various hypothetical hazards. Despite several recent impressive studies focused on external events such as earthquake and aircraft crash, further elaborate numerical approaches are required to ensure confinement of radwaste materials against severe loads. In this paper, dynamic analyses were carried out to examine the influence of aircraft crashes on a typical reinforced concrete containment and interior components. Firstly, a specific referential force-time history was generated based on Riera function and compared with the impact force exerted by an artificial airplane through a finite element analysis combined with a smoothed-particle hydrodynamics of fuel for validation. Subsequently, systematic numerical analyses were carried out for the containment under diverse postulated aircraft collision conditions. Stresses and strains of each part were calculated, and displacements as well as damages of the concrete due to crushing and cracking were also evaluated through comparison of the corresponding allowable criteria. Moreover, effects of key parameters such as crash angles, locations, and velocities were investigated. As results, central part of the concrete wall was determined to be the most vulnerable and failure based on the conservative strain criteria was estimated at this region under 200 m/s of speed regardless of impact angles.
机译:容纳结构的安全性被突出显示为从各种假设危害中隔离和保护核电站内部设备的重要组成部分。尽管最近近期专注于地震和飞机崩溃等外部事件的令人印象深刻的研究,但需要进一步详细制定的数控方法来确保射击物的禁止免受严重载荷。在本文中,进行了动态分析,以检查飞机碰撞对典型钢筋混凝土容纳和内部部件的影响。首先,基于RIERA函数产生特定的参考力 - 时间历史,并与人造飞机施加的冲击力通过有限元分析与用于验证的平滑粒子流体动力学结合的有限元分析进行比较。随后,在各种假设飞机碰撞条件下进行系统数值分析。计算每个部件的应力和菌株,并且还通过对应的允许标准进行比较来评估由于粉碎和破裂引起的混凝土的损伤。此外,研究了诸如碰撞角度,位置和速度的关键参数的影响。作为结果,混凝土墙的中心部分被确定为基于保守应变标准的最脆弱的,并且在速度下在该区域估计,无论冲击角如何。

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