首页> 外文期刊>The Structural Design of Tall and Special Buildings >A cross‐scale refined damage evolution analysis of large commercial aircraft crashing into a nuclear power plant
【24h】

A cross‐scale refined damage evolution analysis of large commercial aircraft crashing into a nuclear power plant

机译:大型商用飞机坠入核电站的跨尺度细化损伤演化分析

获取原文
获取原文并翻译 | 示例
           

摘要

Since the 9/11 attacks, whether nuclear power plants (NPPs) can withstand the malicious impact of large commercial aircraft has become a question that must be considered in the design phase. Refined model and fine-scale element reflect more accurately the failure procedure and behaviour. However, due to the exceedingly complex structure of NPP, the traditional meshing method requires a substantial number of geometric operations involving point, line, area, and volume, leading to a tedious modelling process and very high computational costs, as well as making it difficult to modify and optimize the model. This paper combines the scaled boundary finite element method with the octree technique to refine nuclear engineering damage evolution analysis and establish a refined numerical model of the Generation III+ NPP, considering the detailed equipment hatch, air intake, and internal steel containment vessel structures. Subsequently, the refined damage evolution analysis of a large commercial aircraft crashing into an NPP was developed. The mesh size sensitivity, impact region shape comparison, and the influence of different impact heights were discussed. The results indicate that the cross-scale refined meshing and analysis method provides a high-quality discrete grid with fewer elements. Furthermore, this method is highly flexible, more accurately simulating the damage evolution and gradual destruction process. We recommend future structural optimization for the air intake and conducting detailed analyses at this location. The cross-scale analysis method presented in this paper enables a rapid, refined simulation of a malicious impact by a large commercial aircraft. Additionally, it provides technical support for future studies of the responses of NPPs' internal structures, systems, and equipment under extreme earthquake and other disaster conditions.
机译:自从9/11攻击以来,核电厂(NPP)是否能够承受大型商用飞机的恶意影响已经成为设计阶段必须考虑的问题。改进的模型和精细的元素可以更准确地反映故障过程和行为。但是,由于NPP的结构极其复杂,因此传统的网格划分方法需要大量的几何运算,包括点,线,面积和体积,这将导致繁琐的建模过程和非常高的计算成本,并且使其困难修改和优化模型。本文将比例边界有限元方法与八叉树技术相结合,以完善核工程损伤演化分析,并考虑详细的设备舱口,进气口和内部钢制密闭容器结构,建立了III + NPP的改进数值模型。随后,开发了撞入核电厂的大型商用飞机的精细损伤演化分析。讨论了网孔尺寸敏感性,冲击区域形状​​比较以及不同冲击高度的影响。结果表明,跨尺度精细网格划分和分析方法提供了具有较少元素的高质量离散网格。此外,此方法具有很高的灵活性,可以更准确地模拟损坏的演变和逐渐的破坏过程。我们建议将来对进气口进行结构优化,并在此位置进行详细分析。本文介绍的跨尺度分析方法可以快速,精确地模拟大型商用飞机的恶意影响。此外,它为未来研究在极端地震和其他灾害条件下核电厂内部结构,系统和设备的响应提供了技术支持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号