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CFD code-to-code benchmarking on simulation of fire and smoke propagation for nuclear applications

机译:CFD代码对代码基准测试,用于核应用中的火和烟传播模拟

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摘要

The nuclear industry has seen an increased use of Computational Fluid Dynamics (CFD) technology as a high-fidelity tool for design-basis and beyond design-basis accident simulations. For fire hazards, detailed experimental investigation in a realistic environment is often impractical. Therefore, the use of an advanced 3D CFD modeling approach to predict smoke and fire propagation has risen, especially for nuclear power plant fire modeling applications. CFD simulations can include major contributing and mitigating mechanisms regarding the fire propagation and its consequences, in fine detail and under realistic geometry conditions. In addition, accurate simulations of unsteady 3D fire and smoke spread, in conjunction with evacuation analyses, can be used to establish effective emergency evacuation strategies. In the present study, the fire and smoke propagation in a main control room was modelled using Reynolds-Averaged Navier-Stokes Equation based two-equation turbulence models and a Large Eddy Simulation model implemented in a commercial CFD code, Siemens STAR-CCM+. The predictions from STAR-CCM+ were compared with those obtained in a previous study using the NIST Fire Dynamic Simulator (FDS) code. Although higher temperature was predicted at the fire source by STAR-CCM+, the current study predicted trends similar to the FDS results with some minor differences at the operator location. A follow-up study is currently underway to investigate the factors affecting the differences, including further assessment of codes against available benchmark experiments.
机译:核工业已经越来越多地将计算流体动力学(CFD)技术用作设计基础以及设计基础事故模拟之外的高保真工具。对于火灾隐患,在现实环境中进行详细的实验研究通常是不切实际的。因此,使用先进的3D CFD建模方法来预测烟雾和火势蔓延的趋势正在上升,尤其是对于核电厂的火场建模应用而言。 CFD模拟可以包括有关火灾蔓延及其后果的主要贡献和缓解机制,这些细节可以在细节上和在实际几何条件下进行。此外,可以将不稳定的3D火灾和烟雾蔓延的精确模拟与疏散分析一起用于建立有效的紧急疏散策略。在本研究中,使用基于雷诺平均Navier-Stokes方程的两方程湍流模型和在商业CFD代码Siemens STAR-CCM +中实现的大涡模拟模型对主控制室中的火灾和烟尘传播进行建模。将STAR-CCM +的预测与先前使用NIST火灾动态模拟器(FDS)代码进行的研究获得的预测进行了比较。尽管STAR-CCM +预测火源处的温度更高,但当前的研究预测的趋势类似于FDS结果,并​​且操作员位置略有不同。目前正在进行一项后续研究,以调查影响差异的因素,包括对照现有基准实验进一步评估代码。

著录项

  • 来源
    《Kerntechnik》 |2019年第6期|500-507|共8页
  • 作者单位

    Canadian Nuclear Laboratories Chalk River Ontario Canada K0 J 1P0;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:50:32

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