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Gas stratification break-up by a vertical jet: Simulations using the GOTHIC code

机译:垂直射流造成的气体分层破裂:使用GOTHIC代码进行的模拟

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摘要

The capability assessment of three-dimensional computational tools to predict the erosion and the breakup of stratified conditions that can build-up in a containment through the release of hydrogen during an early phase of a hypothetical severe accident is the focus of intense research worldwide. In conjunction with the OECD SETH-2 project, the GOTHIC code is assessed against experiments in which mass and/or heat sources or sinks cause mixing. This paper reports on simulation results of selected experiments where the initial helium stratification in a vessel is eroded by a vertical jet originating from an injection below the initial density interface. A 3-D coarse mesh, as well as various finer 2-D meshes, is used to simulate the evolution of the helium distribution generated by jets having different initial momentum. In general, the 3-D calculations predict too slow mixing in the vessel and a reasonable agreement between calculated and measured gas concentrations can only be achieved with a sufficiently fine mesh. These results can be explained by comparing the calculated velocity field with that measured using the PIV technique, which also provides valuable insight into the mechanisms of the interaction between the jet and the density interface.
机译:三维计算工具的能力评估,以预测在假设性严重事故的早期阶段通过释放氢而在安全壳内累积的分层条件的腐蚀和破裂,是全世界范围内广泛研究的重点。结合OECD SETH-2项目,将根据质量和/或热源或热源引起混合的实验评估GOTHIC规范。本文报道了选定实验的模拟结果,在该实验中,垂直射流侵蚀了容器中的初始氦分层,该垂直射流源自初始密度界面以下的注入。使用3-D粗网格以及各种更精细的2-D网格来模拟由具有不同初始动量的射流产生的氦分布的演变。通常,3-D计算预测容器中的混合速度太慢,只有使用足够细的网格才能在计算出的气体浓度和测量到的气体浓度之间取得合理的一致。通过将计算出的速度场与使用PIV技术测得的速度场进行比较,可以解释这些结果,这也为深入了解射流与密度界面之间的相互作用机理提供了宝贵的见识。

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  • 来源
    《Nuclear Engineering and Design》 |2012年第8期|p.71-81|共11页
  • 作者单位

    Laboratory for Thermal-Hydraulics, Paul Scherrer Institut,5232 Villigen PSI,Switzerland;

    Paul Scherrer Institut(PSI), Villigen, Switzerland;

    Paul Scherrer Institut(PSI), Villigen, Switzerland;

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

  • 入库时间 2022-08-18 00:44:00

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