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CFD in supercritical water-cooled nuclear reactor (SCWR) with horizontal tube bundles

机译:水平管束超临界水冷核反应堆(SCWR)的CFD

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摘要

The commercial CFD code STAR-CD 4.02 is used as a numerical simulation tool for flows in the supercritical water-cooled nuclear reactor (SCWR). The basic heat transfer element in the reactor core can be considered as round tubes and tube bundles. Reactors with vertical or horizontal flow in the core can be found. In a vertically oriented core, symmetric characters of flow and heat transfer can be found and two-dimensional analyses are often performed. However, in a horizontally oriented core the flow and heat transfer are fully three-dimensional due to the buoyancy effect. In this paper, horizontal tubes and tube bundles at SCWR conditions are studied. Special STAR-CD subroutines were developed by the authors to correctly represent the dramatic change in physical properties of the supercritical water with temperature. From the study of single round tubes, the Speziale quadratic non-linear high-Re k-e turbulence model with the two-layer model for near wall treatment is found to produce the best results in comparison with experimental data. In tube bundle simulations, it is found that the temperature is higher in the top half of the bundle and the highest tube wall temperature is located at the outside tubes where the flow rate is the lowest. The secondary flows across the bundle are highly complex. Their main effect is to even out the temperature over the area within each individual recirculation region. Similar analysis could be useful in design and safety studies to obtain optimum fuel rod arrangement in a SCWR.
机译:商业CFD代码STAR-CD 4.02用作超临界水冷核反应堆(SCWR)中流动的数值模拟工具。反应堆堆芯中的基本传热元件可以看作是圆管和管束。可以找到堆芯中具有垂直或水平流动的反应堆。在垂直取向的岩心中,可以发现流动和传热的对称特征,并且经常进行二维分析。但是,在水平取向的岩心中,由于浮力效应,流动和传热完全是三维的。本文研究了SCWR条件下的水平管和管束。作者开发了特殊的STAR-CD子例程,以正确表示超临界水的物理特性随温度的急剧变化。通过对单圆管的研究,发现与两层模型相近壁处理的Speziale二次非线性高Re k-e湍流模型与实验数据相比可产生最佳结果。在管束模拟中,发现管束顶部的温度较高,并且最高的管壁温度位于流速最低的外侧管上。捆绑中的次级流量非常复杂。它们的主要作用是使每个单独的再循环区域内整个区域的温度均匀。类似的分析可能在设计和安全性研究中很有用,以获得SCWR中最佳的燃料棒布置。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2011年第11期|p.4427-4433|共7页
  • 作者

    Zhi Shang; Simon Lo;

  • 作者单位

    Science and Technology Facilities Council, Daresbury Laboratory, Warrington WA4 4AD, UK;

    rnCD-adapco, Trident House, Basil Hill Road, Didcot 0X11 7HJ, UK;

  • 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

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