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CFD analysis of thermal-hydraulic behavior of heavy liquid metals in sub-channels

机译:子通道中重液态金属热工行为的CFD分析

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摘要

CFD analysis was carried out for thermal-hydraulic behavior of heavy liquid metal flows, especially lead—bismuth eutectic, in sub-channels of both triangular and square lattices. Effect of various parameters, e.g. turbulence models and pitch-to-diameter ratio, on the thermal-hydraulic behavior was investigated. Among the turbulence models selected, only the second order closure turbulence models reproduce the secondary flow. For the entire parameter range studied in this paper, the amplitude of the secondary flow is less than 1 % of the mean flow. A strong anisotropic behavior of turbulence is observed. The turbulence behavior is similar in both triangular and square lattices. The average amplitude of the turbulent velocity fluctuation across the gap is about half of the shear velocity. It is only weakly dependent on Reynolds number and pitch-to-diameter ratio. A strong circumferential non-uniformity of heat transfer is observed in tight rod bundles, especially in square lattices. Related to the overall average Nusselt number, CFD codes give similar results for both triangular and square rod bundles. Comparison of the CFD results with bundle test data in mercury indicates that the turbulent Prandtl number for HLM flows in rod bundles is close to 1.0 at high Peclet number conditions, and increases by decreasing Peclet number. Based on the present results, the SSG Reynolds stress model with semi-fine mesh structures (y_1~+ < 15) is recommended for the application of HLM flows in rod bundle geometries.
机译:CFD分析是在三角形和方形晶格的子通道中对重金属液体流(尤其是铅铋共晶)的热工液压行为进行的。各种参数的影响,例如湍流模型和螺距与直径之比,研究了热工液压行为。在选定的湍流模型中,只有二阶闭合湍流模型可再现二次流。对于本文研究的整个参数范围,二次流量的幅度小于平均流量的1%。观察到强烈的各向异性湍流行为。在三角形和正方形格子中,湍流行为相似。整个间隙中湍流速度波动的平均幅度约为剪切速度的一半。它仅微弱地依赖于雷诺数和螺距直径比。在紧密的棒束中,尤其是在方格中,观察到了强烈的周向传热不均匀性。与总体平均Nusselt数相关,CFD代码对三角形和方形棒束给出相似的结果。 CFD结果与汞束测试数据的比较表明,在高Peclet数条件下,棒束中HLM流动的湍流Prandtl数接近1.0,并且通过降低Peclet数而增加。根据目前的结果,建议将半细网格结构(y_1〜+ <15)的SSG雷诺应力模型用于HLM流在棒束几何中的应用。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2006年第18期|p.1874-1885|共12页
  • 作者

    X. Cheng; N. I. Tak;

  • 作者单位

    School of Nuclear Science and Engineering, Shanghai Jiao Tong University, 1954 Hua Shan Road, Shanghai 200030, China;

  • 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 原子能技术;
  • 关键词

  • 入库时间 2022-08-18 00:46:54

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