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Flow structure and bubble characteristics of steam-water two-phase flow in a large-diameter pipe

机译:大直径管道中汽水两相流的流动结构和气泡特性

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摘要

The flow structure and bubble characteristics of steam-water two-phase upward flow were observed in a vertical pipe 155 mm in inner diameter. Experiments were conducted under volumetric flux conditions of J_G < 0.25 m s~(-1) and J_L <0.6 m s~(-1), and three different inlet boundary conditions to investigate the developing state of the flow. The radial distributions of flow structure, such as void fraction, bubble chord length and gas velocity, were obtained by horizontally traversing optical dual void probes through the pipe. The spectra of bubble chord length and gas velocity were also obtained to study the characteristics of bubbles in detail. Overall, an empirical database of the multi-dimensional flow structure of two-phase flow in a large-diameter pipe was obtained. The void profiles converged to a so-called core-shaped distribution and the flow reached a quasi-developed state within a relatively short height-to-diameter aspect ratio of about H/D = 4 compared to a small-diameter pipe flow. The PDF histogram profiles of bubble chord length and gas velocity could be approximated fairly well by a model function using a gamma distribution and log-normal distribution, respectively. Finally, the correlation of Sauter mean bubble diameter was derived as a function of local void fraction, pressure, surface tension and density. With this correlation, cross sectional averaged bubble diameter was predicted with high accuracy compared to the existing constitutive equation mainly being used in best-estimate codes.
机译:在内径为155mm的垂直管中观察到了蒸汽-水两相向上流动的流动结构和气泡特性。在J_G <0.25 m s〜(-1)和J_L <0.6 m s〜(-1)的体积通量条件下以及三种不同的入口边界条件下进行实验,以研究流动的发展状态。通过沿光学双空隙探头水平穿过管道获得流动结构的径向分布,例如空隙率,气泡弦长度和气体速度。还获得了气泡弦长和气体速度的光谱,以详细研究气泡的特性。总体上,获得了大直径管道中两相流多维流动结构的经验数据库。空隙轮廓收敛到所谓的芯形分布,并且与小直径管道流相比,在大约H / D = 4的相对短的高度直径纵横比下,流达到了近似展开状态。通过使用伽玛分布和对数正态分布的模型函数,可以很好地近似估计气泡弦长度和气体速度的PDF直方图轮廓。最后,得出索特平均气泡直径的相关性是局部空隙率,压力,表面张力和密度的函数。通过这种相关性,与主要用于最佳估计代码中的现有本构方程相比,可以准确地预测横截面平均气泡直径。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2002年第3期|p.267-281|共15页
  • 作者单位

    Nuclear Energy System Department, Central Research Institute of Electric Power Industry, 2-11-1 Iwadokita, Komae-shi, Tokyo 201-8511, Japan;

  • 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 00:49:41

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