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Experimental research of bubble number density and bubble size in narrow rectangular channel under rolling motion

机译:滚动运动下窄矩形通道内气泡数密度和气泡尺寸的实验研究

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摘要

Bubble number density and bubble size are two important parameters in the research of subcooled flow boiling and the channel power of water-cooled nuclear reactor are greatly affected by the two parameters through the neutron feedback caused by the variation of local void fraction. By using the high speed camera in combination with the digital image processing technology, the bubble number density and bubble mean diameter in an up-flow narrow rectangular channel under rolling motion are experimentally researched. Experimental results indicate that the bubble number density and the bubble mean diameter under rolling motion periodically fluctuated with the same period as that of the rolling motion. The camera captured bubbles consisted of sliding bubbles coming from the upstream flow and nucleation bubbles emerging in the scope of the observing window. Variations of the bubble mean diameters under rolling motion are analyzed by the distribution of the bubble diameters. Both the diameters of sliding bubbles and nucleation bubbles periodically changed under the effect of the rolling motion, and the two kinds of bubble share the same variation trend. The fluctuation amplitude of the bubble number density and the bubble mean diameter is determined by the rolling period and amplitude. The fluctuation amplitudes of the above two parameters are intensified by the rolling amplitude, whereas the effect of the rolling period is weak. At the same time, local pressure, wall temperature and local fluid velocity oscillated periodically in the rolling motion. Effect of the fluid velocity oscillation can be neglected due to its tiny fluctuation amplitude in this research. Variation of the effective wall superheat induced by the change of wall temperature and local pressure is the main reason accounting for the fluctuation of bubble parameters under rolling motion.
机译:气泡数密度和气泡大小是过冷流沸腾研究中的两个重要参数,水冷核反应堆的通道功率受局部空隙率变化引起的中子反馈的影响而受到两个参数的极大影响。通过结合使用高速相机和数字图像处理技术,实验研究了在滚动运动下向上流动的窄矩形通道中的气泡数密度和气泡平均直径。实验结果表明,滚动运动下的气泡数密度和气泡平均直径与滚动运动的周期周期性地波动。摄像机捕获的气泡由上游流动的滑动气泡和观察窗范围内出现的成核气泡组成。通过气泡直径的分布来分析在滚动运动下的气泡平均直径的变化。滑动气泡和成核气泡的直径都在滚动运动的作用下周期性变化,并且两种气泡具有相同的变化趋势。气泡数密度和气泡平均直径的波动幅度由轧制周期和幅度确定。上述两个参数的波动幅度通过滚动幅度而增大,而滚动周期的影响较弱。同时,局部压力,壁温和局部流体速度在滚动运动中周期性地振荡。由于其波动幅度很小,因此可以忽略流体速度振荡的影响。由壁温和局部压力的变化引起的有效壁过热的变化是解释滚动运动下气泡参数波动的主要原因。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2014年第3期|41-50|共10页
  • 作者单位

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Heilongjiang 150001, PR China;

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Heilongjiang 150001, PR China;

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Heilongjiang 150001, PR China;

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, Heilongjiang 150001, PR 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
  • 关键词

    Rolling motion; Bubble size; Bubble number density; Narrow rectangular channel; Ocean condition;

    机译:滚动运动;气泡大小;气泡数密度;狭窄的矩形通道;海洋条件;

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