首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal-flow patterns of m = 1 in thermocapillary liquid bridges of high aspect ratio with free-surface heat transfer
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Thermal-flow patterns of m = 1 in thermocapillary liquid bridges of high aspect ratio with free-surface heat transfer

机译:M = 1的热流动模式在热量的高纵横比与自由表面传热中的热流动桥接

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摘要

We investigate the thermal-flow patterns induced by the thermocapillary effect and their transition conditions in half-zone liquid bridges of high Prandtl number fluid; the effect of heat transfer between the liquid and the ambient gas through the liquid-bridge free surface is considered. We especially focus on the standing-wave-type oscillations after the transition onset, which were observed more frequently in the microgravity experiments (Matsugase et al., Int. J. Heat Mass Trans. (2015)) than the ground experiments, in a tall or high-aspect-ratio liquid bridge. We conduct a series of three-dimensional numerical simulations with the straight liquid bridge against a range of Biot number, and reproduce a pair of thermal waves of azimuthal wave number m = 1 propagating in opposite azimuthal directions under large Biot-number conditions by increasing the thermocapillary effect. Through a series of ground experiments with the liquid bridge exposed to the forced flow of the ambient gas, we illustrate the thermal-flow patterns of m = 1 and their transition conditions in terms of the Reynolds number for the forced flow of the ambient gas. We succeed in reproducing by both of experimental and numerical approaches the standing-wave-type oscillatory flows with 'x'-shaped low temperature bands on the free surface, which had been observed only in long-term microgravity experiments. We illustrate that the 'x'-shaped structure is realized by the higher azimuthal modal structures of the oscillatory convection.
机译:我们研究了热流量效应引起的热流动模式及其在高Prandtl数流体的半区液体桥中的过渡条件;考虑了通过液体桥自由表面之间的热传递与环境气体之间的热传递的影响。在过渡开始后,我们特别关注常设波型振荡,在微匍匐实验中更频繁地观察到(Matsugase等,int。J. Meat Mass Trans。(2015))比地面实验更常见高宽高的液体桥。我们用直线液体桥进行一系列三维数值模拟,与一系列Biot数,并通过增加大的Biot的条件在相反的方位角方向上传播的四方波数M = 1的一对热波。通过增加热毛细血管效应。通过将液体桥暴露于环境气体的液体桥的一系列接地实验,我们示出了M = 1的热流动模式及其过渡条件,以便雷诺数用于环境气体的强制流动。我们通过两种实验和数值方法成功地再现了常设波型振荡流动与自由表面上的X'形低温带,仅在长期微匍匐实验中被观察到。我们说明了“X形结构”通过振荡对流的较高方位角模态结构实现。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第7期|121196.1-121196.13|共13页
  • 作者单位

    Division of Mechanical Engineering Graduate School of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-8510 Japan;

    Division of Mechanical Engineering Graduate School of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-8510 Japan;

    Division of Mechanical Engineering Graduate School of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-8510 Japan;

    Division of Mechanical Engineering Graduate School of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-8510 Japan;

    Division of Mechanical Engineering Graduate School of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-8510 Japan Nuclear Safety Research Center Japan Atomic Energy Agency Japan;

    Department of Mechanical Engineering Faculty of Science and Technology Tokyo University of Science Japan;

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

    Therrnocapillary-driven convection; Half-zone liquid bridge; Hydrothermal wave; Standing wave; Interfacial heat transfer;

    机译:Therrnocapillary驱动的对流;半区液体桥;水热波;常设波;界面传热;

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