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Effects of microgravity on Marangoni convection and growth characteristic of a single bubble

机译:微重力对单个气泡Marangoni对流和生长特性的影响

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摘要

Based on previous experiments and the volume of fluid (VOF) multiphase model, the growth characteristics of a single bubble have been numerically investigated in a rectangular pool (10 × 10 × 25 mm~3) under microgravity. The transport of mass and energy during phase change was realized by source terms of the mass and energy equations through user-defined functions (UDF). Under microgravity, the results show that the temperature and the streamline field distribution around the bubble are significantly changed as compared to the ones of terrestrial conditions. The temperature profile at the two-phase interface is no longer a uniform distribution, and the Marangoni flows are more obvious at the two-phase interface. The effects of gravity on the detachment of the bubble are significant: the bubble does not immediately detach from the heating wall under microgravity conditions. The surface tension gradient caused by the Marangoni effect is more significant at lower microgravity. Bubble growth is more complex under microgravity conditions than normal gravity conditions, and it is related to the magnitude of the microgravity: the lower the microgravity, the higher the bubble growth rate. Furthermore, under microgravity, the bubble diameter changes differently, and the fluctuation amplitude of the heat transfer coefficient increases with increasing microgravity.
机译:基于先前的实验和流体体积(VOF)多相模型,在微重力作用下,对矩形气泡(10×10×25 mm〜3)中单个气泡的生长特性进行了数值研究。通过用户定义函数(UDF)通过质量和能量方程的源项来实现相变过程中质量和能量的传输。结果表明,与地面条件相比,微重力作用下气泡周围的温度和流线型场分布发生了显着变化。两相界面处的温度分布不再是均匀分布,并且在两相界面处的Marangoni流动更加明显。重力对气泡分离的影响非常明显:在微重力条件下,气泡不会立即从加热壁分离。由马兰戈尼效应引起的表面张力梯度在较低的微重力下更为显着。在微重力条件下,气泡的生长比正常重力条件更为复杂,并且与微重力的大小有关:微重力越低,气泡的生长速率越高。此外,在微重力下,气泡直径变化不同,并且随着微重力的增加,传热系数的波动幅度增大。

著录项

  • 来源
    《Acta astronautica》 |2014年第julaaauga期|129-139|共11页
  • 作者单位

    Key Laboratory of Low-grade Energy Utilization Technologies and Systems (Chongqing University), Ministry of Education, Chongqing 400044, China;

    Key Laboratory of Low-grade Energy Utilization Technologies and Systems (Chongqing University), Ministry of Education, Chongqing 400044, China;

    CNNC Key Laboratory on Nuclear Reactor Thermal Hydraulics Technology, Nuclear Power Institute of China, Chengdu 610041, China;

  • 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

    Microgravity; Bubble growth; VOF model;

    机译:微重力气泡增长;VOF模型;

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