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Limited Enhancement of Subatmospheric Boiling on Treated Structured Surfaces With Biphilic Pattern

机译:具有双硅图案处理过的结构表面上的SubAtmospheric沸腾的有限增强

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摘要

Boiling heat transfer suffers deteriorations under subatmospheric conditions, which can be attributed to a shortage of viable nucleation sites at declining pressures. In this work, the possibility of enhancing low-pressure saturated boiling of water using a combination of wettability patterning and structural modifications was experimentally explored. The copper test surface, comprised of an array of circular "dimples" (0.3 mm in depth, 0.5 mm in diameter, and 3.0 mm in pitch), was spray-coated by polytetrafluoroethylene (PTFE) coatings so as to form a matching biphilic pattern with the surface cavities. The resulting dimpled biphilic surface showed appreciable heat transfer enhancement-with a maximum 60% increase of the average heat transfer coefficient of nucleate boiling compared with a flat biphilic surface-down to about 9.5 kPa. Further lowering the pressure to 7.8kPa, however, was found to lead to diminished performance gains. The visualization study of the bubble departure dynamics revealed signs of additional vapor trapping of the hydrophobic-coated cavities, which can induce uninterrupted bubble regeneration with zero waiting time and explain the qualified enhancement of subatmospheric boiling. Thanks to a potential secondary pinning of contact line inside the hydro-phobic cavities, incomplete bubble detachment could prevail at somewhat lower pressures than was otherwise possible without the dimple structure, leaving behind significantly more vapor residues. However, the vapor-trapping capacity was found to decrease with pressure, which provided clues with regard to the reduced efficacy of the surface at even lower pressures.
机译:沸腾的热量转移在亚底体条件下遭受劣化,这可能归因于在衰退下的可行成核位点的短缺。在这项工作中,通过实验探索使用润湿性图案化和结构修改的组合增强低压饱和水的可能性。由聚四氟乙烯(PTFE)涂层喷雾涂覆圆形“凹槽”阵列(深度深度为0.3mm,直径为3.0mm的0.5mm的铜,0.5mm和3.0mm),以形成匹配的双链图案用表面腔。得到的副脂硅表面显示出明显的热传递增强 - 与扁平的双硅表面降至约9.5kPa,最大60%的核心沸腾的平均传热系数增加。然而,发现进一步降低了7.8kPa的压力导致性能收益减弱。气泡脱离动力学的可视化研究揭示了疏水涂层腔的额外蒸汽捕获的迹象,其可以用零等待时间诱导不间断的气泡再生,并解释了子系统沸腾的合格增强。由于氢凤凰腔内的接触线的潜在次级钉扎,泡沫脱落的不完全泡沫脱落在略微较低的压力下可以占用,而不是无凹坑结构,留下显着的蒸汽残留物。然而,发现蒸汽捕获能力随压力降低,这提供了关于表面的降低效果在甚至更低的压力下的线索。

著录项

  • 来源
    《Journal of Heat Transfer》 |2021年第10期|101601.1-101601.12|共12页
  • 作者单位

    Degree Programs in Systems and Information Engineering The University of Tsukuba Tennodai 1-1-1 Tsukuba 305-8573 Japan;

    Department of Mechanical Engineering Kyushu University 744 Motooka Nishi-ku Fukuoka 819-0395 Japan;

    Department of Mechanical Engineering Kyushu University 744 Motooka Nishi-ku Fukuoka 819-0395 Japan;

    Department of Aeronautics and Astronautics Kyushu University 744 Motooka Nishi-ku Fukuoka 819-0395 Japan;

    Department of Mechanical Engineering Kyushu University 744 Motooka Nishi-ku Fukuoka 819-0395 Japan School of Engineering The University of Edinburgh The King's Buildings Mayfield Road Edinburgh EH9 3JL UK;

  • 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
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