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Flow boiling heat transfer on nanowire-coated surfaces with highly wetting liquid

机译:高润湿性液体在纳米线涂层表面的流沸腾传热

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摘要

Owing to the recent advances in nanotechnology, one significant progress in energy technology is increased cooling ability. It has recently been shown that nanowires can improve pool boiling heat transfer due to the unique features such as enhanced wetting and enlarged nucleation sites. Applying such nanowires on a flow boiling, which is another major class of boiling phenomenon that is associated with forced convection, is yet immature and scarce despite its importance in various applications such as liquid cooling of energy, electronics and refrigeration systems. Here, we investigate flow boiling heat transfer on surfaces that are coated with SiNWs (silicon nanowires). Also, we use highly-wetting dielectric liquid, FC-72, as a working fluid. An interesting wetting behavior is observed where the presence of SiNWs reduces wetting and wicking that in turn leads to significant decrease of CHF (critical heat flux) compared to the plain surface, which opposes the current consensus. Also, the effects of nanowire length and Reynolds number on the boiling heat transfer are shown to be highly nonmonotonic. We attempt to explain such an unusual behavior on the basis of wetting, nucleation and forced convection, and we show that such factors are highly coupled in a way that lead to unusual behavior.
机译:由于纳米技术的最新发展,能源技术的一项重大进步是提高了冷却能力。近来已显示出纳米线由于诸如增强的润湿和扩大的成核位点的独特特征而可以改善池沸腾的热传递。尽管将这种纳米线应用于与强制对流有关的另一类主要的沸腾现象,即沸腾沸腾,但它在诸如能源,液体冷却,能源,电子设备和制冷系统等各种应用中的重要性,仍未成熟和稀缺。在这里,我们研究了用SiNW(硅纳米线)覆盖的表面上的沸腾传热。另外,我们使用高度润湿的介电液FC-72作为工作流体。与普通表面相比,观察到一种有趣的润湿行为,其中SiNW的存在减少了润湿和芯吸,进而导致CHF(临界热通量)显着降低。而且,纳米线长度和雷诺数对沸腾传热的影响显示为高度非单调的。我们试图基于润湿,成核和强制对流来解释这种异常行为,并且我们表明,这些因素以导致异常行为的方式高度耦合。

著录项

  • 来源
    《Energy 》 |2014年第11期| 428-435| 共8页
  • 作者单位

    Department of Mechanical Engineering, Yonsei University, Seoul 120-749, South Korea;

    Department of Mechanical Engineering, Yonsei University, Seoul 120-749, South Korea;

    Department of Mechanical Engineering, Yonsei University, Seoul 120-749, South Korea;

    Department of Mechanical Engineering, Yonsei University, Seoul 120-749, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Boiling heat transfer; Forced convection; Nanowire; Wetting; Bubble nucleation;

    机译:沸腾传热;强制对流;纳米线;润湿;气泡成核;

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