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首页> 外文期刊>International Journal of Heat and Mass Transfer >Effects of surface temperature and wettability on explosive boiling of nanoscale water film over copper plate
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Effects of surface temperature and wettability on explosive boiling of nanoscale water film over copper plate

机译:铜板上纳米级水膜爆炸沸腾的表面温度和润湿性的影响

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摘要

Surface temperature and wettability can synergistically affect the performance of explosive boiling which is important for many industrial processes. This work investigated the explosive boiling of water film over copper surfaces with different wettability under various surface temperature conditions. The results show that the water molecules on the hydrophilic surfaces have higher temperatute gradient and initial heat flux, shorter onset time of boiling, and lower Kapitza resistance than those on the hydrophobic surface. Meanwhile, the temperature gradient, the heat flux in the water films, and the onset time of explosive boiling are promoted by elevating the surface temperature. These indicate that the hydrophilic surface under high surface temperature conditions is most favorable for enhancing the explosive boiling heat transfer. Analysis of the onset of boiling reveals that the effect of wettability on the explosive boiling is more prominent under low surface temperatures but is limited under high surface temperatures. This work provides insights into the mechanisms of liquid molecules behaviors on plate surfaces with different wettability and surface temperatures for phase-change heat transfer enhancement and process intensification.
机译:表面温度和润湿性可以协同影响爆炸性沸腾的性能,这对于许多工业过程很重要。这项工作调查了在各种表面温度条件下具有不同润湿性的铜表面上的水膜爆炸性沸腾。结果表明,亲水表面上的水分子具有较高的温度梯度和初始热通量,沸腾的起始时间较短,并且降低了比疏水表面上的耐胰腺炎。同时,通过升高表面温度来促进温度梯度,水膜中的热通量,以及爆炸性沸腾的起始时间。这些表明高表面温度条件下的亲水表面最有利,用于增强爆炸性沸腾热传递。煮沸发作的分析表明,在低表面温度下,润湿性对爆炸性沸腾的影响更为突出,但在高表面温度下受到限制。这项工作提供了对板表面上具有不同润湿性和表面温度的液体分子行为机制的见解,用于相变传热增强和过程强化。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第12期|120375.1-120375.8|共8页
  • 作者

    Pu Bai; Leping Zhou; Xiaoze Du;

  • 作者单位

    Key Laboratory of Power Station Energy Transfer Conversion and System (North China Electric Power University) Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System (North China Electric Power University) Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key Laboratory of Power Station Energy Transfer Conversion and System (North China Electric Power University) Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 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

    Molecular dynamics; Wettability; Temperature; Explosive boiling; Thin film;

    机译:分子动力学;润湿性;温度;爆炸沸腾;薄膜;

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