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Self-shedding and sweeping of condensate on composite nano-surface under external force field: enhancement mechanism for dropwise and filmwise condensation modes

机译:外力作用下复合纳米表面上凝结物的自动脱落和清除:逐滴和膜状凝结模式的增强机制

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摘要

In this work, we propose the concept to use the hydrophilic or neutral surface for condensation heat transfer and to use the superhydrophobic surface for enhancement by self-shedding and sweeping of condensate. Molecular dynamics simulation results show that no matter the vapor condenses on the solid surface in dropwise or filmwise mode, the grown-up condensate self-sheds and falls off the superhydrophobic surface, sweeping the growing condensate on the condensing surface downstream. We characterize the dynamics of condensate that the continuous self-shedding and sweeping effectively remove the droplets from the solid surface in dropwise mode or thin the condensate film on the solid surface in filmwise mode, which significantly enhances the condensation heat transfer. We reveal that the mechanism for self-shedding is two-fold: (1) that the external force on condensate bulk defeats the adhesive force between the condensate and the solid surface triggers the self-shedding; (2) the release of the surface free energy of condensate promotes the self-shedding. We also reveal that the mechanism of heat transfer enhancement is essentially due to the timely suppression over the growing condensate bulk on the condensing surface through the self-shedding and sweeping. Finally, we discuss the possible applications.
机译:在这项工作中,我们提出了使用亲水性或中性表面进行冷凝传热,并使用超疏水性表面通过冷凝水的自脱落和清扫增强效果的概念。分子动力学模拟结果表明,无论蒸汽以滴落或薄膜方式冷凝在固体表面上,长大的冷凝物都会自流掉并掉落在超疏水性表面上,从而将不断增长的冷凝物吹扫到下游的冷凝面上。我们对冷凝物的动力学进行了表征,即连续的自动降落和吹扫以逐滴模式有效地将液滴从固体表面去除,或以薄膜方式将固体表面上的冷凝物膜变薄,从而显着增强了冷凝热传递。我们揭示了自脱落的机理有两个方面:(1)凝结水体上的外力使凝结水与固体表面之间的粘附力失效,从而引发自脱落。 (2)冷凝物表面自由能的释放促进了自身脱落。我们还揭示了传热增强的机理主要是由于通过自动降落和吹扫作用,及时抑制了冷凝面上不断增加的冷凝水体积。最后,我们讨论可能的应用。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Jie Sun; Hua Sheng Wang;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 8633
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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