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Hierarchical microcavity topography for enhancement of water vapor condensation heat transfer by regulating droplet dynamics and droplet size distribution

机译:分层微腔地形,通过调节液滴动力学和液滴尺寸分布来提高水蒸气凝结热传递

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Manipulating droplet dynamics is of great importance in condensation heat transfer enhancement. Cavity topography was believed to be able to regulate droplet merging and self-removal via Laplace force imbalance by the cavity wall and the effect of spatial confnement and isolation. However, the size effect of the microcavity on the droplet dynamics behavior, droplet size distribution and condensation heat transfer performance are not suffciently understood. In this paper, hierarchical microcavity-arrayed superhydrophobic surfaces with a nominal cavity diameter of 20, 35, 50 and 70 μm were fabricated. Condensation experiments were first carried out in the atmosphere under an optical microscope, and then in pure steam in a self-designed environmental chamber at 4000 Pa. Local dynamic behaviors and time-lapsed evolutions of droplets during condensation were observed. Droplet size distribution and jumping rate were statistically analyzed using ImageJ software. It was proved the smaller cavity size of 20 μm is benefcial to facilitate condensate droplet jumping and increase the density of small droplets. The surface coverage ratio on the microcavity-arrayed superhydrophobic surfaces was only half of that on the hydrophobic surface at steady state. Enhancement of pure steam condensation heat transfer can be realized by effectively regulating droplet dynamics using microcavity topographies at limited subcooling degrees.
机译:操纵液滴动力学在冷凝传热增强方面具有重要意义。据信腔形地形化能够通过腔壁的拉普拉斯力不平衡来调节液滴合并和自去除,以及空间腹部腹膜和隔离的影响。然而,没有张少到上理解微腔对液滴动力学行为,液滴尺寸分布和冷凝传热性能的尺寸效应。在本文中,制造了具有20,35,50和70μm的标称腔直径的分层微腔谐振的超疏水表面。首先在光学显微镜下的大气中进行缩合实验,然后在4000Pa的自行设计环境室中的纯蒸汽中进行。观察到局部动态行为和液滴在液滴期间的时间流逝。使用imagej软件统计分析液滴尺寸分布和跳跃速率。事实证明,较小的腔体尺寸为20μm是有益的,以促进冷凝水滴跳跃并增加小液滴的密度。微腔谐气的超疏水表面上的表面覆盖率仅为稳定状态下的疏水表面上的一半。通过在有限的过冷度下使用微腔地形进行有效调节液滴动力学,可以实现纯蒸汽冷凝传热的增强。

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