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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental and theoretical study of frost melting water retention on fin surfaces with different surface characteristics
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Experimental and theoretical study of frost melting water retention on fin surfaces with different surface characteristics

机译:不同表面特性的翅片表面融霜保水的实验和理论研究

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There is some frost melting water retention on the surface of fin-tube heat exchanger during defrosting process. It takes much time and energy to evaporate the retained water. In this paper, the effect of fin surface characteristic on frost melting water retention is investigated experimentally. Visualization experiment shows that fin surface characteristic has a significant influence on water retention. The retained water forms a thin water film on the hydrophilic fin, while only a few small spherical droplets stay on the superhydrophobic fin. The retained water mass of the superhydrophobic fin decreases by 79.82%, 75.82% and 66.15% compared with that of the hydrophilic, bare and hydrophobic fins, respectively. The frosting time over 30 min has a subtle effect on retained water mass of the hydrophobic and superhydrophobic fins. A mathematical model, which considers the surface contact angle and contact angle hysteresis, is further developed to predict the maximum retained droplet radius and retained water mass. The model is verified to be accurate when the contact angle lied in the range of 110-150 degrees. (C) 2015 Elsevier Inc. All rights reserved.
机译:除霜过程中,翅片管换热器的表面有一定的融霜水滞留。蒸发残留的水需要大量时间和精力。本文通过实验研究了翅片表面特性对融霜保水率的影响。可视化实验表明,翅片表面特性对保水率有很大影响。保留的水在亲水鳍片上形成薄水膜,而只有少数几个球形小滴留在超疏水鳍片上。与疏水性,裸露和疏水性鳍片相比,超疏水性鳍片的保留水量分别减少了79.82%,75.82%和66.15%。 30分钟以上的结霜时间对疏水性和超疏水性鳍片的残留水量有微妙的影响。进一步发展了一个数学模型,该模型考虑了表面接触角和接触角滞后现象,以预测最大保留液滴半径和保留水量。当接触角在110-150度范围内时,该模型经验证是准确的。 (C)2015 Elsevier Inc.保留所有权利。

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