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表面润湿性对管状表面上雾和露水收集性能的影响。

The effects of surface wettability on the fog and dew moisture harvesting performance on tubular surfaces.

作者信息

Seo Donghyun, Lee Junghun, Lee Choongyeop, Nam Youngsuk

机构信息

Department of Mechanical Engineering, Kyung Hee University, Yongin 446-701, Korea.

出版信息

Sci Rep. 2016 Apr 11;6:24276. doi: 10.1038/srep24276.

Abstract

The efficient water harvesting from air-laden moisture has been a subject of great interest to address world-wide water shortage issues. Recently, it has been shown that tailoring surface wettability can enhance the moisture harvesting performance. However, depending on the harvesting condition, a different conclusion has often been reported and it remains unclear what type of surface wettability would be desirable for the efficient water harvesting under the given condition. Here we compare the water harvesting performance of the surfaces with various wettability under two different harvesting conditions-dewing and fogging, and show that the different harvesting efficiency of each surface under these two conditions can be understood by considering the relative importance of the water capturing and removal efficiency of the surface. At fogging, the moisture harvesting performance is determined by the water removal efficiency of the surface with the oil-infused surfaces exhibiting the best performance. Meanwhile, at dewing, both the water capturing and removal efficiency are crucial to the harvesting performance. And well-wetting surfaces with a lower barrier to nucleation of condensates exhibit a better harvesting performance due to the increasing importance of the water capture efficiency over the water removal efficiency at dewing.

摘要

从饱含水分的空气中高效收集水分一直是解决全球水资源短缺问题的一个备受关注的课题。最近,研究表明调整表面润湿性可以提高水分收集性能。然而,根据收集条件的不同,经常会报道出不同的结论,并且在给定条件下,对于高效收集水分而言,何种类型的表面润湿性最为理想仍不明确。在此,我们比较了在两种不同收集条件——结露和雾化条件下,具有不同润湿性的表面的水分收集性能,并表明通过考虑表面的水分捕获和去除效率的相对重要性,可以理解这两种条件下各表面不同的收集效率。在雾化条件下,水分收集性能由表面的水分去除效率决定,其中注入油的表面表现出最佳性能。同时,在结露条件下,水分捕获和去除效率对收集性能都至关重要。并且,由于在结露时水分捕获效率相对于水分去除效率的重要性增加,具有较低冷凝核化障碍的良好湿润表面表现出更好的收集性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6d0/4827126/2f1eedc1b958/srep24276-f1.jpg

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