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Pool boiling and flow boiling on micro- and nanostructured surfaces

机译:微结构和纳米结构表面上的池沸腾和流沸腾

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摘要

This study reviews recent experimental investigations performed on pool and flow boiling over nano- and micro engineered structures for enhancements in boiling heat transfer, namely heat transfer coefficient (HTC) and critical heat flux (CHF). Modified surfaces having nano/micro porous features of mainly irregular shapes through anodic oxidation processes, coating of metallic and non-metallic layers, deposition of powder materials, and roughening for improving boiling heat transfer have been of research interests of many researchers. In addition, pool boiling and flow boiling studies on artificial structures, mainly fabricated on a plain surface, such as pins, pillar fins, grooves (in different shapes, i.e. rectangular, square, cylinder, etc.) for increasing the heated surface area, or cavities created on substrates for increasing bubble nucleation sites were also considered for both micro and nano scale. The results reported in recent investigations on pool boiling and flow boiling from microanostructured surfaces were included, and a comprehensive overview was provided. (C) 2015 Elsevier Inc. All rights reserved.
机译:这项研究回顾了最近对纳米和微工程结构上的池和​​流沸腾进行的实验研究,以增强沸腾传热,即传热系数(HTC)和临界热通量(CHF)。通过阳极氧化工艺,金属和非金属层的涂层,粉末材料的沉积以及用于改善沸腾传热的粗糙化,具有主要具有不规则形状的纳米/微孔特征的改性表面已经成为许多研究人员的研究兴趣。此外,还对人造结构进行池沸腾和流沸腾研究,这些人造结构主要制造在平面上,例如销,柱状鳍片,凹槽(呈不同形状,即矩形,正方形,圆柱体等),以增加加热的表面积,在微米和纳米尺度上,也考虑了在基底上产生的用于增加气泡成核位点的空腔。包括了最近研究中从微/纳米结构表面进行的池沸腾和流沸腾研究的结果,并提供了全面的概述。 (C)2015 Elsevier Inc.保留所有权利。

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