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A STATE-OF-THE-ART REVIEW ON POOL BOILING ON NANOSTRUCTURE SURFACES

机译:纳米结构表面上的池沸腾的最先进的综述

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The differences in the heat transfer coefficient (HTC) and critical heat flux (CHF) behaviors between nanostructured and smooth surfaces are attributed to modifications on the surface wettability and capillarity effects through the porous matrix generated by the nanostructure layer. Both act in order of improving rewetting effects, explaining the CHF augmentation. The fact that the contact angle decreases is commonly considered to justify the HTC reduction for nanostructured surfaces. In this context, this study presents a critical review of the literature concerning the boiling phenomena on nanostructures surfaces. Care is exercised in order of characterizing the nanostructuring methods and compare heat transfer results obtained under almost similar conditions by different authors. Heat transfer mechanisms pointed in the literature as responsible for the heat transfer behaviors are also contrasted.
机译:纳米结构和光滑表面之间的传热系数(HTC)和临界热通量(CHF)行为的差异归因于通过纳米结构层产生的多孔基质对表面润湿性和毛细血管性效应的修改。两者都是提高重复效果的顺序,解释了CHF增强。一种事实,即接触角降低通常被认为是证明纳米结构表面的HTC还原。在这种情况下,该研究提出了对纳米结构表面沸腾现象的文献的关键综述。按照纳米结构方法表征纳米结构方法的顺序进行护理,并比较不同作者在几乎类似的条件下获得的传热结果。对传热行为负责的文献中指向的传热机制也形成对比。

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