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Performance enhancement of subcooled flow boiling on graphene nanostructured surfaces with tunable wettability

机译:具有可调谐润湿性的石墨烯纳米结构表面上沸腾流量沸腾的性能提高

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摘要

Modifying the surface wettability at the solid-liquid interface can significantly improve flow boiling heat transfer. The graphene nanoplatelets (GNPs) and epoxy additives form nanocomposites coatings with tunable wettability (superhydrophilic, superhydrophobic and hydrophobic) via a thermal curing process. They are applied for enhancing the subcooled flow boiling heat transfer in a minichannel. By comparing with the uncoated surface, the superhydrophilic GNPs coating shows the highest boiling heat transfer coefficient with a maximum enhancement of 64.9 %. The nanocapillary-networks of the superhydrophilic GNPs coatings facilitate the fast water permeation effect and induce an effective filmwise boiling heat transfer. Moreover, the superhydrophilic GNPs coatings facilitate bubble detachment process and suppress the formation of dry spot during the boiling process. On the contrary, the hydrophobic and superhydrophobic GNPs coatings act as impervious blankets for the intercalation of water and deteriorate the flow boiling rates. The effects of the subcooled degree and the mass flux of the bulk flow on the performance enhancement are also investigated. This study aims to investigate the flow boiling enhancement attributed to the graphene functionalized coatings and provides interesting insights of the ultrafast water permeation mechanism of graphene into the subcooled flow boiling heat transfer.
机译:在固液界面处改变表面润湿性可以显着提高流量沸腾热传递。石墨烯纳米纳米键(GNPS)和环氧添加剂通过热固化方法形成具有可调谐润湿性(超银,超疏水和疏水性)的纳米复合材料涂层。它们应用于提高百小义烷基中的亚冷流量沸腾热传递。通过与未涂覆的表面进行比较,超硫酸基GNPS涂层显示出最高沸腾的传热系数,最大增强为64.9%。过硫基GNPS涂层的纳米咖啡瘤网络促进了快速的水渗透效果,并诱导有效的胶片沸腾热传递。此外,超硫酸的GNPS涂层促进了气泡脱离过程,抑制了沸腾过程中干燥点的形成。相反,疏水性和超疏水性GNPS涂层充当水的不透水毯,脱落流量沸腾速率。还研究了过冷程度和散装流量对性能增强的质量通量的影响。本研究旨在研究归因于石墨烯官能化涂料的流沸腾增强,并提供石墨烯超快水渗透机制进入过冷却流沸腾热转移的有趣见解。

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