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Nucleate pool boiling enhancement by ultrafast water permeation in graphene-nanostructure

机译:石墨烯-纳米结构中超快水渗透促进核池沸腾

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Nucleate boiling efficiency can be significantly enhanced using the nanostructured graphene surface. The wettability of the graphene nanoplatelets (GNPs) coated surface is tunable using thermal curing process. The uncured GNPs surface is hydrophobic in nature while the cured GNPs surface manifests a hydrophilic characteristic and the latter performs better than the former in the nucleate boiling regime. Ultimately the ultrafast water permeation property of the cured GNPs enhances the efficiency of nucleate pool boiling, leading to a maximum enhancement of 151% in the boiling heat transfer coefficient and 154% in the vapor mass flow rate. The boiling performance of the uncured GNPs surface is also enhanced despite its hydrophobicity. Hence, the enhancement in boiling is not solely attributed to the surface wettability. The enhancement is attributed to the fascinating ultrafast water permeation property of graphene on top of its nanoporous structure. The unimpeded fast water transport within the nanochannel-network of GNPs facilitates the fast absorption of latent heat of vaporization by the water molecules, leading to a substantial increase in the nucleation, growth and departure of vapor bubbles. We propose a new explanation on the role of graphene coating on nucleate pool boiling enhancement. This study provides important insights into the effects of ultrafast water permeation property of graphene on the nucleate boiling heat transfer.
机译:使用纳米结构的石墨烯表面可以显着提高核沸腾效率。石墨烯纳米片(GNP)涂层表面的润湿性可通过热固化工艺进行调节。未固化的GNPs表面本质上是疏水的,而固化的GNPs表面表现出亲水特性,并且后者在成核沸腾状态下比前者表现更好。最终,固化的GNP的超快透水性能提高了核池沸腾的效率,从而使沸腾传热系数最大提高了151%,蒸汽质量流量提高了154%。尽管具有疏水性,但未固化的GNP表面的沸腾性能也得到了提高。因此,沸腾的增强不仅仅归因于表面润湿性。增强归因于石墨烯在其纳米多孔结构之上的迷人的超快透水性能。 GNPs的纳米通道网络内不受阻碍的快速水传输,促进了水分子快速吸收汽化潜热,从而大大增加了汽泡的成核,生长和离开。我们提出了石墨烯涂层对核池沸腾增强作用的新解释。这项研究为石墨烯的超快透水性能对核沸腾传热的影响提供了重要的见识。

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