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首页> 外文期刊>International communications in heat and mass transfer >Enhanced flow boiling heat transfer characteristics of R134a on graphene-Cu nanocomposite coating on copper substrate
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Enhanced flow boiling heat transfer characteristics of R134a on graphene-Cu nanocomposite coating on copper substrate

机译:铜基石墨烯-铜纳米复合涂层上R134a的增强的沸腾传热特性

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摘要

This study presents the flow boiling heat transfer characteristics of graphene-Cu nanocomposite coated copper surfaces. First, recently reported studies regarding efforts to enhance flow boiling heat transfer are discussed, then related studies on the impacts of using nanocomposite coated surfaces on flow boiling heat transfer characteristics are reviewed. Experimental investigations explore the effects of graphene concentration and feed mass flux of a refrigerant (R134a) on the heat flux and the heat transfer coefficient. The test chamber is a rectangular channel of 60 mm width, 3 mm height, and 460 mm length, and the dimensions of the graphene-Cu composite test plates are 10 mm x 10 mm. The feed mass fluxes used in the experiments are 240 and 480 kg/m(2)s, while the wall heat flux are varied from 0.1 to 20 W/cm(2). Based on the experimental analysis, the heat flux slightly increased before the onset of nucleating bubbles. Subsequently, the values drastically increased as the wall superheat continued to increase. Additionally, in experiments with higher graphene concentration, higher heat flux and heat transfer coefficient were demonstrated, and the increase in feed mass flux promoted flow boiling heat transfer.
机译:这项研究提出了石墨烯-铜纳米复合涂层铜表面的沸腾传热特性。首先,讨论了最近有关增强流沸腾传热的研究报告,然后综述了有关使用纳米复合涂层表面对流沸腾传热特性的影响的相关研究。实验研究探索了石墨烯浓度和制冷剂(R134a)的进料质量通量对热通量和传热系数的影响。测试室是宽度为60 mm,高度为3 mm,长度为460 mm的矩形通道,石墨烯-Cu复合材料测试板的尺寸为10 mm x 10 mm。实验中使用的进料质量通量为240和480 kg / m(2)s,而壁热通量在0.1至20 W / cm(2)之间变化。根据实验分析,在产生成核气泡之前,热通量略有增加。随后,随着壁过热持续增加,该值急剧增加。另外,在具有较高石墨烯浓度的实验中,证明了较高的热通量和热传递系数,并且进料质量通量的增加促进了流动沸腾热传递。

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