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Effect of particle size on surface-coating enhancement of pool boiling heat transfer

机译:粒度对池沸腾换热表面涂层增强的影响

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The enhancement of pool boiling heat transfer by copper-particle surface coatings is experimentally investigated, using the wetting dielectric fluid FC-72. In one technique, loose copper particles are placed on a heated copper surface to provide additional vapor nucleation sites in the cavities formed at particle-surface and particle-particle contact points, thereby enhancing boiling performance over a polished surface. This 'free-particle' technique is benchmarked against the more traditional technique of sintering a fixed layer of copper particles to the surface to enhance boiling heat transfer performance. The effect of particle size on the heat transfer performance is studied for particle diameters ranging from 45 μm to 1000 μm at a constant coating layer thickness-to-particle diameter ratio of approximately 4. The parametric trends in the boiling curve and the critical heat flux are compared between the two techniques, and the dominant boiling mechanisms influencing these trends are compared and contrasted. High-speed visualizations are performed to qualitatively assess the boiling patterns and bubble departure size/distribution, and thus corroborate the trends observed in the boiling curves. The measured wall superheat is significantly lower with a sintered coating compared to the free-particle layer for any given particle size and heat flux. Performance trends with respect to particle size, however, are remarkably similar for both enhancement techniques, and an optimum particle size of ~100 μm is identified for both free particles and sintered coatings. The free-particle technique is shown to offer a straightforward method to screen the boiling enhancement trends expected from different particulate layer compositions that are intended to be subsequently fabricated by sintering.
机译:使用润湿的介电液FC-72,通过实验研究了铜颗粒表面涂层对熔池沸腾传热的增强作用。在一种技术中,将松散的铜颗粒放置在加热的铜表面上,以在形成于颗粒表面和颗粒-颗粒接触点的空腔中提供额外的蒸汽成核点,从而提高抛光表面的沸腾性能。这种“自由粒子”技术与将铜粒子的固定层烧结到表面以提高沸腾传热性能的更传统的技术相对比。在恒定的涂层厚度与粒径之比约为4的情况下,研究了粒径对45μm至1000μm范围内粒径对传热性能的影响。沸腾曲线和临界热通量的参数趋势在两种技术之间进行比较,并比较和对比影响这些趋势的主要沸腾机理。进行高速可视化以定性评估沸腾模式和气泡离开尺寸/分布,从而证实沸腾曲线中观察到的趋势。对于任何给定的粒径和热通量,与自由颗粒层相比,烧结涂层测得的壁过热显着降低。然而,对于两种增强技术,关于粒径的性能趋势都非常相似,并且对于自由颗粒和烧结涂层,均确定了约100μm的最佳粒径。示出的自由粒子技术提供了一种直接的方法,以筛选预期由随后通过烧结制造的不同颗粒层组合物预期的沸腾增强趋势。

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