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Investigation of Boiling Heat Transfer in Water using a Free-Particles-Based Enhancement Technique

机译:基于自由粒子的增强技术研究水中的沸腾传热

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摘要

Enhancement of pool boiling heat transfer in water by means of the introduction of free particles on the heated surface is investigated. The layer of loose particles on the heated surface is free to move and deform under the action of bulk liquid convection and vapor nucleation. High-speed visualizations show that bubble nucleation preferentially occurs at the narrow corner cavities formed between the free particles and the heated surface. The effects of the number and size of the free particles are experimentally explored using copper particles over a wide size range from tens of nanometers to 13 mm. Experimental results show that a mixture of free particle diameters of 3 mm and 6 mm provides the greatest improvement in boiling heat transfer, resulting in an average increase in heat transfer coefficient of 115% relative to a baseline polished surface without particles. A numerical heat transfer simulation and an analytical force balance model are developed to predict nucleation incipience and explain the parametric trends in boiling performance observed in the presence of the free particles.
机译:研究了通过在加热表面上引入游离颗粒来增强水中的沸腾沸腾传热。受热表面上的疏松颗粒层在本体液体对流和蒸汽成核作用下自由移动和变形。高速可视化显示气泡成核优先发生在自由颗粒和受热表面之间形成的狭窄角腔中。使用从几十纳米到13毫米的宽尺寸范围内的铜粒子,通过实验探索了自由粒子的数量和大小的影响。实验结果表明,自由粒径为3 mm和6 mm的混合物在沸腾传热方面提供了最大的改善,相对于没有颗粒的基线抛光表面,传热系数平均提高了115%。开发了数值传热模拟和分析力平衡模型,以预测成核开始并解释在存在自由颗粒的情况下观察到的沸腾性能的参数趋势。

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    Kim, T. Y.;

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  • 年度 2014
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