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Heat transfer model based on diffusion layer theory for dropwise condensation with high non-condensable gas

机译:基于扩散层理论的传热模型用高度可冷凝气体滴凝

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A new heat-transfer model for dropwise condensation with non-condensable gas (NCG) is developed, which can be used in the design and calculations of a dehumidifier in humidification–dehumidification technology. A single-droplet heat-transfer model is established via the rounded analysis of all the contributing thermal resistances based on the diffusion-layer theory. Combined with the drop size distribution, the heat flux of dropwise condensation with NCG is determined, and the error between the predicted results and previous experimental data is found to be within ±20%. The effects of different parameters on the heat transfer of dropwise condensation with NCG are investigated, and the results indicate that there is an optimal contact angle to maximize the heat flux, which depends on the NCG content. The thickness of the coating layer has little effect on the heat flux at a given thermal conductivity of the coating layer, indicating that the dropwise condensation effect can be improved by increasing the thickness of the coating layer, neglecting the heat-transfer deterioration due to the additional thermal resistance during dropwise condensation with NCG.
机译:开发了一种新的传热模型,用于逐脱液缩合(NCG),可用于加湿除湿技术中除湿器的设计和计算。通过基于扩散层理论的所有贡献热阻的圆形分析来建立单液滴传热模型。结合滴定尺寸分布,确定逐滴冷凝的热通量确定,预测结果与先前的实验数据之间的误差在±20%范围内。研究了不同参数对NCG滴加缩小的热传递的影响,结果表明存在最佳的接触角来最大化热通量,这取决于NCG含量。涂层的厚度对涂层的给定导热率的热通量几乎没有影响,表明通过增加涂层的厚度可以提高滴加缩合效果,忽略了由于涂层的厚度逐滴冷凝与NCG脱模的额外热阻。

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