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首页> 外文期刊>International Journal of Heat and Mass Transfer >Condensation heat transfer enhancement in the presence of non-condensable gas using the interfacial effect of dropwise condensation
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Condensation heat transfer enhancement in the presence of non-condensable gas using the interfacial effect of dropwise condensation

机译:利用逐滴冷凝的界面效应,在不凝性气体存在下提高冷凝传热

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摘要

Heat transfer characteristics of dropwise condensation (DWC) were experimentally studied on a vertical plate for a variety of non-condensable gas (NCG) concentration, saturation pressure, and surface sub-cooling degree. As the heat transfer performance was dominated by the vapor diffusion process near the interface of the gas-liquid within the gas phase, the additional thermal resistance of the coating layer may not be strictly limited, a fluorocarbon coating was applied to promote dropwise condensation mode. Compared with the traditional filmwise condensation (FWC), heat and mass transfer with NCG can be enhanced with the dropwise condensation mode. In the present paper, the effect of condensate liquid resistance should not be regarded as the most vital factor to explain the results, but the vapor diffusion process. This is attributed to the liquid-vapor interfacial perturbation motion caused by coalescence and departure of condensate droplets. The results also demonstrated that the feature of droplets departure is the dominant factor for the steam-air condensation heat transfer enhancement.
机译:在各种非凝性气体(NCG)浓度,饱和压力和表面过冷度的垂直板上,对滴状冷凝(DWC)的传热特性进行了实验研究。由于在气相中气液界面附近的气相扩散过程决定了传热性能,因此涂层的附加热阻可能不受严格限制,因此采用了碳氟化合物涂层以促进逐滴冷凝模式。与传统的膜式冷凝(FWC)相比,采用逐滴冷凝模式可以增强NCG的传热和传质。在本文中,不应将冷凝液的阻力影响作为解释结果的最重要因素,而应将其视为蒸汽扩散过程。这归因于凝结液滴的聚结和离开引起的液-气界面微扰运动。结果还表明,液滴离开的特征是蒸汽-空气凝结传热增强的主要因素。

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