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首页> 外文期刊>International Journal of Thermophysics >Experimental Study on Condensation Heat Transfer of Ethanol-Water Vapor Mixtures on Vertical Micro-tubes
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Experimental Study on Condensation Heat Transfer of Ethanol-Water Vapor Mixtures on Vertical Micro-tubes

机译:立式微管上乙醇-水蒸气混合物冷凝传热的实验研究

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摘要

The paper presents an experimental investigation of Marangoni condensation heat transfer of ethanol-water vapor mixtures on vertical micro-tubes with an outer diameter of 0.793 mm, 1.032 mm, and 1.221 mm. Experiments were performed over a wide range of ethanol mass fractions in vapor mixtures for different vapor velocities and pressures. Condensation heat transfer coefficients behaved nonlinear characteristics, increased, and then decreased with increasing vapor-to-surface temperature difference. Under the same experimental conditions, the condensation heat transfer coefficient at a 2 % ethanol mass fraction in vapor was the highest. At low ethanol mass fractions, the condensation heat transfer coefficient of the ethanol-water vapor mixture was 2 to 3 times greater than that for pure steam. The effect of vapor pressure and velocity on condensation heat transfer suggested a positive tendency on each micro-tube for all vapor mixtures with different ethanol mass fraction. Results showed that condensation heat transfer coefficients on micro-tubes with a diameter of 1.032 mm were higher than those on the other two micro-tubes, suggesting that there existed a critical diameter which gave the largest condensation heat transfer coefficient.
机译:本文介绍了在外径为0.793 mm,1.032 mm和1.221 mm的垂直微管上,乙醇-水蒸气混合物的Marangoni冷凝传热的实验研究。针对不同的蒸气速度和压力,在蒸气混合物中的多种乙醇质量分数上进行了实验。冷凝传热系数表现出非线性特征,随着蒸汽与表面温度差的增加而增加,然后降低。在相同的实验条件下,蒸汽中乙醇质量分数为2%时的冷凝传热系数最高。在低乙醇质量分数下,乙醇-水蒸气混合物的冷凝传热系数比纯蒸汽大2至3倍。蒸气压力和速度对冷凝传热的影响表明,对于每个具有不同乙醇质量分数的蒸气混合物,每个微管都有正向趋势。结果表明,直径为1.032 mm的微管上的冷凝传热系数高于其他两个微管,这表明存在一个临界直径,该临界直径提供了最大的冷凝传热系数。

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