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An improved heat transfer model for steam-air mixture condensation with the curvature effect on vertical tubes

机译:一种改进的蒸汽 - 空气混合凝结传热模型,垂直管曲率效应

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摘要

The condensation heat transfer on the external surface of a vertical slender tube in the steam-air mixture environment was investigated. The condensation heat transfer was analyzed using various open experimental datasets. A new model for the steam condensation with noncondensable gases applicable to the tubular configuration was developed. The proposed model is based on the analogy between heat and mass transfer; in particular, the correlation incorporates the effects of tube curvature under turbulent free convection conditions together with the wavy film effect. In addition, the film-vapor interfacial temperature was used to calculate the heat transfer coefficient and various physical properties, through an iterative technique instead of the wall temperature, which is commonly used in experimental correlations for convenience. Thereafter, the effects of three correction factors were individually investigated. The wavy film effect considerably changed the condensation heat transfer, about 20% on average. The curvature effect was also found to make a meaningful effect according to the convection conditions. And, the adoption of interfacial temperature was found to make a maximum 7% adjustment, but it would make a more significant effect in high heat transfer conditions. Overall, the proposed model predicted the experimental datasets reasonably well, i.e., within ±30% accuracy.
机译:研究了蒸汽空气混合物环境中垂直细长管的外表面上的冷凝传热。使用各种开放的实验数据集分析冷凝热传递。开发了一种适用于管状构造的不可调味气体的蒸汽冷凝模型。所提出的模型基于热量和传质之间的类比;特别地,相关性包括管曲率在湍流的游离对流条件下的影响以及波浪膜效应。另外,通过迭代技术代替壁温来使用膜 - 蒸汽界面温度来计算传热系数和各种物理性质,这通常用于方便的实验相关性。此后,单独研究三种校正因子的影响。波浪薄膜效果显着改变了冷凝传热,平均约20%。还发现曲率效应根据对流条件进行有意义的效果。并且,发现界面温度的采用最高可调节7%,但它将在高传热条件下产生更大的影响。总的来说,所提出的模型预测了实验数据集,即在±30%的精度范围内。

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