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Modeling of heat transfer coefficient for upward no-phase-change two-phase flow in inclined pipes

机译:在倾斜管道上向上无相变两相流的传热系数建模

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摘要

This study aims at developing a robust and theoretically-supported correlation of two-phase heat transfer coefficient for upward no-phase-change two-phase flow in inclined pipes based on the concept of extended Chilton-Colbum analogy. Firstly, a comprehensive literature survey was conducted to gather over 1800 experimental data and 12 correlations of two-phase heat transfer coefficient. The comparison results indicated that none of the existing correlations could predict the entire database satisfactorily. Then, the dependence of two-phase heat transfer enhancement ratio (or two-phase heat transfer multiplier) on liquid fraction, two-phase pressure drop multiplier and inclination angle was analysed, and the two-phase heat transfer coefficient correlation was developed. The performance assessment indicated that the newly-developed correlation could predict 95% of the experimental data within +/- 30% error with the mean absolute relative deviation of 12.9%. The newly-developed semi-theoretical correlation would be useful in designing no-phase-change two-phase heat transfer systems, such as petroleum pipelines and nuclear power plants.
机译:该研究旨在在基于延长的慈肠-Colbum类比的概念的概念中,在倾斜管道中制定稳健和理论上支持的两相传热系数的相关性。首先,进行了全面的文学调查,收集了超过1800个实验数据和12相传热系数的12个相关性。比较结果表明,没有一个现有的相关性可以令人满意地预测整个数据库。然后,分析了两相传热增强比(或两相传热乘法器)对液体分数,两相压降乘法器和倾斜角度的依赖性,并且开发了两相传热系数相关性。性能评估表明,新开发的相关性可以预测+/- 30%误差内的95%的实验数据,其平均绝对相对偏差为12.9%。新开发的半理论相关性在设计无相变两相传热系统中是有用的,例如石油管道和核电厂。

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