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Correlation of heat transfer coefficient for two-component two-phase slug flow in a vertical pipe

机译:垂直管中双组分两相块块流的传热系数的相关性

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摘要

The prediction of heat transfer coefficient for gas-liquid two-phase flows in vertical pipes is important for designing many industrial and engineering apparatuses such as nuclear power plants, solar collectors and petroleum pipelines. The mechanism of two-component two-phase heat transfer is more complicated than that of single-phase heat transfer. This study aims at developing a robust correlation of heat transfer coefficient for two-component two-phase slug flows in vertical pipes. The theoretical framework for the correlation development is inspired by considering classic Reynolds and Chilton-Colburn analogies. The framework demonstrates that the functional dependence of the two-component two-phase heat transfer coefficient on a void fraction or a two-phase multiplier is expressed by the Reynolds and Chilton-Colburn analogies. The correlation for the heat transfer coefficient of two-component two-phase slug flows in vertical pipes has been developed and validated by more than 200 existing data. The newly developed correlation predicts 95.1% of the collected two-phase heat transfer data within +/- 30% error and the mean absolute relative deviation of the correlation is estimated to be 14.2%. The extended applicability of the newly developed correlation to other flow regimes such as bubbly, churn and annular flow regimes has been verified by the existing experimental data. The possible application of the newly developed correlation to large pipes is also discussed. In summary, it is expected that the newly developed correlation can predict the heat transfer coefficient of two-component two-phase flows under various conditions such as vertical upward and downward flows, developing and fully developed flows, laminar and turbulent flows and all two-phase flow regimes. The application of the correlation to vertical large pipes is also considered to be reasonable. (C) 2018 Elsevier Ltd. All rights reserved.
机译:垂直管道中的气液两相流量的传热系数的预测对于设计许多工程和工程设备,例如核电厂,太阳能收集器和石油管道。双组分两相热传递的机制比单相热传递更复杂。该研究旨在开发垂直管道中的双组分两相粘液流的传热系数的稳健相关性。关联发展的理论框架是通过考虑经典的雷诺和Chilton-Colburn类比来启发。该框架表明,双组分两相传热系数对空隙分数或两相乘法器的功能依赖性由雷诺和奇尔顿 - COLBurn类比表示。通过200多个现有数据开发并验证了垂直管道中的双组分两相粘液流的传热系数的相关性。新开发的相关性预测95.1%的收集的两相热传递数据在+/- 30%误差内,并且相关性的平均绝对相对偏差估计为14.2%。通过现有的实验数据验证了新开发的与泡沫,搅拌和环形流动制度之类的其他流动制度的相关性。还讨论了新开发的与大型管道的相关性。总之,预期新颖的相关性可以在诸如垂直向上和向下流动的各种条件下预测双组分两相流的传热系数,开发和完全开发的流动,层状和湍流以及所有两个 - 相流制度。相关与垂直大管的相关性也被认为是合理的。 (c)2018年elestvier有限公司保留所有权利。

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