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Frictional Pressure Drop Correlations for Single-Phase Flow, Condensation, and Evaporation in Microfin Tubes

机译:微翅片管中单相流动,冷凝和蒸发的摩擦压降相关性

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摘要

Experimental single-phase, condensation, and evaporation (flow boiling) pressure drop data from the literature and our previous studies were collected to evaluate previous frictional pressure drop correlations for horizontal microfin tubes of different geometries. The modified Ravigururajan and Bergles correlation, by adopting the Churchill model to calculate the smooth-tube friction factor and by using the hydraulic diameter in the Reynolds number, can predict single-phase turbulent frictional pressure drop data relatively well. Eleven pressure drop correlations were evaluated by the collected database for condensation and evaporation. Correlations originally developed for condensation and evaporation in smooth tubes can be suitable for microfin tubes if the friction factors in the correlations were calculated by the Churchill model to include microfin effects. The three most accurate correlations were recommended for condensation and evaporation in microfin tubes. The Cavallini et al. correlation and the modified Friedel correlation can give good predictions for both condensation and evaporation. However, some inconsistencies were found, even for the recommended correlations.
机译:收集了来自文献和我们先前研究的实验性单相,冷凝和蒸发(流动沸腾)压降数据,以评估不同几何形状的水平微翅片管的先前摩擦压降相关性。修改后的Ravigururajan和Bergles相关性,通过使用丘吉尔模型计算光滑管摩擦系数,并使用雷诺数中的水力直径,可以较好地预测单相湍流摩擦压降数据。收集的数据库评估了11个压降的相关性,以进行冷凝和蒸发。如果相关性中的摩擦系数是由丘吉尔模型计算的,其中包括微鳍效应,则最初为光滑管中的冷凝和蒸发而建立的相关性可能适用于微鳍管。对于微翅片管中的冷凝和蒸发,建议使用三个最准确的关联。 Cavallini等。相关性和改进的Friedel相关性可以为冷凝和蒸发提供良好的预测。但是,即使对于推荐的相关性,也发现了一些不一致之处。

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