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Overview of Void Fraction Measurement Techniques, Databases and Correlations for Two-Phase Flow in Small Diameter Channels

机译:空隙分数测量技术,数据库和用于小直径通道中的两相流的相关性的概述

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Void fraction is one of the most important parameters for the modeling and characterization of two-phase flows. This manuscript presents an overview of void fraction measurement techniques, experimental databases and correlations, in the context of microchannel two-phase flow applications. Void fraction measurement techniques were reviewed and the most suitable techniques for microscale measurements were identified along its main characteristics. An updated void fraction experimental database for small channel diameter was obtained including micro and macrochannel two-phase flow data points. These data have channel diameter ranging from 0.5 to 13.84 mm, horizontal and vertical directions, and fluids such as air-water, R410a, R404a, R134a, R290, R12 and R22 for both diabatic and adiabatic conditions. New published void fraction correlations as well high cited ones were evaluated and compared to this small-diameter void fraction database in order to quantify the prediction error of them. Moreover, a new drift flux correlation for microchannels was also developed, showing that further improvement of available correlations is still possible. The new correlation was able to predict the microchannel database with mean absolute relative error of 9.8%, for 6% of relative improvement compared to the second-best ranked correlation for small diameter channels.
机译:空隙分数是两相流量建模和表征的最重要参数之一。该稿件在微通道两相流程应用的背景下概述了空隙分数测量技术,实验数据库和相关性。综述了空隙级分测量技术,沿其主要特征鉴定了最合适的微观测量技术。获得了用于小通道直径的更新的空隙率实验数据库,包括微型和宏通道两相流数据点。这些数据的沟道直径从0.5到13.84mm,水平和垂直方向,水平和垂直方向,以及用于糖尿病和绝热条件的空气水,R410a,R404a,R134a,r290,R12和R22。评估新的公开的空隙分数相关性,并与该小直径空隙率数据库进行评估,以便量化它们的预测误差。此外,还开发了用于微通道的新漂移通量相关性,表明仍然可以进一步改善可用相关性。新的相关性能够预测具有9.8%的平均绝对相对误差的微通道数据库,相对于小直径通道的第二个最佳排名相关性相比,相对改善的6%。

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