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Two-phase flow pressure drops in U-tubes: Towards more accurate measurement methods and prediction models

机译:U型管中的两相流压降:建立更精确的测量方法和预测模型

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摘要

In this study, flow pattern observations and pressure drop measurements in a U-bend and contiguous straight tubes are presented. The flow pattern observations were made with R134a at an inlet saturation temperature of 5℃ flowing at a mass flux of 300 kg s~(-1) m~(-2) inside a horizontal test section with an internal and bend diameters of 13 and 66 mm, respectively. The experimental data were obtained for the same experimental conditions, but with two test sections with one internal diameter of 11.7 mm and two bend diameters (31.7 and 54.8 mm) for different U-bend orientations. The experimental data was compared to the predictions of a new multi-orientation flow pattern based frictional pressure drop method for U-bends of Silva Lima and Thome (2012c) showing that the model predicts 97% of the database within an error window of ±30%. An extensive discussion was made on the benefits of using a data reduction method that allows obtaining the pressure drops effectively occurring in the U-bend and reducing the errors associated with that measure.
机译:在这项研究中,呈现了U型弯和连续直管中的流型观察和压降测量。用R134a在入口饱和温度5℃,质量通量为300 kg s〜(-1)m〜(-2)的水平测试段内,弯曲和弯曲直径分别为13和13的条件下进行流态观察。分别为66毫米。在相同的实验条件下获得了实验数据,但是对于不同的U形弯曲方向,两个测试部分的一个内径为11.7 mm,两个弯曲直径(31.7和54.8 mm)。将实验数据与基于Silva Lima和Thome(2012c)的U形弯头的基于多方向流型的新型摩擦压降方法的预测进行了比较,结果表明该模型可在±30的误差范围内预测97%的数据库%。关于使用数据缩减方法的好处进行了广泛的讨论,该数据缩减方法允许获得U形弯头中有效发生的压降并减少与该度量相关的误差。

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