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Onset of flow reversal in upflow condensation in an inclinable tube

机译:在可倾斜的管子中出现上流冷凝时发生逆流

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This work performs an experimental analysis of the onset of flow reversal in upflow condensation of refrigerant 134a in an inclinable 5-mm diameter tube. As the upward unidirectional annular flow regime is established, solitary waves are generated on the liquid substrate and are initially carried upwards by the vapor. With an increase in the condensate flow rate, the liquid film grows thicker and more disturbed, leading to a wider range of film flow structures as well as oscillatory changes in the liquid velocity. These changes mark the onset of flow reversal in the liquid film and the subsequent transition to churn flow. Image processing techniques have been applied to high-speed video sequences of the two-phase flow to identify the onset of film flow reversal and properties of the interfacial waves. A film structure characterized by the existence of the so-called primary and secondary waves was observed to exist near the region of transition to bidirectional flow. Spatio-temporal maps of the liquid film thickness have been generated aiming to quantify the influence of the operating conditions on the wave behavior. Adaptations of existing correlations for the critical vapor velocity associated with the point of flow reversal and wave frequency (Strouhal number) have been proposed. (C) 2016 Elsevier Inc. All rights reserved.
机译:这项工作是对直径为5 mm的可倾斜管中的制冷剂134a的向上冷凝过程中的逆流开始进行的实验分析。当建立向上的单向环形流动状态时,孤波在液体基质上产生,并最初被蒸气向上携带。随着凝结水流速的增加,液膜变得更厚且受到更多的干扰,从而导致了更大范围的液膜流动结构以及液速的振荡变化。这些变化标志着液膜中流动逆转的开始以及随后向搅动流的转变。图像处理技术已应用于两相流的高速视频序列,以识别薄膜流逆转的开始和界面波的特性。观察到以所谓的一次波和二次波的存在为特征的膜结构存在于向双向流动的过渡区域附近。已经生成了液膜厚度的时空图,旨在量化操作条件对波动行为的影响。已经提出了对与流动逆转点和波频率(斯特劳哈尔数)相关的临界蒸气速度的现有相关性的适应。 (C)2016 Elsevier Inc.保留所有权利。

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