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首页> 外文期刊>International Journal of Heat and Mass Transfer >Visualization of two-phase flow of R410A in horizontal smooth and axial micro-finned tubes
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Visualization of two-phase flow of R410A in horizontal smooth and axial micro-finned tubes

机译:R410A在水平光滑轴向轴向微翅片管中两相流动的可视化

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This paper presents a novel visualization approach to understand the effect of axial micro-fins on two-phase flow behavior inside horizontal round tubes. In order to reflect the real inner geometry in the commercial metal tubes (smooth and micro-finned tubes), clear resin tubes were made by an SLA 3D printer to reproduce the geometry. The 3D printed tube for visualization was installed right after the heat transfer test section. In the heat transfer test section, R410A flow boiling experiments were conducted at 10 degrees C saturation temperature with heat flux of 15 kW/m(2). The results indicated the axial micro-fins do not provide additional force to lift up the liquid in the round tube and the annular flow pattern does not occur earlier (at lower vapor quality or mass flux conditions) than the smooth tube. For low mass flux and vapor quality, the liquid-phase refrigerant is easily trapped in the grooves at the top or side of the axial micro-finned tube. The main liquid level in the axial micro-finned tube is, therefore, lower than that in the smooth tube under the same conditions. This liquid level change is quantified by tracing the liquid-vapor interfaces in the captured videos with change point analysis. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新颖的可视化方法,以了解轴向微翅片对水平圆管内两相流动行为的影响。为了反映商用金属管(光滑管和微翅片管)中的真实内部几何形状,使用SLA 3D打印机制作了透明的树脂管以复制几何形状。传热测试部分之后立即安装了用于可视化的3D打印管。在传热测试部分,R410A流动沸腾实验是在10摄氏度的饱和温度下进行的,热通量为15 kW / m(2)。结果表明,轴向微翅片不提供额外的力来提起圆管中的液体,并且环形流动模式不会比光滑管更早地发生(在较低的蒸汽质量或质量通量条件下)。对于低质量通量和蒸汽质量,液相制冷剂很容易截留在轴向微翅片管顶部或侧面的凹槽中。因此,在相同条件下,轴向微翅片管中的主液位低于光滑管中的主液位。通过使用变化点分析来跟踪捕获的视频中的液-气界面,可以对这种液位变化进行量化。 (C)2019 Elsevier Ltd.保留所有权利。

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