An experimental study of adiabatic two-phase gas-liquid flow in helical micro-tube

A. Suriyawong, Kritsada Pratuyai, S. Wongwises, S. Saisorn
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Abstract

The development of two-phase flow patterns in helical micro-tube was experimentally investigated. The adiabatic gas-liquid two-phase flow regime maps were presented based on a 0.87 mm inner diameter tube which was helical glass channel. Working fluid in the helically coiled tube was air-water mixture flowing in vertical upward direction. The diameter of the helical coil and the relevant pitch were, respectively, 50 mm and 20 mm. Flow visualization was carried out at different positions along the micro-tube length in order to examine the significance of the centrifugal force existing in addition to the conventional force vectors. In this work, slug flow, churn flow, throat-annular flow, and annular flow were observed and compared to the existing flow transition boundaries developed from micro-channel configurations.
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螺旋微管内两相气液绝热流动的实验研究
实验研究了螺旋微管内两相流型的发展。以内径0.87 mm的螺旋玻璃通道管为例,给出了绝热气液两相流的流态图。螺旋管内的工作流体为垂直向上流动的空气-水混合物。螺旋线圈直径为50mm,螺距为20mm。在微管长度的不同位置进行了流动可视化,以检验除常规力矢量外存在的离心力的意义。在这项工作中,观察了段塞流、搅拌流、喉环流和环空流,并将其与现有的由微通道结构形成的流动过渡边界进行了比较。
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