垂直窄矩形通道环形流膜厚度测量的实验研究

Antai Liu, Haifeng Gu, Fuqiang Zhu, Chang-qi Yan
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引用次数: 0

摘要

液膜厚度作为环空流动的关键物理参数,是研究环空流动条件下气液界面行为特征的关键。本研究以窄矩形通道为研究对象,以空气-水为介质,进行常压下的环空流动实验。窄矩形通道的截面积为70mm × 2mm。该PCB液膜传感器可以实现液膜厚度的多点测量。通道表面呈列列排列,共有10 × 16个测点,空间分辨率为4.4mm × 4.4mm,测量速度为1000帧/秒。结果表明,液膜的波动以低表面液速时的纹波波动为主。随着气体流量的增加,膜厚的频率分布变得更加尖锐,即界面表面变得更加光滑。随着气体流量的增加,液膜会变薄,但当气体流量达到一定值时,效果减弱。随着液体流量的增加,液膜变厚,扰动波数增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study on Measurement of Annular Flow Film Thickness in Vertical Narrow Rectangular Channel
As a key physical parameter in annular flow, liquid film thickness is crucial to study the behavior characteristics about gas-liquid interface under annular flow conditions. In this study, the narrow rectangular channel is taken as the research object, and air-water were used as the media to conduct annular flow experiments under atmospheric pressure. The cross-sectional area of the narrow rectangular channel is 70mm × 2mm. The PCB liquid film sensor can realize multi-point measurement of liquid film thickness. A total of 10 × 16 measuring points are arranged in rows and columns on the surface of the channel, with a spatial resolution of 4.4mm × 4.4mm and a measurement speed of 1000 frames per second. The results show the fluctuation of liquid film is dominated by the ripple wave at low superficial liquid velocity. The frequency distribution of film thickness becomes sharper because of the increase of gas flow, i.e. the interfacial surface becomes smoother. The liquid film will become thinner with the increase of gas flow, but the effect is reduced when the gas flow reaches a certain value. The liquid film will thicken and the number of disturbance waves will increase as the increase of the liquid flow.
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