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The Implementation of Image Processing Technique to Analyze the Air-Water Stratified Flow Characteristics in a Horizontal Pipe

机译:图像处理技术在水平管中气水分层流动特性分析中的实现

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In the operation of horizontal two-phase flow system, stratified flow should be maintained since it provides good key operational factors and pipe construction safety. Recently, the investigations of stratified flow have widely covered various aspects of the flow, such as the liquid hold-up. An image processing technique devotes numerous advantages related to the abilities of non-intrusive measurement and quantitative visualization. The aim of the present work was to implement the image processing technique to study the characteristics of the stratified flow. Here, the observations were conducted in a transparent horizontal pipe with inner diameter of 50 mm. Air and water were used as the working fluid. The liquid superficial velocity (JL) was between 0.005 m/s to 0.05 m/s while the gas superficial velocity (JG) was between 0.94 m/s to 6.00 m/s. The data was processed by using the image processing algorithms that have been developed in the previous study. As a result, qualitative and quantitative identifications of each stratified flow patterns (smooth, ripple, and roll) have been carried out by using an image processing technique. The effects of gas and liquid superficial velocities to stratified flow behaviors were also obtained. Moreover, this study proved that the developed algorithm has been successfully implemented in the present stratified flow case. Furthermore, it can be a promising method to be used in other cases of stratified flow and validation of the available CFD simulation models on stratified flow in horizontal pipes.
机译:在水平两相流系统的运行中,应保持分层流,因为它提供了良好的关键运行因素和管道施工安全性。最近,对分层流的研究已广泛涵盖了流的各个方面,例如液体滞留率。图像处理技术具有与非介入式测量和定量可视化功能相关的众多优势。本工作的目的是实施图像处理技术以研究分层流的特征。在此,观察是在内径为50mm的透明水平管中进行的。空气和水用作工作流体。液体表观速度(J L )在0.005 m / s至0.05 m / s之间,而气体表观速度(J G )在0.94 m / s至6.00 m / s之间。数据是使用先前研究中开发的图像处理算法进行处理的。结果,已经通过使用图像处理技术对每个分层的流动模式(平滑,波纹和滚动)进行了定性和定量的识别。还获得了气体和液体表面速度对分层流动行为的影响。此外,该研究证明了在当前分层流情况下已成功实现了所开发的算法。此外,在分层流的其他情况下以及对水平管道中分层流的可用CFD模拟模型的验证中,它可能是一种很有前途的方法。

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