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Image Processing Analysis on the Air-Water Slug Two-Phase Flow in a Horizontal Pipe

机译:水平管中空气块两相流量的图像处理分析

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Slug flow is a part of intermittent flow which is avoided in industrial application because of its irregularity and high pressure fluctuation. Those characteristics cause some problems such as internal corrosion and the damage of the pipeline construction. In order to understand the slug characteristics, some of the measurement techniques can be applied such as wire-mesh sensors, CECM, and high speed camera. The present study was aimed to determine slug characteristics by using image processing techniques. Experiment has been carried out in 26 mm i.d. acrylic horizontal pipe with 9 m long. Air-water flow was recorded 5 m from the air-water mixer using high speed video camera. Each of image sequence was processed using MATLAB. There are some steps including image complement, background subtraction, and image filtering that used in this algorithm to produce binary images. Special treatments also were applied to reduce the disturbance effect of dispersed bubble around the bubble. Furthermore, binary images were used to describe bubble contour and calculate slug parameter such as gas slug length, gas slug velocity, and slug frequency. As a result the effect of superficial gas velocity and superficial liquid velocity on the fundamental parameters can be understood. After comparing the results to the previous experimental results, the image processing techniques is a useful and potential technique to explain the slug characteristics.
机译:SLUP流是由于其不规则性和高压波动而在工业应用中避免的间歇流的一部分。这些特征导致一些问题,如内部腐蚀和管道建设的损坏。为了理解SLUF特性,可以应用一些测量技术,例如线网格传感器,CECM和高速相机。本研究旨在通过使用图像处理技术来确定SLUIF特性。实验已经在26 mm I.D中进行。丙烯酸水平管,长9米。使用高速摄像机从空气混合器记录空气流量5米。使用MATLAB处理每个图像序列。存在包括在该算法中使用的图像补充,背景减法和图像滤波来产生二进制图像的步骤。还应用了特殊处理以减少分散的气泡周围的泡沫的干扰效果。此外,二进制图像用于描述气泡轮廓,并计算诸如气体槽长度,气体块速度和嵌段频率的缩放参数。结果,可以理解浅表气体速度和浅表液体速度对基本参数的影响。在将结果与先前的实验结果进行比较之后,图像处理技术是一种有用的和潜在的技术,用于解释SLUG特性。

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