Experimental Study of Turbulent Bubbly Flow in 180-Degree Elbow by PIV-PS Technique

Wuguang Chen , Songwei Li , Xiaocheng Mu , Fan Yang , Zhigang Yan , Jiajin Sun , Guangyuan Huang , Kangbei Cai , Yuanbiao Hu , Junlian Yin , Dezhong Wang
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Abstract

The curvature effect and bubbles are the key factors that affect the gas-liquid two-phase flow and turbulent characteristics in the 180-degree elbow. Limited by the difficulty of experimental measurement and numerical investigation, little is known about the two-phase flow evolution and turbulent modulation in 180-degree elbow. In this paper, a gas-liquid two-phase measurement technique, simultaneous Particle Image Velocimetry and Pulsed Shadowgraphy (PIV-PS) has been developed by combining two cameras through a spectroscope and optical filters and was applied to explore the two-phase characteristics in 180-degree elbow. In addition, an image post-processing method, based on bubble area detection and remaining particles estimation, was proposed. The characteristics of velocity and turbulent fields in the 180-degree elbow are experimentally studied in different conditions, and the evolution of the flow field in the elbow was also explored in detail. The results show that the horizontal velocity on the centerline of the elbow increases linearly with the liquid flow rates. However, with the introduction of bubbles, the linear feature is eliminated. The turbulent fields show that the introduction of bubbles suppresses turbulence at the low void fraction condition, and enhances at the high void fraction in bubble accumulation areas.

180度弯头湍流气泡流动的PIV-PS实验研究
曲率效应和气泡是影响180度弯头内气液两相流动和湍流特性的关键因素。由于实验测量和数值研究的困难,人们对180度弯管内两相流演化和湍流调制知之甚少。本文通过分光镜和滤光片结合两台相机,建立了一种气液两相测量技术——同步粒子图像测速和脉冲阴影(PIV-PS),并应用该技术对180度弯头的两相特性进行了研究。此外,提出了一种基于气泡面积检测和剩余粒子估计的图像后处理方法。实验研究了不同工况下180度弯头内的速度场和湍流场特征,并对弯头内流场的演变进行了详细的探讨。结果表明:弯头中心线水平速度随液体流量的增加呈线性增加;然而,随着气泡的引入,线性特征被消除了。湍流场表明,气泡的引入在低空分数条件下抑制了湍流,在气泡聚集区高空分数条件下增强了湍流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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