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首页> 外文期刊>Chemical Engineering Communications >Bubble Dynamics in 2D Bubble Column: Comparison between High-Speed Camera Imaging Analysis and 4-Point Optical Probe
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Bubble Dynamics in 2D Bubble Column: Comparison between High-Speed Camera Imaging Analysis and 4-Point Optical Probe

机译:二维气泡柱中的气泡动力学:高速相机成像分析和四点光学探头之间的比较

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摘要

Two-dimensional (2D) bubble columns have been used in the literature to study the detailed flow field for evaluation and validation of computational fluid dynamics (CFD) and for developing the needed closures and interfacial forces models for gas-water systems. Hence, this work focuses on investigating the bubble dynamics (i.e., local gas holdup, bubble velocity, bubble chord length, and frequency) in a 2D bubble column. Two advanced measurement techniques were implemented in this work, high-speed video camera imaging and a four-point optical probe. A new method for analysis of video camera imaging was employed. The results of both techniques were compared. The results show good overall agreement between the two methods for the horizontal profile of both bubble size and gas holdup. The findings revealed a strong positive correlation between bubble size and gas holdup. It was found that video image analysis could become an accurate, noninvasive alternative to fiber optical probes, at least in 2D systems, although the technique needs more refinement.
机译:文献中已经使用二维(2D)气泡柱来研究详细的流场,以评估和验证计算流体力学(CFD)并开发用于气-水系统的所需封闭和界面力模型。因此,这项工作着重于研究二维气泡柱中的气泡动力学(即局部气体滞留率,气泡速度,气泡弦长和频率)。在这项工作中实现了两种先进的测量技术,即高速摄像机成像和四点光学探头。采用了一种新的摄像机成像分析方法。比较了两种技术的结果。结果表明,两种方法在气泡大小和气体滞留率的水平剖面方面总体吻合良好。研究结果表明,气泡大小与气体滞留量之间存在很强的正相关性。已经发现,尽管技术需要进一步完善,但至少在2D系统中,视频图像分析可以成为光纤探头的一种准确,无创的替代方案。

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