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Study of gas-sheared liquid film in horizontal rectangular duct using high-speed LIF technique: three-dimensional wavy structure and its relation to liquid entrainment

机译:高速LIF技术研究水平矩形管道中的气剪液膜:三维波浪结构及其与液体夹带的关系

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摘要

The flow of a liquid film sheared by high velocity gas stream in a horizontal rectangular duct was investigated using a high-speed laser-induced fluorescence technique. Measurements of local film thickness were resolved in both longitudinal and transverse coordinates with high spatial and temporal resolution. It was found that the generation of fast and slow ripples by the disturbance waves was qualitatively the same as it was observed earlier in completely different conditions. The transverse size and curvature of the disturbance waves and ripples were measured. A relationship between the three-dimensional structure of ripples on top of disturbance waves and the two mechanisms of liquid entrainment, known as ‘bag break-up’ and ‘ligament break-up’, is proposed.
机译:使用高速激光诱导荧光技术研究了在水平矩形管道中被高速气流剪切的液膜的流动。局部膜厚度的测量在纵向和横向坐标中均得到了解析,具有很高的时空分辨率。已经发现,扰动波产生的快速和缓慢波动在质量上与早先在完全不同的条件下观察到的相同。测量了干扰波和波纹的横向尺寸和曲率。提出了扰动波顶部的波纹的三维结构与液体夹带两种机制之间的关系,这两种机制被称为“袋子破裂”和“气液破裂”。

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