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Quantitative analysis of transverse non-uniformity of liquid film at the initial stage of annular-dispersed flow

机译:环形分散流动初期液膜横向不均匀性的定量分析

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The process of formation of disturbance waves in annular gas-liquid flow was studied using three-dimensional configuration of brightness-based laser-induced fluorescence technique in two ducts of different geometry in the proximity of the inlet. The process was found to consist of three stages: formation of initial two-dimensional high-frequency waves; fragmentation into localised chaotic 3D-waves and formation of large-scale quasi-2D disturbance waves. A method of quantitative characterisation of the degree of transverse coherence of film surface was developed and used to estimate the coordinates of the borders of the three stages. All the stages occur closer to the inlet at higher superficial gas velocities and lower liquid flow rates. It was found that the shape of the duct does not exert significant influence of the distance of existence of two-dimensional initial waves, whilst the disturbance waves are formed closer to the inlet in the circular duct.
机译:研究了环形气液流动中的扰动波的过程,采用三维基于亮度的激光诱导的荧光技术在入口附近的不同几何形状中的两个管道中进行了三维结构。该过程被发现由三个阶段组成:初始二维高频波的形成;分离成局部混沌3D波和大规模准2D扰动波的形成。开发了一种定量表征膜表面横向相干程度的方法,并用于估计三个阶段的边界的坐标。所有阶段都发生在较高的浅表气体速度和较低的液体流速下的入口。结果发现,管道的形状对二维初始波的存在距离产生显着影响,而干扰波形成靠近圆形管道中的入口。

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