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Detection of Interfacial Structures in Inclined Liquid-Liquid Flows Using Parallel-Wire Array Probe and Planar Laser-Induced Fluorescence Methods

机译:使用平行线阵列探针和平面激光诱导荧光方法检测倾斜液体流中的界面结构

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摘要

Flows of two immiscible liquids through inclined pipes are often encountered in industrial processes. The interfacial characteristics in inclined pipes are of significance for understanding the mechanism of flow pattern transition and modeling the flow parameters. This paper developed a novel experimental technique to access the interface characteristics of liquid-liquid flows, during which optical and electrical methods were successfully combined by matching the refractive index and conductivity of the flows. A planar laser-induced fluorescence (PLIF) system was set up with a continuous laser and high-speed camera. Organic and aqueous phases were chosen to match refractive indices. The liquid-liquid interface in the middle of the pipe could be clearly visualized by the PLIF system. Meanwhile, two conductance parallel-wire array probes (CPAPs) were designed to reconstruct the liquid-liquid interfaces at upward and downward pipe cross-sections. The performances of the CPAP were validated using the PLIF results and employed to investigate the liquid-liquid interfacial structures. The interfacial shape and its instability were uncovered using the reconstructed interfaces by the CPAPs.
机译:在工业过程中经常会遇到两种不混溶液体通过倾斜管的流动。斜管的界面特性对于理解流型转变的机理和模拟流场参数具有重要意义。本文开发了一种新颖的实验技术来访问液-液流的界面特性,在此期间,通过匹配流的折射率和电导率,成功地将光学和电学方法结合在一起。使用连续激光和高速相机建立了平面激光诱导荧光(PLIF)系统。选择有机相和水相以匹配折射率。 PLIF系统可以清晰地显示管道中部的液-液界面。同时,设计了两个电导平行线阵列探头(CPAP)来重建上下管道横截面的液-液界面。使用PLIF结果验证了CPAP的性能,并用于研究液-液界面结构。 CPAP使用重建的界面发现了界面形状及其不稳定性。

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