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A REVIEW OF LIQUID-LIQUID FLOW PATTERNS IN HORIZONTAL AND SLIGHTLY INCLINED PIPES

机译:水平和轻微倾斜管道中的液体流动模式研究进展

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This paper presents a review of the co-current flow of two immiscible liquids in horizontal and slightly inclined pipes. Liquid-liquid flaws are present in a wide variety of industrial processes, such as chemicals, pharmaceuticals, and food processing. However, this phenomenon is mainly studied in the oil industry, especially in the analysis of oil-water mixtures encountered in long transportation pipelines from the wellhead to the processing facility. The hydrodynamic behavior of liquid-liquid flows is more complex than that of gas-liquid flows because of density ratio, viscosity ratio, interfacial forces, and pipe wettability. This means that a significant number of different flow patterns can be obtained from different fluid properties and pipe characteristics. Furthermore, the flow pattern classification of liquid-liquid flows is arbitrary and several researchers use their own classification, complicating comparison and analysis of flow pattern maps. In this paper, a unified flow pattern classification for liquid-liquid flow is proposed. This classification enables the direct comparison of flow pattern maps for further analysis.
机译:本文介绍了水平和微倾斜管道中两种不混溶液体的并流流动。液-液缺陷存在于多种工业过程中,例如化学,制药和食品加工。但是,这种现象主要在石油工业中研究,尤其是在从井口到加工设施的长输管道中遇到的油水混合物分析中。由于密度比,粘度比,界面力和管道润湿性,液-液流动的流体力学行为比气-液流动的流体力学行为更为复杂。这意味着可以从不同的流体特性和管道特性获得大量不同的流型。此外,液-液流的流型分类是任意的,一些研究人员使用他们自己的分类,使流型图的比较和分析变得复杂。本文提出了一种统一的液-液流流型分类方法。这种分类可以直接比较流型图,以进行进一步分析。

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