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Characteristics of the Interfacial Wave Velocity on the Liquid Film of Annular Flow for Gas-Oil-Water Three-Phase Flow in a Horizontal Pipe

机译:水平管中气水三相流动环形流动液膜界面波速度的特征

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The experiments were conducted in a horizontal multiphase flow test loop (50mm inner diameter, 40m long) and the cross-correlation technology was used for the study of the characteristics of the interfacial wave velocity about two types of annular flow regimes (AN║DO/W and AN║DW/O) for gas-oil-water three-phase flow. The results show that the interfacial wave velocity on the liquid film of AN║DO/W flow pattern and AN║DW/O flow pattern all increases with the increase of gas superficial velocity and liquid superficial velocity on the condition of fixed ratio of oil and water flow rates, but the difference is that the increase is a linear monotonic increase for AN║DO/W flow pattern and a non-linear increase for AN║DW/O flow pattern, and the liquid superficial velocity makes a larger contribution than the gas superficial velocity. The interfacial wave velocity also increases with the increase of input water cut in liquid at different gas superficial velocities under the conditions of liquid superficial velocity fixed.
机译:实验在水平的多相流动试验回路(50mm内径,40m长)中进行,并且互相关技术用于研究界面波速的特性约为两种类型的环形流动状态(AN║DO/ W和ANDW / O)用于气水三相流。结果表明,AN║DO/ W流动模式的液体薄膜上的界面波速度和αdW/ o流动图案的液体薄膜随着气体表面速度和液体浅表的增加而增加的石油和液体浅表水流速率,但差异是,增加的是andw / w流动模式的线性单调增加,并且对║dw/ o流动图案的非线性增加,并且液体浅表速度比气体表面速度。在液体表面速度的条件下,界面波速度也随着在不同气体表面速度下的不同气体表面速度下的输入水而增加。

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