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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Review on gas-liquid-liquid three-phase flow patterns, pressure drop, and liquid holdup in pipelines
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Review on gas-liquid-liquid three-phase flow patterns, pressure drop, and liquid holdup in pipelines

机译:液 - 液 - 液体三相流动图案,压降和管道中的液体储存

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摘要

Gas-liquid-liquid three-phase co-current flow commonly occurs in the oil & gas production pipelines. The dynamics of three-phase flow are more complex than single and two-phase flow. High pressure drop and liquid holdup are common flow assurance problems in the upstream oil and gas production pipelines. These problems increase the energy consumption of the flow system, especially in the process of enhanced oil recovery (EOR). Three-phase flow behavior is highly dependent on the flow patterns. For an economical and energy efficient production process, the flow pattern with less pressure drop and liquid holdup needs to be identified. In this article, three-phase flow patterns' classification and structures are critically reviewed and discussed in detail. Flow regime transition with the change in volumetric fractions and superficial velocities of phases are also elaborated. The prediction models for flow regime transition and stability, pressure drop, liquid holdup, and three-phase flow characteristics are presented. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:燃气 - 液 - 液体三相同系机通常发生在油气生产管道中。三相流动的动态比单相和两相流更复杂。高压下降和液体储存是上游石油和天然气生产管道的常见流量保证问题。这些问题增加了流动系统的能量消耗,尤其是在增强的采油(EOR)的过程中。三相流动行为高度依赖于流动模式。对于经济和节能的生产过程,需要识别压降和液体持有较少的流动模式。在本文中,三相流动模式的分类和结构是批评和详细讨论的。还详细阐述了随着体积分数和阶段的表面速度的变化的流动调节。提出了用于流动调节和稳定性,压降,液体保持和三相流动特性的预测模型。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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