石油化工高等学校学报

石油化工高等学校学报 ›› 2011, Vol. 24 ›› Issue (2): 87-91.DOI: 10.3696/j.issn.1006-396X.2011.02.023

• 化工机械 • 上一篇    下一篇

水平管内油气水三相流动规律研究

宫敬,刘德生   

  1. 中国石油大学(北京)城市油气输配技术北京市重点实验室,北京102249
  • 收稿日期:2011-03-27 修回日期:2011-04-15 出版日期:2011-04-25 发布日期:2011-04-25
  • 作者简介:宫敬(1962 -), 女, 辽宁庄河市, 教授, 博士
  • 基金资助:
    国家自然科学基金资助项目(50674097);国家重大专项:深水流动安全保障与水合物风险控制技术(2008ZX05000-026 -004)

Three-Phase Oil-Air-Water Flow in Horizontal Pipes

  1. Beijing Key Laboratory of Urban Oil and Gas Distribution Technology, China University of Petroleum (Beijing), Beijing 102249, P. R. China
  • Received:2011-03-27 Revised:2011-04-15 Published:2011-04-25 Online:2011-04-25

摘要: 油气水三相混输技术已在海洋和沙漠油田得到广泛的应用, 三相流动规律的研究是十分必要的。在长62 m 、内径25.7 mm 的不锈钢管水平环道上, 对油气水三相流型及油水反相进行了实验研究。实验油品的粘度为20 mPa · s(20 ℃), 密度为855 kg/ m3(20 ℃)。利用高速摄像技术, 结合目测来判别流型, 绘制了不同含水率情况下的油气水三相流型图。分析了含水率变化对三相流型的影响, 并与经典的Taitel 流型预测模型进行了对比, 发现该模型适合于低含水率下的油气水三相流型预测。

关键词: 油气水 , 三相流 , 流型 , 含水率 , 油水反相

Abstract: The technology of oil-air-water mixed transportation had been applied in offshore pipelines, so it was very necessary to study the characteristic of three-phase flow. A series of oil-air-water three-phase flow experiments were carried out in a inner diameter of 25.7 mm, horizontal, stainless steel pipe, the focus was to study three-phase flow patterns and oil-water phase inversion. Air, tap water and white mineral oil (20 mPa·s viscosity, 855 kg/m3 density at 20 °C) were used as test fluids. High speed photography was applied to determine flow patterns. Three-phase flow pattern maps on difference of the water volume fracture in the oil-water mixture (water-cut) were plotted, the effects of water-cut on three-phase flow patterns were investigated. The flow pattern maps developed were compared with a theoretical model, and it show that the model provides very close flow pattern predictions from experimental data at low water-cut.

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引用本文

宫敬,刘德生. 水平管内油气水三相流动规律研究[J]. 石油化工高等学校学报, 2011, 24(2): 87-91.

GONG Jing, LIU De-sheng . Three-Phase Oil-Air-Water Flow in Horizontal Pipes[J]. Journal of Petrochemical Universities, 2011, 24(2): 87-91.

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