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Experiment Research of Phase Inversion in Mineral Oil-Water Two-Phase Flow in Horizontal Pipe

机译:水平管矿物油-水两相流相变实验研究

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摘要

In oil-water two-phase dispersed flow, phase inversion may occur when the continuous phase becomes dispersed. This phenomenon, which controls the nature of the phase in contact with the pipe, has a great importance on the corrosion and on the pressure drop, which dramatically affects the delivery ability and operational modality. It is therefore imperative for the phase inversion research to be taken into consideration. However, most of the knowledge on phase inversion is for light mineral oil with low viscosity, few research focuses on high viscosity oil-water phase inversion. Arirachakaran et al. (1989, "An Analysis of Oil/Water Flow Phenomena in Horizontal Pipes," SPE Professional Product Operating Symposium, Oklahoma, SPE Paper No. 18836) found that critical water fractipn when inversion occurred was dramatically reduced with the increment of oil viscosity, and the existing phase inversion models are invalidated. In this paper, an experimental study has been made of high viscosity mineral oil-water flow through a horizontal pipe loop. Results indicate that phase inversion for oil phase with high viscosity occurs much earlier than low viscosity oil, and phase inversion tends to be delayed, with the increment in experimental temperature. The influence of mixture velocities on the inversion process could be neglected in the range of mixture velocities that we studied. As well, inversion point obtain by our experiment are best predicted by the correlation of Arirachakaran et al. (1989, "An Analysis of Oil/Water Flow Phenomena in Horizontal Pipes," SPE Professional Product Operating Symposium, Oklahoma, SPE Paper No. 18836). Models of Decarre and Fabre (1997, "Phase Inversion Prediction Study," Rev. Inst. Fr. Pet., 52, pp. 415-424) and Braunerand Ullmann (2002, "Modeling of Phase Inversion Phenomenon in Two-Phase Pipe Flows," Int. J. Multiph. Flow, 28, pp. 1177-1204), based on minimization of system total energy, seem to be invalidated for high viscosity oil.
机译:在油水两相分散流中,当连续相分散时,可能会发生相转化。这种现象控制着与管道接触的相的性质,对腐蚀和压降非常重要,这极大地影响了输送能力和操作方式。因此,必须考虑相变研究。然而,大多数关于相转化的知识是关于低粘度的轻质矿物油,很少有研究集中在高粘度油-水相转化上。 Arirachakaran等。 (1989年,“分析水平管中的油/水流动现象”,俄克拉荷马州SPE专业产品操作研讨会,SPE论文编号18836)发现,随着油粘度的增加,发生反演时的临界水分会大大降低。现有的相位反转模型无效。在本文中,对高粘度矿物油-水通过水平管道回路的流动进行了实验研究。结果表明,高粘度油相的倒相比低粘度油发生的时间要早​​得多,并且随着实验温度的升高,相变趋于被延迟。在我们研究的混合速度范围内,可以忽略混合速度对反演过程的影响。同样,通过Arirachakaran等人的相关性可以最好地预测我们的实验获得的反演点。 (1989年,“分析水平管中的油/水流动现象”,SPE专业产品操作研讨会,俄克拉荷马州,SPE论文编号18836)。 Decarre和Fabre的模型(1997,“相反转预测研究”,牧师学院学报,52,第415-424页)和Braunerand Ullmann(2002,“两相管流中的相反转现象建模”) ,” Int。J. Multiph。Flow,28,pp。1177-1204),基于系统总能量的最小化,似乎对于高粘度油是无效的。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2009年第4期|043001.1-043001.6|共6页
  • 作者

    Wei Wang; Jing Gong;

  • 作者单位

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology, Key Laboratory of Ministry of Education in Petroleum Engineering, China University of Petroleum, Beijing, 102249, PR. China;

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology, Key Laboratory of Ministry of Education in Petroleum Engineering, China University of Petroleum, Beijing, 102249, PR. China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    high viscosity mineral oil-water; two-phase flow; phase inversion; temperature; mixture velocity; inversion prediction;

    机译:高粘度矿物油-水;两相流相位反转温度;混合速度反演预测;
  • 入库时间 2022-08-18 00:30:59

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