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Study on the Flow Characteristics of Shengli Oilfield Super Heavy Oil

机译:胜利油田超稠油流动特性研究

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Objective: The rheological properties of oil severely affect the determination of percolation theory, development program, production technology and oil-gathering and transferring process, especially for super heavy oil reservoirs. This paper illustrated the basic seepage morphology of super heavy oil in micro pores based on its rheological characteristics.Methods: The non-linear flow law and start-up pressure gradient of super heavy oil under irreducible water saturation at different temperatures were performed with different permeable sand packs. Meanwhile, the empirical formulas between start-up pressure gradient, the parameters describing the velocity-pressure drop curve and the ratio of gas permeability of a core to fluid viscosity were established.Results:The results demonstrate that temperature and core permeability have significant effect on the non-linear flow characteristics of super heavy oil. The relationship between start-up pressure gradient of oil, the parameters representing the velocity-pressure drop curve and the ratio of core permeability to fluid viscosity could be described as a power function.Conclusion: Above all, the quantitative description of the seepage law of super heavy oil reservoir was proposed in this paper, and finally the empirical diagram for determining the minimum and maximum start-up pressure of heavy oil with different viscosity in different permeable formations was obtained.
机译:目的:石油的流变性质严重影响渗流理论,开发计划,生产技术以及集油和输油过程的确定,特别是对于超稠油油藏。本文基于流变学特性,阐述了超稠油在微孔中的基本渗流形态。沙包。同时,建立了启动压力梯度,描述速度-压降曲线的参数以及岩心的气体渗透率与流体黏度之比的经验公式。结果:结果表明,温度和岩心渗透率对温度的影响很大。超重油的非线性流动特性油的启动压力梯度,代表速度-压降曲线的参数以及岩心渗透率与流体粘度之比之间的关系可以描述为幂函数。结论:首先,对渗流规律的定量描述本文提出了一种超稠油油藏,最后得出了确定不同渗透性地层中不同黏度的稠油最小和最大启动压力的经验图。

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