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Selection and Optimization of Artificial Lift System in Heavy Oil Fields

机译:大油田人工升力系统的选择与优化

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Emulsion which occurs in all phases of oil production and processing in heavy oil fields causes several operational problems.Especially,it can preclude performance of artificial lift system and induce malfunctions due to high pressure drop in production string and high shear stress around rod. Existence of rod string in tubing heavily reveals production limitations in artificial lift systems used in deep wells which produce emulsifying heavy oil.Artificial lift systems do not only require power for lifting heavy oil up to the surface,but also they require power for coping with resistance of high viscous fluid during movement of rod string in tubing. Movement of rod string originates shear stress that is very sensitive to viscosity of fluid.In case of using progressing cavity pump,radial shear stress occurs during clockwise rotation of rod string.In contrast,as sucker rod pump is used,axial shear stress takes place on the up and down stroke of rod string. As far as negative effect is concerned,radial shear stress on the progressing cavity pump system is less detrimental than axial shear stress on the plunger pumping system in theoretical and practical aspects.It is also evident that it is possible to decrease negative effect of radial shear stress by selecting large displacement pump and reducing rotation speed of rod string by means of variable speed drive system provided that the same amount of production is received.Moreover,tubing back-off,twist-off caused by reversed movement of rod string and rod being screwed off when being shut down can be avoided owing to decrease in radial shear stress or torque created by high viscous fluid. This paper aims to expatiate that progressing cavity pump is viable choice for particularly deep wells producing emulsifying heavy oil in terms of operation and energy consumption.
机译:在油生产中的所有阶段发生的乳液和重油场的加工过程中会导致若干操作问题。特别地,它可以排除人工升力系统的性能,并且由于生产绳的高压降,杆周围的高剪切应力引起故障。管道中的杆串的存在大大揭示了在深井中使用的人工升力系统中的生产限制,该系统生产乳化重油。人工升降系统不仅需要将重油提升到表面的力量,而且还需要采用电阻的电力管道杆柱运动期间的高粘性流体。杆弦的运动来源于剪切应力,该剪切应力对流体粘度非常敏感。在使用进展腔泵的情况下,在杆柱的顺时针旋转期间发生径向剪切应力。对比度,作为吸盘杆泵使用,轴向剪切应力发生在杆弦的上下行程上。就负效应而言,在理论和实践方面的柱塞泵系统上的径向剪切应力比柱塞泵送系统上的轴向剪切应力较小。也显而易见,可以降低径向剪切的负效应通过选择大型位移泵并通过可变速度驱动系统选择大的位移泵并降低杆串的转速,规划是接收到相同的生产量。通过杆柱和杆的反转运动引起的扭曲截止,扭转由于高粘性流体产生的径向剪切应力或扭矩,可以避免在关闭时拧紧。本文旨在阐述进展腔泵,适用于在运行和能耗方面产生乳化重油的特别深井。

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