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High Reliability Protector-Less Artificial Lift Technology for Electrical Submersible Pumps/Compressors

机译:高可靠性保护器的人工升力技术用于电气潜水泵/压缩机

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The Electric Submersible Pumps (ESP) is an efficient artificial lift method for lifting liquids from wells. The topology of the typical ESP with a pump, protector, and a motor has been fixed for many decades. The protector plays a critical role in the ESP to ensure that the electrical motor can function in the downhole environment. However, the protector's failure-prone components limit the ESP's reliability. To take the reliability of the ESP to the next level, the best approach is to eliminate the protector and thus all the associated failure modes. The new topology of the protector-less technology for downhole rotary machinery is enabled by several magnetic technology building blocks. To eliminate the protector from an artificial lift device, the motor section is completely hermetically sealed from the downhole fluids by an isolation can. A set of magnetic couplings transmits torque from the motor to the hydraulic section via magnetic forces through the isolation can to replace the solid shaft between the motor and pump in the case of the ESP. When there is no solid shaft to transmit torque, thus no shaft seal required to prevent downhole fluids from leaking into the motor, there is no need for a protector. The thrust and radial loads from the hydraulic section are supported by magnetic bearings, which completely levitate the shafts and prevent any physical contacts between the rotating and stationary parts. The architecture and its associated magnetic building blocks of protector-less technology are engineered into the subsurface compressor to ensure its reliability at high speed. The subsurface compressor provides both suction effects to lower intake pressure near producing zones and boosting effects to increase discharge pressure downstream of the compressor. With the lower downhole pressures and higher wellhead pressures generated by the subsurface compressor in a gas well, the gas production and recoverable reserve will increase due to higher drawdown and lower abandonment pressures. In the meantime, more liquids will be carried uphole due to higher gas velocity in the wellbore, lower intake pressure, and higher discharge temperature. The gas production in the proof-of-concept field trials of a subsurface compressor increased by 12 to 58%. The implementations of the protector-less technology and its associated magnetic technology building blocks into the subsurface compressor are discussed in detail. The successful implementation of the protector-less technology into subsurface compressor demonstrates the ease of applying protector-less technology to the ESP. With the advantages of reliability and the ease of implementation to ESPs, protectorless technology provides a solution to ESPs when their applications require high reliability.
机译:电潜水泵(ESP)是一种有效的人工升力方法,用于从井中提升液体。典型的ESP与泵,保护器和电机的拓扑已经修复了数十年。保护器在ESP中起着关键作用,以确保电动机可以在井下环境中起作用。但是,保护器的失败易受组件限制了ESP的可靠性。为了使ESP的可靠性到下一个级别,最好的方法是消除保护器,从而消除所有相关的失效模式。较低的井下旋转机械技术的新拓扑技术由几个磁性技术构建块实现。为了从人工升降装置中消除保护器,通过隔离可以将电动机部分完全气密地从井下流体密封。一组磁性联轴器通过隔离通过磁力从电动机向液压部分传输到液压截面的扭矩可以在ESP的情况下更换电动机和泵之间的实心轴。当没有实心轴传递扭矩时,因此没有所需的轴密封可以防止井下流体泄漏到电动机中,因此不需要保护器。来自液压截面的推力和径向载荷由磁轴承支撑,磁轴承支撑,该磁轴承完全浮动轴并防止旋转和静止部件之间的任何物理触点。保护器的架构及其相关的磁性构建块设计成地下压缩机,以确保其高速的可靠性。地下压缩机提供吸力效应,以降低产生区域附近的进气压力和提升效果,以增加压缩机下游的排出压力。较低的井下压力和由地下压缩机产生的较高的井口压力在气井中,由于更高的缩减和更低的遗弃压力,气体生产和可收回储备将增加。同时,由于井筒,进气压力较高,放电温度较高,将使更多的液体承受孔井孔。地下压缩机的概念验证现场试验中的天然气生产增加了12%至58%。详细讨论了保护器的实施保护技术及其相关的磁性技术构建块进入地下压缩机。将保护器的技术成功实施进入地下压缩机的易于将保护器技术应用于ESP。随着可靠性和易于实现的优点,Protectorless技术在其应用需要高可靠性时为ESP提供了解决方案。

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