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Staircase Lifting of Oil Using Venturi Principle: A New Artificial-Lift Technique

机译:使用Venturi原理楼梯提升油:一种新的人工升降技术

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Artificial lift systems are now being considered of extreme importance as the reserves across the globe are depleting and the wells are unable to flow naturally. Over the years a number of artificial lift techniques have evolved as a result of extensive research and ground work. All the systems have proven their worth by increasing the productivity of the field by many folds. But each of these artificial lift systems has economic and operating limitations that eliminate it from consideration under certain operating condition. However all the conventional artificial lift systems have a common feature. The energy added to the lift the fluid from the wellbore is lost in the process and cannot be utilized for some other operation. This paper describes a new technique of artificial lift which uses the concept of venturi to lift the fluid to the surface. A high velocity power fluid is used to create drawdown at the throat of a surface venturi and this pressure drawdown is transmitted downhole by pressure tappings. The drawdown lifts the fluid through the production tubular in a stepwise manner. The power fluid coming out from the other end of the venturi is used to drive a turbine which generates power as a result. This power is used to operate the inlet compressor thus the cycle being completed. After startup, effectively, no energy is used up to keep operating the system. The system is of immense economic benefit as the operating expenditures are low. Also this system uses zero-cost air as power fluid. It is a space efficient package which can be used on offshore locations as well. The paper describes the individual components of the system and the calculations involved therein. The economic and technical comparison of this system with the conventional methods is also enlisted.
机译:人工升降系统现在被认为是极端重要的,因为全球储备耗尽,井无法自然流动。多年来,由于广泛的研究和地面工作,许多人工升力技术已经进化。所有系统通过增加许多折叠的领域的生产力来证明他们的价值。但这些人工升降系统中的每一个都具有经济和运行限制,从某些操作条件下消除其考虑。然而,所有传统的人工升降系统都具有共同的特征。在该过程中丢失了从井筒的升力的能量丢失,并且不能用于一些其他操作。本文描述了一种人造升降技术,它使用文丘里里的概念将流体升到表面。高速电力流体用于在表面文丘里管的喉部产生缩小,并且该压力缩放通过压力抗衡旋转透射。绘图以逐步的方式抬起流体通过生产管状管。从文丘里里的另一端出来的电力流体用于驱动产生功率的涡轮机。该功率用于操作入口压缩机,从而完成循环。启动后,有效地,没有能量用来保持操作系统。系统具有巨大的经济效益,因为操作支出较低。此系统还使用零成本空气作为电力流体。它是一个空间高效的包,也可以在海上位置使用。本文介绍了系统的各个组件和其中涉及的计算。该系统与常规方法的经济和技术比较也在征兵。

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