电潜泵不同进气流量条件下气-水两相流动特性试验研究

S. Shaahid, A. Ahmad, C. Ejim, S. Aramco, Jinjiang Xiao, L. Alhems
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引用次数: 0

摘要

电潜泵(ESP)是一种高效的人工举升设备,用于油气行业,通过将大量低压流体从井中举升到地面,提高油井的碳氢化合物或水的产量。在抽油泵入口处存在游离气体是实现油井最大潜力的一大挑战。为了提高ESP的性能,有必要了解ESP进气处的两相流特性。本文的目的是研究不同工况下ESP进气口的两相空气-水流动特性。在本研究中,采用两相原型测试流环进行了一组实验。总流体混合流量为1250桶/天(bpd),进口压力约为1.5 barg $(\sim 22$ psig),与水平方向的倾角分别为45°和90°。进气体积分数(GVF)在10% ~ 70%之间变化。在这项初步研究中,ESP的转速保持在0 RPM。ESP上游有机玻璃测试段的空气-水流动状况图像由高速摄像机捕获。在较低的进气GVFs(10% & 30%)下,观察到分散的气泡和偶尔的段塞流模式。在较高的进气GVFs(50% & 70%)下,观察到更大的段塞和液体流动逆转(液体气泡回落)。气泡密度随进气GVF的增大而增大。这项研究的观察结果将有助于缓解esp产生高含气两相流的挑战,这在油气行业很常见。此外,了解影响ESP进气口气液行为的因素,并将合适的组件集成到ESP组件中,可以防止出现涌动和气锁等操作问题。最终目标是减少ESP停机时间,并显著降低现场作业和生产成本。
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Experimental Study of Two-Phase Air-Water Flow Behavior at Different Intake Flow Conditions of an Electric Submersible Pump
Electric Submersible Pumps (ESP) are efficient artificial lift equipment utilized in oil and gas industries to enhance hydrocarbon or water production from wells by lifting high volumes of low-pressure fluids from the well-bores up to surface. The presence of free gas at the pump-intake is a big challenge to achieve the maximum potential from oil wells. To improve ESP performance, it is necessary to understand the two-phase flow behavior at the ESP intake. The objective of this work is to study the two-phase air-water flow behavior at the intake of an ESP for different operating conditions. In this study, a set of experiments were conducted using a two-phase prototype test flow loop. The total fluid mixture flow rate was 1250 barrels/day (bpd), inlet pressure was approximately 1.5 barg $(\sim 22$ psig) and inclination angles to the horizontal were 45° and 90°. The intake gas volume fraction (GVF) was varied from 10% to 70%. For this preliminary study, the ESP rotational speed was kept at zero RPM. Images of the air-water flow conditions in the plexiglass test section upstream of the ESP were captured using a high-speed camera. At lower intake GVFs (10 & 30%), dispersed bubbly and occasional slug flow patterns were observed. At higher intake GVFs (50 & 70%), larger slugs and liquid flow reversal (liquid bubbles falling back) were observed. It was also observed that the density of bubbles increased with increasing intake GVF. Observations from this study will be helpful to mitigate challenges associated with ESPs producing high gas content two-phase flows, which are common in oil and gas industries. Furthermore, understanding factors influencing ESP gas-liquid behavior at intake and incorporating suitable components into the ESP assembly will prevent operational problems such as surging and gas locking. The end goal is reduction of ESP downtime, as well as significant decrease in field operation and production cost.
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