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Flow Analyses Inside Jet Pumps Used for Oil Wells

机译:用于油井的射流泵内部的流量分析

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Jet pump is one type of artificial lifts and is used when depth and deviation of producing wells increases and pressure depletion occurs. In the present study, numerical analysis has been carried out to analyze the flow behavior and find the performance of the jet pump. Reynolds-averaged Navier Stokes equations were solved and k-ε turbulence model was used for simulations. Water and light oil as primary fluids were used to pump water, light oil and heavy oil. The ratios of area and length to diameter of the mixing tube were considered as design parameters. The pump efficiency was considered to maximize for the downhole conditions. It was found that the increase in viscosity and density of the secondary fluid reduced efficiency of the system. Water as primary fluid produced better efficiency than the light oil. It was also found that the longer throat length increased efficiency upto 40% if light oil was used as primary fluid and secondary fluid viscosity was 350 cSt.
机译:射流泵是一种人工举升机,在生产井的深度和偏差增加且压力降低时使用。在本研究中,已经进行了数值分析以分析流动行为并找到喷射泵的性能。解决了雷诺平均的Navier Stokes方程,并使用k-ε湍流模型进行了仿真。水和轻油作为主要流体被用来泵送水,轻油和重油。混合管的面积和长度与直径之比被认为是设计参数。在井下条件下,泵的效率被认为是最大化的。发现二次流体的粘度和密度的增加降低了系统的效率。水作为主要流体,比轻油产生更​​高的效率。还发现,如果将轻油用作主要流体,而辅助流体的粘度为350 cSt,则更长的喉管长度可将效率提高至40%。

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