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Analytical study of pressure losses and fluid viscosity effects on pump performance during monophase flow inside an ESP stage

机译:ESP级内单相流动期间压力损失和流体粘度对泵性能的影响的分析研究

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With the advancement of offshore oil production in deep waters and increasing distances, the Electrical Submersible Pumping (ESP) system has emerged as an important artificial lift method. However, various pressure losses act in centrifugal pumps, thus reducing the energy transfer efficiency to the pumped fluid. Modeling the effects of different kinds of pressure losses at pump head is a far cry from a straightforward task. In the present work, those losses were obtained to help predicting the ESP system performance. A theoretical model computationally implemented using Formula Translation System (FORTRAN) language was developed to calculate head and pressure losses using equations by different authors, and their combinations, for one specific type of pump and four monophase flowing conditions. In order to validate the methodology, pump performance curves were generated and compared with experimental data. The theoretical modeling results also showed that it is possible to estimate the pumps' behavior from equations that depend on geometric factors and flow operating conditions. (C) 2015 Elsevier B.V. All rights reserved.
机译:随着深海海上石油生产的进步和距离的增加,潜水电泵(ESP)系统已成为一种重要的人工举升方法。然而,各种压力损失在离心泵中起作用,从而降低了向泵送流体的能量传递效率。对泵头不同压力损失的影响进行建模与直接完成任务相去甚远。在目前的工作中,获得了这些损失以帮助预测ESP系统的性能。开发了一种使用公式转换系统(FORTRAN)语言计算实现的理论模型,以针对一种特定类型的泵和四种单相流动条件,使用不同作者的方程及其组合来计算压头和压力损失。为了验证该方法,生成了泵性能曲线,并将其与实验数据进行了比较。理论建模结果还表明,可以根据取决于几何因素和流量运行条件的方程式来估计泵的性能。 (C)2015 Elsevier B.V.保留所有权利。

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