A Review of the Electrical Submersible Pump Development Chronology

Mohammed A. Al-Hejjaj, Dhifaf Sadeq, Omar Al-Fatlawi
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Abstract

The electric submersible pump, also known as ESP, is a highly effective artificial lift method widely used in the oil industry due to its ability to deliver higher production rates compared to other artificial lift methods. In principle, ESP is a multistage centrifugal pump that converts kinetic energy into dynamic hydraulic pressure necessary to lift fluids at a higher rate with lower bottomhole pressure, especially in oil wells under certain bottomhole condition fluid, and reservoir characteristics. However, several factors and challenges can complicate the completion and optimum development of ESP deployed wells, which need to be addressed to optimize its performance by maximizing efficiency and minimizing costs and uncertainties. To analyze the performance of ESP deployed wells, the objective function must include various factors associated with fluids, reservoir inflow and outflow characteristics, and pump parameters. In particular, the inflow and outflow parameters include well configuration, and types of completion string (e.g. tubing sizes, and download completion hardware) while reservoir and fluid parameters include pressure, temperature, and PVT properties. Pump parameters include gas vacuum fraction, electrical and mechanical constraints, power requirements, cable requirements, downhole conditions, etc. Despite these challenges, ESPs' importance and efficiency necessitate an in-depth understanding of its origins and evolution over time, as well as the difficulties encountered in the oil industry. This paper aims to provide a comprehensive review of ESP's origin and development, including all prior studies that have influenced optimum development. The literature review is divided into four main sections: experimental investigations, numerical simulation studies, mechanical modeling, and in-depth studies on production optimization. By providing an in-depth analysis of previous work in each area, this paper aims to contribute to ongoing efforts to enhance ESPs' performance and efficiency in the oil industry.
电潜泵发展历史回顾
电潜泵,也被称为ESP,是一种高效的人工举升方法,与其他人工举升方法相比,它能够提供更高的产量,在石油行业中得到广泛应用。原则上,ESP是一种多级离心泵,它将动能转化为动液压,以较低的井底压力以更高的速率举升流体,特别是在某些井底条件下,流体和油藏特征。然而,一些因素和挑战会使ESP完井和优化开发变得复杂,需要解决这些问题,以最大限度地提高效率,最大限度地降低成本和不确定性。为了分析ESP井的性能,目标函数必须包括与流体、油藏流入和流出特征以及泵参数相关的各种因素。特别是,流入和流出参数包括井的配置和完井管柱的类型(如油管尺寸和下载完井硬件),而油藏和流体参数包括压力、温度和PVT特性。泵参数包括气体真空度、电气和机械约束、电力要求、电缆要求、井下条件等。尽管存在这些挑战,但esp的重要性和效率需要深入了解其起源和演变,以及石油行业遇到的困难。本文旨在全面回顾ESP的起源和发展,包括所有影响最佳发展的先前研究。文献综述分为四个主要部分:实验研究、数值模拟研究、力学建模和生产优化的深入研究。通过对每个领域以前的工作进行深入分析,本文旨在为提高石油行业esp的性能和效率做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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12 weeks
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