封装式ESP系统:延长高H2S环境下运行寿命的创新解决方案

Anwar S. Alghamdi
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摘要

电潜泵(ESP)是在油井中实现大排量的最可靠的人工举升方法之一。如果针对储层特性进行了良好的设计,esp在失效前可能会运行数年。尽管ESP在设计上取得了许多进步,但在高硫化氢环境中,电气连接仍然是最突出的故障点。本文提出了一种创新的方法,通过封装ESP系统来减少电气连接故障,从而延长ESP在高H2S环境下的运行寿命。在对ESP设计进行审查后,研究了目前如何减轻含酸井中ESP电连接故障的做法,设计了一种创新的ESP系统,以消除电连接与井液的接触。ESP从顶部连接到生产油管,封装在保压吊舱内,位于深度坐封的生产封隔器上方。马达头部分安装在吊舱外,以适应电缆连接,而部分封装在吊舱内,为ESP马达提供必要的电力供应。然后在套管环空(TCA)中填充抑制盐水,以保护电气连接。该领域的专家通常会在高硫化氢井中选择特殊的ESP冶金和电气连接(即金属对金属),以延长ESP系统的运行寿命。尽管开发多种版本的电气连接可以减轻H2S攻击,但现场经验表明,在恶劣环境中,ESP的运行寿命尚不能与温和环境相匹配,因此取得了进展。通过开发强大的ESP系统,大多数公司都在努力减少H2S对ESP电气连接的攻击,但几乎没有采取任何措施来消除风险。这一挑战可以通过封装ESP系统来解决,以避免电气连接与井液接触。因此,它为酸性环境中最常见的ESP故障点之一提供了彻底的解决方案。封装式ESP系统是一个新概念,正在申请专利,旨在解决电气连接故障,延长高H2S环境下的运行寿命。本文将讨论该系统的背景和设计,以及它消除电气连接完整性问题的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Encapsulated ESP System: An Innovative Solution for Extended Run Life in High H2S Environments
The electric submersible pump (ESP) is one of the most reliable artificial lift methods for delivering high flow rates in oil wells. If well designed for reservoir properties, ESPs may run for several years before failing. Despite many ESP design advancements, electrical connections remain within the most prominent points of failure in high H2S environments. This paper presents an innovative approach to mitigate electrical connection failures by encapsulating the ESP system for extended ESP run life in high H2S environments. Following an ESP design review to explore current practices in mitigating ESP electrical-connection failures in sour wells, an innovative ESP system was designed to eliminate electrical-connections’ contact with well fluid. The ESP is connected from the top to a production tubing, encapsulated within a pressure-retaining pod, and located above a deeply set production packer. The motor head is designed to partially set outside the pod to accommodate electrical-cable connection, while partially encapsulated within the pod to deliver the necessary electrical supply to the ESP motor. The tubing-casing annulus (TCA) is then filled with inhibited-brine to protect the electrical connections. Experts in the field typically select special ESP metallurgy and electrical connections (i.e., metal to metal) in high H2S wells to extend the run life of ESP systems. Although the development of multiple versions of electrical connections can mitigate H2S attacks, field experience has shown progress in sour environments where ESP run life is not yet matching mild environments. Most efforts were made to minimize H2S attacks on ESP electrical-connections by developing robust ESP systems, but little to no effort was made to eliminate the risk. This challenge can be undertaken by encapsulating the ESP system to avert electrical connection contact with well fluid. Thus, it provided a radical solution to one of the most common ESP failure points in sour environments. The encapsulated ESP system is a new concept, for which a patent is pending, designed to address electrical connection failures for an extended run life in high H2S environments. This paper will discuss the background and design of the system and its potential to eliminate electrical connection integrity issues.
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