Artificial Lift System Applications for Thermally Developed Offshore Heavy Oil Reservoirs

Hua Zhang, Ping-li Liu, Qiuxia Wang, Jian-hua Bai, Wei Zhang, Hongwen Zhang, Xiaodong Han
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Abstract

The total crude oil resources are approximately 9-11 trillion barrels around the world and the steam based thermal recovery processes are still the most effective methods to enhance heavy oil recovery. Due to the high oil viscosity, high fluid temperature and high fluid volume changes with time, the choice of suitable artificial lift (AL) system is one of the most important techniques in optimizing production from thermally developed heavy oil wells. Notwithstanding the attempt by several studies in the past few decades to understand and develop cutting-edge technologies to optimize the application of artificial lift system in thermally developed heavy oil reservoirs, there remains differing assessments of the best approach, AL type for various kinds of thermal recovery methods. A comprehensive review of artificial lift systems application with specific focus on thermally developed heavy oil reservoirs across the world for offshore oilfields is conducted. The review focuses on the special designed artificial lift system with functions of both steam injection and oil production for offshore oilfield. At the same time, the purpose of this work is to apprise the industry and academic researchers on the various AL optimization approaches that have been used and suggest AL optimization areas where new technologies can be developed for thermally developed heavy oil reservoirs in the future.
海上热采稠油油藏人工举升系统应用
全球原油资源总量约为9 ~ 11万亿桶,蒸汽热采仍是提高稠油采收率的最有效方法。稠油热采过程中,由于稠油的高粘度、高流体温度和大流体体积随时间的变化而变化,因此选择合适的人工举升系统是稠油热采过程中优化产量的重要技术之一。尽管在过去的几十年里,有一些研究试图了解和开发尖端技术,以优化人工举升系统在热采稠油油藏中的应用,但对于各种热采方法的最佳方法AL型仍然存在不同的评价。对人工举升系统的应用进行了全面的综述,重点介绍了全球海上油田热采稠油油藏的人工举升系统应用情况。介绍了海上油田特殊设计的集注汽和采油功能于一体的人工举升系统。同时,这项工作的目的是向行业和学术研究人员介绍已经使用的各种人工智能优化方法,并建议未来可以为热开发稠油油藏开发新技术的人工智能优化领域。
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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