胜利油田稠油提高采收率技术进展与发展方向

Advances and Future Directions in Enhanced Oil Recovery Technologies for Heavy Oil at Shengli Oilfield

  • 摘要: 胜利油田稠油探明储量7.50×108 t,面临蒸汽吞吐采收率低、难动用储量品质差等开发瓶颈。针对深层、薄层和强敏感稠油的高效开发需求,基于机理研究与先导试验,胜利油田形成了以多元热复合驱技术、低渗稠油复合降黏压驱技术、分支水平井多元热复合开发技术等为代表的差异化提高采收率技术体系,显著提高了单井产能与区块采收率,有效支撑了稠油稳产和效益提升。目前,面对稠油油藏条件日趋复杂、能源转型要求日益迫切、绿色低碳约束持续增强等挑战,胜利油田需要加强跨学科融合,在深化机理认识、优化工艺组合和提升系统效率等方面开展系统性科技攻关,重点攻关复杂井网多元热复合驱技术、稠油原位开采技术、纳米采油技术及新能源辅助热采开发技术,形成适应复杂油藏条件的新一代稠油提高采收率技术体系,为稠油高效开发提供技术支撑。

     

    Abstract: The proven reserves of heavy oil in Shengli oilfield amount to 750 million tons , yet its development faces bottlenecks such as low oil recovery of steam stimulation and poor reservoir quality To efficiently developing deep, thin, and highly sensitive heavy oil reservoirs, Shengli Oilfield has established a differentiated enhanced oil recovery (EOR) technique system based on mechanism studies and pilot tests, including multi component thermal flooding, high pressure viscosity reduction flooding for low-permeability heavy oil, and multi component thermal stimulation using branched horizontal wells. Such technologies have significantly improved both well productivity and overall block oil recovery, effectively supporting stable heavy oil production and increasing economic benefits. Currently, facing challenges such as increasingly complex reservoir conditions, urgent demands for energy transition, and continuously enhanced green and low-carbon constraints, Shengli Oilfield needs to strengthen interdisciplinary integration. Systematic scientific investigation should be conducted to deepen mechanistic understanding, optimize process combination, and enhance system efficiency. Key areas include multi component thermal flooding using complex well patterns, in-situ heavy oil extraction, nanotechnology for oil recovery, and new energy-assisted thermal recovery. The aim is to develop a new-generation EOR system adaptable to complex reservoir conditions, providing technical support for the efficient development of heavy oil.

     

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