油气藏CO2封存和提高采收率双效适宜性评价:以渤海湾盆地典型油区为例

    Evaluation of the dual-effect suitability of CO2 storage and enhanced oil recovery in oil and gas reservoirs: a case study of typical oilfields in the Bohai Bay Basin

    • 摘要: 含油气储层中CO2捕集、利用与封存(CCUS)技术是我国实现“双碳”目标的重要技术选择,也是化石能源净零排放的核心技术,兼具良好的经济效益和生态效益,是我国当前国情下应优先发展的减碳增效技术。为探索含油气盆地油气藏CO2封存潜力与提高采收率适宜性评价方法,以渤海湾盆地大港油田典型油气为例,在国内外油气藏CO2封存潜力评价方法综合对比的基础上,结合渤海湾盆地实际情况及本次研究采集的数据类型,选取ECO2fys法作为研究区油气藏CO2封存潜力的评价方法,并建立基于油田封存潜力、单位面积封存潜力、油田原油性质、储层条件及油藏条件等多要素耦合的封存和提高采收率双效适宜性评价方法;经综合评价,计算渤海湾盆地大港油区十个油田总CO2封存潜力为2 934×104 t,CO2提高采收率潜力为97×106 t,其中,北大港油田、枣园油田和王官屯油田可以作为大港油区优先开展CCUS工业化示范的重点区;采用类比法对整个渤海湾盆地重点含油气区CCUS适宜性进行了评估和展望,估算渤海湾盆地油气藏CO2封存潜力约为6.81×108 t,其中,以胜利油田封存量最大,估算渤海湾盆地CO2提高采收率潜力约为22.66×108 t,济阳坳陷西部、华北油田南部、大港油田北部、部分海域等地区适合优先开展CO2封存与综合利用示范,研究结果为推动渤海湾盆地及相似含油气盆地CCUS商业化进程提供理论借鉴和技术借鉴。

       

      Abstract: The carbon capture, utilization, and storage (CCUS) technology in oil and gas reservoirs is a crucial technological choice for China to achieve its “dual carbon” goals and a core technology for achieving net-zero emissions from fossil fuels. It offers both economic and ecological benefits and is a priority carbon reduction and efficiency enhancement technology given China’s current national conditions. To explore the potential for CO2 storage in oil and gas reservoirs in oil and gas basins and to improve the suitability evaluation method for enhanced oil recovery (EOR), taking the typical oil and gas reservoirs in the Dagang Oilfield Area of the Bohai Bay Basin as an example, based on a comprehensive comparison of evaluation methods for CO2 storage potential in oil and gas reservoirs at home and abroad, combined with the actual situation of the Bohai Bay Basin and the types of data collected in this study, the ECO2fys method is selected as the evaluation method for CO2 storage potential in the study area’s oil and gas reservoirs. A dual-effect suitability evaluation method for storage-EOR is established, which is based on multiple factors such as oilfield storage potential, storage potential per unit area, crude oil properties, reservoir conditions, and oil reservoir conditions. Through comprehensive evaluation, the total CO2 storage potential of ten oilfields in the Dagang Oil Region of the Bohai Bay Basin is calculated to be 2 934×104 t, and the potential for CO2 to enhance oil recovery is 97×106 t. Among them, the Beidagang Oilfield, Zaoyuan Oilfield, and Wangguantun Oilfield can be prioritized for CCUS industrialization demonstration in the Dagang Oil Area. The suitability of CCUS in key oil and gas-bearing areas of the entire Bohai Bay Basin is evaluated and prospected using an analogy method. The estimated CO2 storage potential in the Bohai Bay Basin’s oil and gas reservoirs is approximately 6.81×108 t, with Shengli Oilfield having the largest storage capacity. The estimated potential for CO2 to enhance oil recovery in the Bohai Bay Basin is approximately 22.66×108 t. Areas such as the Western Jiyang Depression, the Southern Huabei Oilfield, the Northern Dagang Oilfield, and some offshore areas are suitable for prioritizing CO2 storage and comprehensive utilization demonstration. The research results provide theoretical and technical references for promoting the commercialization process of CCUS in the Bohai Bay Basin and similar oil and gas basins.

       

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