首页> 外文会议>SPE Reservoir Characterisation and Simulation Conference >Investigation of Large Scale CO2 EOR and Sequestration Potential in Northern China N.Y. Zhang D. SINOPEC N. J. Miller D. Enco-Energy N. L. Roman D. Rock Tech Inc.
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Investigation of Large Scale CO2 EOR and Sequestration Potential in Northern China N.Y. Zhang D. SINOPEC N. J. Miller D. Enco-Energy N. L. Roman D. Rock Tech Inc.

机译:中国北部大型二氧化碳EOR和封存潜力的研究N.Y.Y. Zhang D. Sinopec N. J. Miller D. Enco-Encem-Encem-Energy N.L. Roman D. Rock Tech Inc。

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摘要

Most oil reservoirs in the Daqing Oilfield area have entered middle and late development stages after nearly 40-years of production, and they are suitable for applying CO2 EOR and carbon storage techniques. This study is aimed at assessing the potential of CO2 EOR and storage in three large oil fields in the region based on the data of 389 mature oil reservoirs. The assessments include a regional geology assessment, storage site screening, reservoir screening for CO2 EOR and EOR potential and storage capacity calculations. Many mature oil reservoirs are close to the main CO2 sources and have good geographical and geological conditions for CO2 storage. Of 42 reservoirs, 26 are suitable both for EOR and storage while 17 reservoirs were found suitable for storage as depleted oil reservoirs. The total EOR potential could be 2699.6×104 MMt and the CO2 storage potential could reach 19,554.5×104 MMt. The overall incremental oil recovery rate could be 5.76%. The greater OOIP the oil reservoir has, the greater potential for CO2 EOR and storage it will have, and the more suitable for large-scale storage projects it will be. Those oil reservoirs suitable for CO2 EOR with large OOIP will be the preferred sites for CO2 storage. Many nearly depleted oil reservoirs with large OOIP can be considered as main sites for CO2 storage in the near future.
机译:大庆油田区域的大多数石油储层在近40多年的生产后进入了中期和晚期开发阶段,它们适用于应用CO2 EOR和碳储存技术。本研究旨在根据389种成熟的油藏数据的数据评估该地区三大油田中CO2 EOR和储存的潜力。该评估包括区域地质评估,储存网站筛选,CO2 EOR和EOR潜在潜在和储存能力计算的储层筛选。许多成熟的油藏接近主要CO2来源,并具有良好的CO2储存地理和地质条件。在42个储存器中,26个适用于EOR和储存,而17个储存器被发现适合作为耗尽的储物储存器。 EOR潜力总可能为2699.6×104mmt,CO2储存电位可达到19,554.5×104mmt。整体增量溢油率可能为5.76%。储油储层的较大的ooIP具有,CO 2 EOR和储存的潜力越大,它将具有更适合的大型存储项目。适用于具有大ooIP的CO 2 EOR的那些油储存器将是CO 2储存的优选位点。许多具有大型ooIP的几乎耗尽的油藏可被视为在不久的将来的二氧化碳储存的主要部位。

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