二氧化碳气溶性泡沫体系的构建及其注入性能
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国家自然科学基金“气溶性活性剂辅助稠油冷采的泡沫油组分传质及界面膜研究”(项目编号 52174035),新型油气勘探开发 国家科技重大专项“CO2驱油与封存全流程关键工程工艺技术及装备研究”(项目编号 2024ZD1406603)


Construction of CO2 Gas-soluble Foam System and Its Injection Performance
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    摘要:

    为了解决低渗透油藏气窜调控过程中普通水基起泡体系注入难的问题,以新疆油田八区530井区油藏为研究对象,构建了CO2气溶性泡沫体系,并从界面张力、微观结构、流变性3个方面评价其注入性能;通过岩心流动实验比较CO2气溶性泡沫与水基泡沫的封堵效果,结合并联岩心流动实验评价其调驱效果。通过实验确定了油藏条件下的CO2气溶性泡沫体系为0.4% QR-1529 + 1.0% 乙醇;在30 ℃、24 MPa下,该泡沫体系的界面张力低至1.47 mN/m,泡沫微观结构紧密且具有良好的骨架结构,助剂分子增强了起泡剂在CO2中的溶解性能;此外,该泡沫体系表现出的流变性有助于其在近井地带的流动,证明了其良好的注入性。岩心流动实验表明,CO2气溶性泡沫的阻力系数和残余阻力系数分别为 18.5、13.0,比水基泡沫分别高7.2和7.0,在岩心渗透率级差为2.54 时,CO2气溶性泡沫的调驱效果显著,低渗透岩心泡沫驱提高采收率13.7百分点,后续气驱提高采收率15.88百分点。该CO2气溶性泡沫体系具有较好注入性能与调驱能力。

    Abstract:

    In order to solve the problem of difficult injection of ordinary water-based foaming agent in the process of gas channeling control in low permeability reservoirs,taking the reservoir of 530 well area in the eighth district of Xinjiang Oilfield as the research object,a CO2 gas-soluble foam system was constructed,and the injection performance of the system was evaluated from interfacial tension,microstructure and rheology. The plugging effect of CO2 gas-soluble foam and water-based foam was compared by core flow experiment,and the profile control and flooding effect was evaluated by parallel core flow experiment. The foam system under reservoir conditions was determined to be 0.4% QR-1529 + 1.0% ethanol. The interfacial tension of the foam system was as low as 1.47 mN/m at 30 ℃ and 24 MPa. The foam microstructure was compact and had a good skeleton structure,and the additive molecules enhanced the solubility of the foaming agent in CO2. In addition,the rheology of the foam system contributed to its flow in the near wellbore area,exhibiting its good injectivity. The core flow experiment showed that the resistance factor and residual resistance factor of CO2 gas-soluble foam were 18.5 and 13.0,which was higher 7.2 and 7.0 than those of water-based foam, respectively. When the core permeability difference was 2.54,the profile control effect of CO2 gas-soluble foam was remarkable. The foam flooding of low permeability core enhanced the oil recovery rate by 13.7 percentage point,and the subsequent gas flooding enhanced the oil recovery rate by 15.88 percentage point. The CO2 gas-soluble foam system has good injection performance and profile control ability.

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赵俊伟,王 健,梁 彬,路宇豪,魏鸿坤.二氧化碳气溶性泡沫体系的构建及其注入性能[J].油田化学,2025,42(2):284-292.
ZHAO Junwei, WANG Jian, LIANG Bin, LU Yuhao, WEI Hongkun. Construction of CO2 Gas-soluble Foam System and Its Injection Performance[J]. OILFIELD CHEMISTRY,2025,42(2):284-292.

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  • 在线发布日期: 2025-07-25
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