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Physical simulation and fine digital study of thermal foam compound flooding

机译:泡沫复合驱的物理模拟与精细数字研究

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According to the similarity criterion of 3D physical simulation of thermal recovery, experimental parameters of 3D physical simulation of steam flooding and thermal foam compound flooding in extra-heavy oil reservoirs of the Gudao Oilfield were calculated, and relevant experiments were carried out. Based on the experimental results, 3D fine numerical simulation was carried out to analyze the steam flooding and thermal foam compound flooding in heavy oil reservoirs. The results show that thermal foam compound flooding could effectively inhibit steam channeling and improve sweep efficiency, and thus enhance the oil recovery in heavy oil reservoirs after steam flooding. Technological parameters of thermal foam compound flooding were optimized according to the results of fine numerical simulation. The optimum injection method is foam-slug injection, the optimal steam injection rate is 25 mL/min, nitrogen injection rate is 1 000 mL/min (standard conditions), the time of foam-slug injection is 1.0 min and the interval between foam-slugs is about 10-20 min during thermal foam-slug injection. At last, the similarity criterion was employed for inversion calculation of the optimization results. Based on the results, optimal field injection and production parameters can be confirmed. The ultimate recovery ratio of thermal foam compound flooding in super-heavy oil reservoirs could reach 42.15%, which is 12.50% higher than steam flooding.
机译:根据热采3D物理模拟的相似准则,计算了孤岛油田超重油层蒸汽驱和泡沫复合驱3D物理模拟的实验参数,并进行了相关实验。根据实验结果,进行了3​​D精细数值模拟,以分析稠油油藏中的蒸汽驱和热泡沫复合驱。结果表明,热发泡复合驱可以有效抑制蒸汽窜流,提高波及效率,从而提高蒸汽驱后稠油油藏的采收率。根据精细的数值模拟结果,优化了热发泡复合驱技术参数。最佳注入方法是泡沫团块注入,最佳蒸汽注入速率为25 mL / min,氮气注入速率为1000 mL / min(标准条件),泡沫块注入时间为1.0 min,泡沫之间的间隔在热泡沫团块注射过程中,团块大约需要10-20分钟。最后,采用相似性准则对优化结果进行反演。根据结果​​,可以确定最佳的现场注入和生产参数。超重油油藏热发泡复合驱的最终采收率可达42.15%,比蒸汽驱高12.50%。

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