Numerical Simulation of Three Phase Displacement Characteristics of Foam Fluid In Homogeneous Porous Media

D. Du, D. Zhang
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Abstract

Foam technology has found wide applications in enhanced oil recovery and greenhouse geological storage. In this paper, a numerical simulate is carried out with the stochastic bubble population balance model on the foam three phase displacement process in a homogeneous oil/water/gas coexistence porous media of liquid. The effects of the maximum equilibrium bubble density nmax and the foam generation rate Kg on foam displacement process is mainly discussed. Numerical results indicate that the oil phase can be displaced well by foam fluid. Larger nmax values lead to higher apparent viscosity of foam and higher the pressure difference, and with the increase of Kg, the number of foam can reach a balance in a short distance, so it has better displacement effect on the oil phase components. The results obtained in this paper have a certain guiding role in understanding the enhanced oil recovery mechanism of foam fluid.
均匀多孔介质中泡沫流体三相位移特性的数值模拟
泡沫技术在提高石油采收率和温室地质储油等方面有着广泛的应用。本文采用随机气泡种群平衡模型,对均匀油/水/气共存液体多孔介质中泡沫三相驱替过程进行了数值模拟。重点讨论了最大平衡气泡密度nmax和泡沫生成率Kg对泡沫置换过程的影响。数值结果表明,泡沫流体可以很好地驱替油相。nmax越大,泡沫表观粘度越高,压差越大,随着Kg的增加,泡沫数量能在短距离内达到平衡,因此对油相组分的驱替效果较好。所得结果对理解泡沫流体提高采收率机理具有一定的指导作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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