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On nonequilibrium models of spontaneous countercurrent imbibition

机译:自发逆流吸收的非平衡模型

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Spontaneous displacement of the non-wetting phase by a wetting phase in a porous medium, known as spontaneous imbibition, is an important mechanism of oil recovery from fractured reservoirs. In this paper, we consider the nonequilibrium model, proposed by Aryana and Kovscek, where consitutive relationships for multiphase flow in porous media are functions of a locally moving time-average saturation, and allow relaxation time to be an explicit function of local saturation. We obtain asymptotic self-similar solutions for early and late times. At very early stages, the time-scale of the process characterizing the cumulative volume of displaced fluid is a power function with an exponent of where r is the inverse of pore size distribution index of the medium in question. Additionally, the cumulative volume of displaced fluid at late times is independent of relaxation time, and this volume approaches the square root of time asymptotically. Finally, the late-time solution for recovery is compared with experimental observations.
机译:非润湿相在多孔介质中被润湿相自发置换,称为自吸,是从裂缝性油藏中采油的重要机理。在本文中,我们考虑了由Aryana和Kovscek提出的非平衡模型,其中多孔介质中多相流的本构关系是局部移动时均饱和的函数,而松弛时间则是局部饱和的明确函数。我们获得了早期和晚期的渐近自相似解。在很早的阶段,表征置换流体累积体积的过程的时标是幂函数,其指数为,其中r是所讨论介质的孔径分布指数的倒数。此外,后期置换流体的累积体积与松弛时间无关,并且该体积渐近地接近时间的平方根。最后,将恢复的后期解决方案与实验观察结果进行了比较。

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