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Evolution of the effective permeability for transient and pore-scale two-phase flow in real porous media

机译:实际多孔介质中瞬态和孔尺度两相流有效渗透率的演变

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Permeability is one of the key parameters to model and predict the infiltration or transport process of fluid through a porous media. However, most models and approaches that have been developed experimentally, theoretically or numerically to determine the saturated permeability for steady flow are indirect or based on predefined or virtual porous media models. To the best of our knowledge, the variation behavior of the effective permeability with the infiltration length or time in unsaturated flow based on a real porous media has rarely been considered and is little understood. Herein, we propose a simple numerical method of modelling the infiltration processes of a liquid though a porous media preform based on a real porous media obtained from an experimental scanning electron microscopy (SEM) image and validate it by comparing the simulated results with experimental data. Then, we calculate the unsaturated permeability using Darcy's law based on the results of numerical simulation without any structural parameters of porous media. The evolution of the effective permeability with the time or flow front is then presented, and the relationship between the saturation degree and permeability is also considered. The numerical results indicate that (i) the maximum infiltration length along the macroscopic flow direction globally characterizes the variations of the flow front better than the other parameters; (ii) the effective permeability of an unsaturated porous media decreases exponentially with time and the advancing of the flow front and decreases with the degree of saturation following a power-law trend; and (iii) the saturation evolution may have great effects on the effective permeability of a liquid through a porous media.
机译:渗透率是建模和预测流体通过多孔介质的渗透或传输过程的关键参数之一。但是,大多数通过实验,理论或数字确定稳态渗透率的模型和方法都是间接的或基于预定义的或虚拟的多孔介质模型。据我们所知,基于真实的多孔介质,在非饱和流中有效渗透率随渗透长度或渗透时间的变化行为很少被考虑并且很少被理解。本文中,我们提出了一种简单的数值方法,该方法基于从实验扫描电子显微镜(SEM)图像获得的真实多孔介质,对通过多孔介质预成型坯的液体渗透过程进行建模,并通过将模拟结果与实验数据进行比较来对其进行验证。然后,基于没有多孔介质任何结构参数的数值模拟结果,我们使用达西定律计算了非饱和渗透率。然后给出了有效渗透率随时间或流动前沿的演变,并考虑了饱和度与渗透率之间的关系。数值结果表明:(i)沿宏观流动方向的最大入渗长度总体上比其他参数更好地表征了流动锋面的变化; (ii)不饱和多孔介质的有效渗透率随幂律趋势随时间和流动前沿的发展而呈指数下降,并随饱和度而下降; (iii)饱和度的演变可能对液体通过多孔介质的有效渗透率有很大影响。

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