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Prediction of empirical properties using direct pore-scale simulation of straining through 3D microtomography images of porous media

机译:通过对多孔介质的3D显微断层图像进行应变的直接孔尺度模拟来预测经验性质

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Understanding the mechanisms of filtration through porous media is relevant in many engineering applications ranging from waste water treatment and aquifer contamination in environmental engineering to estimating the permeability reduction in near wellbore region during drilling or water re-injection in petroleum engineering. In this paper we present a pore-scale approach that models straining through the pore structures extracted from X-ray tomographic images of rock and grain pack samples from the first principles, enabling the examination of current macroscopic models. While continuum models are widely used for fast prediction of the retention profiles and permeability of the host porous medium, they require a number of phenomenological parameters which are derived from matching experimental results. One of these parameters is the rate of entrapment, which is the sink term in the advection-diffusion equation. Here we find the constitutive relationship for the rate of entrapment as a product of the filtration coefficient, velocity, and concentration and validate it by comparing with core flood experiments. Results show that the pore-scale simulation gives close approximations of filtration coefficient when pore bridging and straining are the main particle capture mechanisms. (C) 2015 Elsevier B.V. All rights reserved.
机译:理解通过多孔介质过滤的机制在许多工程应用中都涉及到,从环境工程中的废水处理和含水层污染到石油工程中钻探或再注水期间估算井眼附近区域的渗透率降低。在本文中,我们提出了一种孔隙尺度方法,该模型对从岩石和谷物包装样品的X射线断层图像中提取的孔隙结构的应变模型进行了建模,这些孔隙结构是从第一原理开始的,从而可以检查当前的宏观模型。尽管连续介质模型广泛用于快速预测宿主多孔介质的保留曲线和渗透性,但它们需要许多从匹配的实验结果中得出的现象学参数。这些参数之一是捕获率,它是对流扩散方程中的吸收项。在这里,我们发现了截留率的本构关系,该率是过滤系数,速度和浓度的乘积,并通过与岩心驱替实验进行比较来对其进行验证。结果表明,当孔隙桥接和应变是主要的颗粒捕获机理时,孔隙尺度模拟给出了近似的过滤系数。 (C)2015 Elsevier B.V.保留所有权利。

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