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利用孔隙尺度图像上的直接模拟对不同类型多孔介质中非菲克溶质运移进行预测。

Predictions of non-Fickian solute transport in different classes of porous media using direct simulation on pore-scale images.

作者信息

Bijeljic Branko, Raeini Ali, Mostaghimi Peyman, Blunt Martin J

机构信息

Department of Earth Science and Engineering, Imperial College, London SW7 2BP, United Kingdom.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jan;87(1):013011. doi: 10.1103/PhysRevE.87.013011. Epub 2013 Jan 10.

Abstract

We present predictions of transport through micro-CT images of porous media that include the analysis of correlation structure, velocity, and the dynamics of the evolving plume. We simulate solute transport through millimeter-sized three-dimensional images of a beadpack, a sandstone, and a carbonate, representing porous media with an increasing degree of pore-scale complexity. The Navier-Stokes equations are solved to compute the flow field and a streamline simulation approach is used to move particles by advection, while the random walk method is employed to represent diffusion. We show how the computed propagators (concentration as a function of displacement) for the beadpack, sandstone, and carbonate depend on the width of the velocity distribution. A narrow velocity distribution in the beadpack leads to the least anomalous behavior, where the propagators rapidly become Gaussian in shape; the wider velocity distribution in the sandstone gives rise to a small immobile concentration peak, and a large secondary mobile peak moving at approximately the average flow speed; in the carbonate with the widest velocity distribution, the stagnant concentration peak is persistent, with a slower emergence of a smaller secondary mobile peak, characteristic of highly anomalous behavior. This defines different types of transport in the three media and quantifies the effect of pore structure on transport. The propagators obtained by the model are in excellent agreement with those measured on similar cores in nuclear magnetic resonance experiments by Scheven, Verganelakis, Harris, Johns, and Gladden, Phys. Fluids 17, 117107 (2005).

摘要

我们展示了通过多孔介质的微观CT图像进行输运预测,其中包括对相关结构、速度以及演化羽流动力学的分析。我们模拟了溶质在毫米级三维珠子填充床、砂岩和碳酸盐岩图像中的输运,这些分别代表了孔隙尺度复杂性逐渐增加的多孔介质。通过求解纳维-斯托克斯方程来计算流场,并采用流线模拟方法通过平流移动粒子,同时使用随机游走方法来表示扩散。我们展示了珠子填充床、砂岩和碳酸盐岩计算得到的传播子(浓度作为位移的函数)如何依赖于速度分布的宽度。珠子填充床中狭窄的速度分布导致最少的异常行为,其中传播子迅速变为高斯形状;砂岩中较宽的速度分布产生一个小的固定浓度峰和一个以近似平均流速移动的大的次级移动峰;在速度分布最宽的碳酸盐岩中,停滞浓度峰持续存在,较小的次级移动峰出现较慢,这是高度异常行为的特征。这定义了三种介质中不同类型的输运,并量化了孔隙结构对输运的影响。该模型得到的传播子与Scheven、Verganelakis、Harris、Johns和Gladden在《物理流体》17, 117107 (2005)中通过核磁共振实验在类似岩芯上测量得到的结果非常吻合。

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