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Migration of colloids in discretely fractured porous media: effect of colloidal matrix diffusion

机译:胶体在离散断裂的多孔介质中的迁移:胶体基质扩散的影响

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Numerical simulations of colloid transport in discretely fractured porous media were performed to investigate the importance of matrix diffusion of colloids as well as the filtration and remobilization of colloidal particles in both the fractures and porous matrix. To achieve this objective a finite element numerical code entitled COLDIFF was developed. The processes that COLDIFF takes into account include advective-dispersive transport of colloids, filtration and remobilization of colloidal particles in both fractures and porous matrix, and diffusive interactions of colloids between the fractures and porous matrix. Three sets of simulations were conducted to examine the importance of parameters and processes controlling colloid migration. First, a sensitivity analysis was performed using a porous block containing a single fracture to determine the relative importance of various phenomenological coefficients on colloid transport. The primary result of the analysis showed that the porosity of the matrix and the process of colloid filtration in fractures play important roles in controlling colloid migration. Second, simulations were per- formed to replicate and examine the results of a laboratory column study using a fractured shale saprolite. Results of this analysis showed that the filtration of colloidal particles in the porous matrix can greatly affect the tailing of colloid concentrations after the colloid source was removed. Finally, field--scale simulations were performed to examine the effect of matrix porosity, fracture filtration and fracture remobilization on long--term colloid concentration and migration distance. The field scale simulations indicated that matrix diffusion and fracture filtration can significantly reduce colloid migration distance. Results of all three analyses indicated that in environments where porosity is relatively high and colloidal particles are small enough to diffuse out of fractures. the characteristics of the porous matrix that affect colloid transport become more important than those of the fracture network. Because the properties of the fracture network tend to have greater uncertainty due to difficulties in their measurement relative to those of the porous matrix, prediction uncertainties associated with colloid transport in discretely fractured porous media may be reduced.
机译:进行了离散裂缝多孔介质中胶体运移的数值模拟,以研究胶体基质扩散以及裂缝和多孔基质中胶体颗粒的过滤和迁移的重要性。为了实现这一目标,开发了名为COLDIFF的有限元数字代码。 COLDIFF考虑的过程包括胶体的对流-分散运输,裂缝和多孔基质中胶体颗粒的过滤和迁移以及裂缝和多孔基质之间胶体的扩散相互作用。进行了三组模拟,以检查控制胶体迁移的参数和过程的重要性。首先,使用包含单个裂缝的多孔块进行了敏感性分析,以确定各种现象学系数对胶体运输的相对重要性。分析的主要结果表明,基质的孔隙率和裂缝中胶体的过滤过程在控制胶体迁移方面起着重要作用。其次,进行了模拟,以复制和检验使用裂缝性页岩腐泥土的实验室柱研究结果。分析结果表明,去除胶体来源后,多孔基质中胶体颗粒的过滤可极大地影响胶体浓度的拖尾。最后,进行了现场规模的模拟,以检查基质孔隙率,裂缝过滤和裂缝固结对长期胶体浓度和迁移距离的影响。现场规模的模拟表明,基质扩散和裂缝过滤可以显着减少胶体迁移距离。所有这三个分析的结果表明,在孔隙度相对较高且胶体颗粒足够小以扩散出裂缝的环境中。影响胶体传输的多孔基质的特性变得比断裂网络的特性更为重要。由于相对于多孔基体的测量困难,由于裂缝网络的性质由于其测量困难而趋于具有更大的不确定性,因此可以减少与离散裂缝的多孔介质中的胶体运输相关的预测不确定性。

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