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Impact of local diffusion on macroscopic dispersion in three-dimensional porous media

机译:局部扩散对三维多孔介质中宏观分散的影响

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AbstractWhile macroscopic longitudinal and transverse dispersion in three-dimensional porous media has been simulated previously mostly under purely advective conditions, the impact of diffusion on macroscopic dispersion in 3D remains an open question. Furthermore, both in 2D and 3D, recurring difficulties have been encountered due to computer limitation or analytical approximation. In this work, we use the Lagrangian velocity covariance function and the temporal derivative of second-order moments to study the influence of diffusion on dispersion in highly heterogeneous 2D and 3D porous media. The first approach characterizes the correlation between the values of Eulerian velocity components sampled by particles undergoing diffusion at two times. The second approach allows the estimation of dispersion coefficients and the analysis of their behaviours as functions of diffusion. These two approaches allowed us to reach new results. The influence of diffusion on dispersion seems to be globally similar between highly heterogeneous 2D and 3D porous media. Diffusion induces a decrease in the dispersion in the direction parallel to the flow direction and an increase in the dispersion in the direction perpendicular to the flow direction. However, the amplification of these two effects with the permeability variance is clearly different between 2D and 3D. For the direction parallel to the flow direction, the amplification is more important in 3D than in 2D. It is reversed in the direction perpendicular to the flow direction.]]>
机译:<![cdata [ Abstract 在三维多孔介质中的宏观纵向和横向分散在先前在纯粹的平流条件下模拟,扩散对宏观分散的影响3D仍然是一个开放的问题。此外,由于计算机限制或分析近似,遇到了2D和3D中的经常性困难。在这项工作中,我们使用拉格朗日速度协方差函数和二阶片刻的时间衍生来研究扩散对高度异质2D和3D多孔介质中的分散的影响。第一方法表征了通过经历两次传播的粒子采样的欧拉速度分量的值与eulerian速度分量之间的相关性。第二种方法允许估计分散系数和它们行为的分析作为扩散的函数。这两种方法使我们能够达到新的结果。扩散对分散的影响似乎在高度异质的2D和3D多孔介质之间存在相似。扩散在平行于流动方向的方向上引起分散的减小,并且在垂直于流动方向的方向上的分散的增加。然而,通过渗透性方差的这两种效应的扩增在2D和3D之间明显不同。对于平行于流动方向的方向,扩增在3D中比2D更重要。它在垂直于流动方向的方向上反转。 ]]>

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