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Solute transport in dual-permeability porous media

机译:双重渗透多孔介质中的溶质运移

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摘要

A dual-advection dispersion equation (DADE) is presented and solved to describe solute transport in structured or layered porous media with different nonzero flow rates in two distinct pore domains with linear solute transfer between them. This dual-permeability model constitutes a generalized version of the advection-dispersion equation (ADE) for transport in uniform porous media and the mobile-immobile model (MIM) for transport in media with a mobile and an immobile pore domain. Analytical tools for the DADE have mostly been lacking. An analytical solution has therefore been derived using Laplace transformation with time and modal decomposition based on matrix diagonalization, assuming the same dispersivity for both domains. Temporal moments are derived for the DADE and contrasted with those for the ADE and the MIM. The effective dispersion coefficient for the DADE approaches that of the ADE for a similar velocity in both pore domains and large values for the first-order transfer parameter, and approaches that of the MIM for the opposite conditions. The solution of the DADE is used to illustrate how differences in pore water velocity between the domains and low transfer rates will lead to double peaks in the volume- or flux-averaged concentration profiles versus time or position. The DADE is applied to optimize experimental breakthrough curves for an Andisol with a distinct intra- and interaggregate porosity. The DADE improved the description of the breakthrough data compared to the ADE and the MIM.
机译:提出并求解了一个对流弥散方程(DADE),以描述溶质在结构化或层状多孔介质中的迁移情况,该介质在两个不同的孔域中具有不同的非零流速,并且它们之间具有线性溶质转移。这种双重渗透性模型构成了在均匀多孔介质中传输的对流扩散方程(ADE)的广义形式,以及在具有可移动和不可移动孔隙域的介质中传输的可移动固定模型(MIM)。大部分缺乏用于DADE的分析工具。因此,假设两个域的色散性相同,则可以使用基于矩阵对角线的Laplace变换和基于模态分解的时间来得出解析解。推导了DADE的时间矩,并将其与ADE和MIM的矩进行了对比。对于DADE的有效色散系数,在两个孔域中具有相似的速度并且对于一阶传递参数具有较大的值时,接近ADE的色散系数;而在相反条件下,则接近MIM的色散系数。 DADE的解决方案用于说明区域之间的孔隙水速度差异和低传输速率如何导致体积平均或通量平均浓度曲线相对于时间或位置的双峰。 DADE用于优化Andisol的内部和内部聚集体孔隙率的实验突破曲线。与ADE和MIM相比,DADE改进了突破性数据的描述。

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  • 来源
    《Water resources research》 |2012年第4期|p.W04523.1-W04523.13|共13页
  • 作者单位

    Department of Civil Engineering and Construction Engineering Management, California State University, 1250 Bellflower Blvd., Long Beach, CA 90840, USA;

    Laboratory of Soil Physics and Hydrology, Faculty of Bioresources, Mie University, 1577 Kurima-Machiya, Tsu City, Mie Prefecture,514-8507, Japan;

    U.S. Environmental Protection Agency, National Center for Environmental Assessment (8623P), 1200 Pennsylvania, Ave., N.W.,Washington, D.C. 20460, USA;

    Department of Civil Engineering and Construction Engineering Management, California State University, 1250 Bellflower Blvd., Long Beach, CA 90840, USA;

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