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首页> 外文期刊>Transport in Porous Media >Computation of the Longitudinal and Transverse Dispersion Coefficient in an Adsorbing Porous Medium Using Homogenization
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Computation of the Longitudinal and Transverse Dispersion Coefficient in an Adsorbing Porous Medium Using Homogenization

机译:均质化法在多孔吸附介质中纵向和横向色散系数的计算

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摘要

This article compares for the first time, local longitudinal and transverse dispersion coefficients obtained by homogenization with experimental data of dispersion coefficients in porous media, using the correct porosity dependence. It is shown that the longitudinal dispersion coefficient can be reasonably represented by a simple periodic unit cell (PUC), which consists of a single sphere in a cube. We present a slightly modified and simplified approach to derive the homogenized equations, which emphasizes physical aspects of homogenization. Subsequently, we give full dimensional expressions for the dispersion tensor based on a comparison with the convective dispersion equation used for contaminant transport, inclusive the correct dependence on porosity. For the PUC of choice, the dispersion relations are identical to the relations obtained for periodic media. We show that commercial finite element software can be readily used to compute longitudinal and transverse dispersion coefficients in 2D and 3D. The 3D results are for the first time obtained at relevant Peclet numbers. There is good agreement for longitudinal dispersion. The computed transverse dispersion coefficients for a single sphere in a cube are much too low. The effect of adsorption on the dispersion coefficient is also studied. Adsorption does not affect the transverse dispersion coefficient. However, adsorption enhances the longitudinal dispersion coefficient in agreement with an analysis of homogenization applied to Taylor dispersion discussed in the literature.
机译:本文首次使用正确的孔隙率相关性,将通过均质化获得的局部纵向和横向分散系数与多孔介质中分散系数的实验数据进行了比较。结果表明,纵向色散系数可以用一个简单的周期单位像元(PUC)合理地表示,它由一个立方体中的单个球组成。我们提出了一个经过稍微修改和简化的方法来导出均化方程,该方法强调了均化的物理方面。随后,我们基于与用于污染物传输的对流弥散方程的比较给出了弥散张量的完整尺寸表达式,包括对孔隙率的正确依赖性。对于选择的PUC,色散关系与周期介质的关系相同。我们表明,商业有限元软件可以轻松地用于计算2D和3D中的纵向和横向色散系数。 3D结果首次以相关的Peclet编号获得。纵向分散有很好的协议。对于一个立方体中的单个球体,所计算的横向色散系数太低。还研究了吸附对分散系数的影响。吸附不影响横向分散系数。然而,与文献中讨论的应用于泰勒分散的均质化分析相一致,吸附提高了纵向分散系数。

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  • 来源
    《Transport in Porous Media》 |2012年第3期|p.833-859|共27页
  • 作者单位

    Section of Geo-Engineering, Faculty of Civil Engineering and Geosciences, TU Delft, Stevinweg 1, 2628 CN Delft, The Netherlands;

    Section of Geo-Engineering, Faculty of Civil Engineering and Geosciences, TU Delft, Stevinweg 1, 2628 CN Delft, The Netherlands;

    Section of Geo-Engineering, Faculty of Civil Engineering and Geosciences, TU Delft, Stevinweg 1, 2628 CN Delft, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    homogenization; dispersion tensor; adsorption;

    机译:均质化色散张量吸附;

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