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Semi-analytical solutions for solute transport and exchange in fractured porous media

机译:压裂多孔介质中溶质运移和交换的半解析解

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摘要

Fracture-matrix interactions can significantly affect solute transport in fractured porous media and rocks, even when fractures are major (or sole) conduits of flow. We develop a semi-analytical solution for transport of conservative solutes in a single fracture. Our solution accounts for two-dimensional dispersion in the fracture, two-dimensional diffusion in the ambient matrix, and fully coupled fracture-matrix exchange, without resorting to simplifying assumptions regarding any of these transport mechanisms. It also enables one to deal with arbitrary initial and boundary conditions, as well as with distributed and point sources. We investigate the impact of transverse dispersion in a fracture and longitudinal diffusion in the ambient matrix on the fracture-matrix exchange, both of which are neglected in standard models of transport in fractured media.
机译:即使当裂缝是主要的(或唯一的)流动通道时,裂缝与基质的相互作用也会显着影响溶质在破裂的多孔介质和岩石中的传输。我们开发了一种在单个裂缝中运输保守性溶质的半解析解决方案。我们的解决方案考虑了裂缝中的二维扩散,周围基质中的二维扩散以及完全耦合的裂缝-基质交换,而无需简化关于这些传输机制中任何一个的假设。它还使人们能够处理任意的初始条件和边界条件,以及分布式和点源。我们研究了裂缝中的横向扩散和周围基质中的纵向扩散对裂缝-基质交换的影响,这在裂缝性介质的运输标准模型中均被忽略。

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  • 来源
    《Water resources research》 |2012年第1期|p.W01542.1-W01542.10|共10页
  • 作者单位

    Department of Mechanical and Aerospace Engineering, University of California, San Diego, 9500 Gilman Dr., La Jolla, CA 92093, USA;

    Geosciences Rennes, UMR CNRS 6118, Universite de Rennes I, Campus de Beaulieu, F-35042 Rennes CEDEX, France;

    Department of Mechanical and Aerospace Engineering, University of California, San Diego, 9500 Gilman Dr., La Jolla, CA 92093, USA;

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