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Reactive silica transport in fractured porous media: Analytical solution for a single fracture

机译:裂缝性多孔介质中反应性二氧化硅的传输:单个裂缝的解析溶液

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摘要

A general analytical solution is derived by using the Laplace transformation to describe transient reactive silica transport in a conceptualized 2-D system involving a single fracture embedded in an impervious host rock matrix. This solution differs from previous analyses in that it takes into account both hydrodynamic dispersion and advection of silica transport along the fracture, and hence takes the form of an infinite integral. Several illustrative calculations are undertaken to confirm that neglecting the dispersion term may lead to erroneous silica distribution along the fracture and within the host matrix, and the error becomes severe with a smaller rate of fluid flow in the fracture. The longitudinal dispersion is negligible only at steady state or when the flow rate in the fracture is higher. The analytical solution can serve as a benchmark to validate numerical models that simulate reactive mass transport in fractured porous media.
机译:通过使用Laplace变换描述概念化的二维系统中瞬态反应性二氧化硅的运移,可以得出一个一般的分析解决方案,该系统涉及嵌入在不渗透的主体岩石基质中的单个裂缝。该解决方案与以前的分析不同之处在于,它既考虑了流体动力扩散又考虑了沿裂缝的二氧化硅运移的对流,因此采用无限积分的形式。进行了几次说明性计算,以确认忽略弥散项可能导致沿裂缝以及在基质基质内部分布错误的二氧化硅,并且随着裂缝中流体流速的减小,误差变得严重。纵向分散仅在稳态或裂缝中的流速较高时才可忽略不计。该分析解决方案可以用作基准,以验证模拟裂隙多孔介质中反应性质量传输的数值模型。

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