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Transport modeling of nonlinearly adsorbing solutes in physically heterogeneous pore networks

机译:物理非均质孔隙网络中非线性吸附溶质的输运模型

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The purpose of this study is to upscale nonlinearly reactive transport from the pore scale to a heterogeneous porous medium with the aid of a sufficiently large three-dimensional pore network model. We consider a porous medium that is chemically homogeneous (sorption reactivity is constant in space) but physically heterogeneous, as it has a spatially variable pore size. Our numerical experiments aim to assess whether traveling wave (TW) behavior develops and to assess how large a network is required to be to allow our conclusions. This study revealed that for this purpose the network should include more than a million pore units and that this size varies with the degree of heterogeneity. This assertion is based on temporal changes of the moments of a migrating front of nonlinearly adsorbing solute. In networks of equal sized pores, TW behavior occurs, and concentration distributions can be predicted by an analytical solution. For increasing physical heterogeneity the balance between the dispersive and adsorptive forces remains absent because the second central moment continues to grow as a function of time. The growth rate of this moment is a function of pore-scale heterogeneity.
机译:这项研究的目的是借助足够大的三维孔隙网络模型,将非线性反应性迁移从孔隙尺度扩展到非均质多孔介质。我们认为一种多孔介质在化学上是均质的(吸附反应性在空间中是恒定的),但在物理上是非均质的,因为它具有空间可变的孔径。我们的数值实验旨在评估行波(TW)行为是否发展,并评估需要多大的网络才能得出结论。这项研究表明,为此目的,网络应包括超过一百万个孔单元,并且该大小随异质性程度而变化。该断言基于非线性吸附溶质的迁移前沿的矩的时间变化。在相等大小的孔网络中,会发生TW行为,并且可以通过分析解决方案预测浓度分布。为了增加物理异质性,分散力和吸附力之间的平衡仍然不存在,因为第二中心矩随时间而持续增长。此刻的增长率是孔隙尺度异质性的函数。

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