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Ion transport in porous media: derivation of the macroscopic equations using upscaling and properties of the effective coefficients

机译:多孔介质中的离子传输:使用放大系数和有效系数的性质推导宏观方程

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In this work, we undertake a numerical study of the effective coefficients arising in the upscaling of a system of partial differential equations describing transport of a dilute N-component electrolyte in a Newtonian solvent through a rigid porous medium. The motion is governed by a small static electric field and a small hydrodynamic force, around a nonlinear Poisson–Boltzmann equilibrium with given surface charges of arbitrary size. This approach allows us to calculate the linear response regime in a way initially proposed by O’Brien. The O’Brien linearization requires a fast and accurate solution of the underlying Poisson–Boltzmann equation. We present an analysis of it, with the discussion of the boundary layer appearing as the Debye–Hückel parameter becomes large. Next, we briefly discuss the corresponding two-scale asymptotic expansion and reduce the obtained two-scale equations to a coarse scale model. Our previous rigorous study proves that the homogenized coefficients satisfy Onsager properties, namely they are symmetric positive definite tensors. We illustrate with numerical simulations several characteristic situations and discuss the behavior of the effective coefficients when the Debye–Hückel parameter is large. Simulated qualitative behavior differs significantly from the situation when the surface potential is given (instead of the surface charges). In particular, we observe the Donnan effect (exclusion of co-ions for small pores).
机译:在这项工作中,我们进行了数值模拟,研究了由偏微分方程组的升迁产生的有效系数,该系统描述了牛顿溶剂中稀N组分电解质通过刚性多孔介质的传输。该运动由小的静电电场和小的流体动力控制,围绕给定大小的给定表面电荷的非线性Poisson-Boltzmann平衡。这种方法使我们能够以O'Brien最初提出的方式来计算线性响应范围。 O’Brien线性化要求快速准确地解决基础泊松(Poisson–Boltzmann)方程。我们对它进行分析,并随着Debye-Hückel参数变大而出现边界层的讨论。接下来,我们简要讨论相应的两尺度渐近展开,并将获得的两尺度方程式简化为粗尺度模型。我们以前的严格研究证明,均化系数满足Onsager性质,即它们是对称的正定张量。我们用数值模拟说明了几种典型情况,并讨论了Debye-Hückel参数较大时有效系数的行为。模拟的定性行为与给定表面电势(而不是表面电荷)的情况大不相同。特别是,我们观察到了Donnan效应(排除小孔的共离子)。

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