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Numerical Modeling of Solute Transport in Porous Medium with Spatially-Dependent Dispersion and First-Order Chemical Reaction

机译:具有空间依赖性分散和一阶化学反应的多孔介质中溶质溶液的数值模拟

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A one-dimensional advective-dispersive solute transport model with scaledependent dispersion coefficient in the presence of a first-order chemical reaction is considered. Two types of variations of the dispersion coefficient with the downstream distance are considered. The first type assumes that the dispersivity increases as a polynomial function with distance while the other assumes an exponentiallyincreasing function. Since the general problem is nonlinear and possesses no analytical solutions, a numerical solution based on an efficient implicit iterative tridiagonal finite-difference method is obtained. Comparisons with previously published analytical and numerical solutions for special cases of the main transport equation are performed and found to be in excellent agreement. A parametric study of all physical parameters is conducted and the results are presented graphically to illustrate interesting features of the solutions. The scale-dependent polynomial type dispersion coefficient is predicted to obtain significant changes in the solute concentration at all dimensionless time stages compared with the constant dispersion case. However, relatively smaller changes in the concentration level are predicted for the exponentially-increasing dispersion coefficient.
机译:考虑了在存在一阶化学反应存在下具有缩小依存分散系数的一维平面分散的溶质转运模型。考虑了具有下游距离的分散系数的两种类型的变化。第一种类型假设分散性随着具有距离的多项式函数而增加,而另一个是假设指数升起的功能。由于一般问题是非线性并且没有分析解决方案,因此获得了基于有效的隐式迭代三角形有限差分方法的数值解决方案。进行了与先前公布的主要传输方程式的分析和数值解决方案的比较,并发现了很好的一致性。对所有物理参数进行参数研究,并将结果以图形方式呈现,以说明解决方案的有趣特征。预计依赖依赖性多项式型分散系数,以与恒定的分散情况相比,在所有无量纲时间阶段获得溶质浓度的显着变化。然而,预测浓度水平的相对较小的变化对于指数增加的分散系数。

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