Numerical Analyses on Contaminant Transport Using a Dual Reactive Domain Model

D. Jeong, J. Choe
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引用次数: 2

Abstract

An advection-dispersion equation (ADE) describes contaminant transport in porous media. An ADE can cover equilibrium phenomena of interest, which includes sorption, decay, and chemical reactions. Among these phenomena, sorption mechanism is described by several types of sorption isotherm. If sorption isotherm is linear, the solution of the ADE can be easily obtained. However, if sorption isotherm is non-linear, like Langmuir model or non-linear Freundlich molel, the coefficients of resultant differential equation become non-linear. In this case, there is no analytic solution. Dual reactive domain model (DRDM) is a combined model of linear and Langmuir models, so it can cover linear and non-linear characteristics of sorption behavior. In this article, we present numerical analyses of ADE using a DRDM. The simulation results reveal that even if sorption data may be fitted well using linear or non-linear isotherms, the characteristics of contaminant transport by applying the two are quite different from each other. To be concrete, the retardation effect of linear isotherm is different from that of the DRDM. As the non-linearity of sorption isotherm increases, the difference of retardation effects of the two cases becomes large. Even if we use a DRDM to simulate contaminant transport, which shows a linear or non-linear sorption behavior, we can get pretty similar simulation results. Although the transport of contaminant is very sensitive to sorption models used, using a DRDM can reduce the uncertainty due to the selection of sorption model. Therefore, we recommend a DRDM as a sorption model to more accurately describe the transport of contaminant.
基于双反应域模型的污染物输运数值分析
一个平流-色散方程(ADE)描述了污染物在多孔介质中的迁移。ADE可以涵盖感兴趣的平衡现象,包括吸附、衰变和化学反应。在这些现象中,用几种吸附等温线描述了吸附机理。如果吸附等温线是线性的,可以很容易地得到ADE的解。然而,如果吸附等温线是非线性的,如Langmuir模型或非线性Freundlich模型,则所得微分方程的系数变为非线性。在这种情况下,没有解析解。双反应域模型(Dual reactive domain model, DRDM)是线性模型和Langmuir模型的结合模型,可以涵盖线性和非线性的吸附行为特征。在本文中,我们使用DRDM对ADE进行了数值分析。模拟结果表明,即使用线性或非线性等温线可以很好地拟合吸附数据,但用这两种等温线计算的污染物运移特征也有很大不同。具体来说,线性等温线的缓速效果与DRDM的缓速效果不同。随着吸附等温线非线性的增大,两种情况的缓速效应差异也越来越大。即使我们使用DRDM来模拟污染物的传输,它显示了线性或非线性的吸附行为,我们也可以得到非常相似的模拟结果。虽然污染物的迁移对所使用的吸附模型非常敏感,但使用DRDM可以减少由于选择吸附模型而产生的不确定性。因此,我们推荐DRDM作为吸附模型,以更准确地描述污染物的输送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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