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首页> 外文期刊>Journal of Hydrology >On the striking similarity between the moments of breakthrough curves for a heterogeneous medium and a homogeneous medium with a matrix diffusion term
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On the striking similarity between the moments of breakthrough curves for a heterogeneous medium and a homogeneous medium with a matrix diffusion term

机译:关于非均质介质和均质介质具有矩阵扩散项的突破曲线的矩之间的惊人相似性

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A usual method to obtain aquifer parameters is to analyze the moments of the breakthrough curves (BTCs) in tracer tests. The parameters to be estimated in this analysis would depend on the conceptual model adopted. Intuitively, if different processes were considered, the shape of the BTCs should be quite different, and one would tend to think that the time and space evolution of the temporal moments should also be quite different. Contrarily, in this paper, we show that two very different conceptual models of solute transport lead to virtually identical moments of the BTC. The two models selected for this study are the classical advection-dispersion equation with a Fickian macrodispersive term and a homogeneous medium advection model with mass-transfer between mobile and immobile matrix phases, for three different models of matrix shape. In both models, the first three moments are linear with travel distance, while the fourth moment is a second order polynomial. This agreement allows us to choose parameters yielding the same moments in the two models. As we consider two fitting parameters, we select them to match the second and third moment. Match in the first moment is obtained from physical arguments. It turns out that the resulting leading term of the fourth moment is identical for both models. As a direct consequence of this work, it follows that for large travel distances it would not be possible to discriminate between conceptual models using data from a single BTC. (C) 2004 Elsevier B.V. All rights reserved.
机译:获取含水层参数的一种常用方法是分析示踪剂测试中的突破曲线(BTC)的弯矩。在此分析中估计的参数将取决于所采用的概念模型。直觉上,如果考虑不同的过程,BTC的形状应该完全不同,并且人们会倾向于认为时间矩的时空演变也应该完全不同。相反,在本文中,我们表明溶质迁移的两个截然不同的概念模型导致BTC的时刻几乎相同。本研究选择的两个模型分别是具有Fickian宏观色散项的经典对流扩散方程和用于基质形状的三种不同模型的均质介质对流模型,该模型在流动相和固定相之间进行质量转移。在这两个模型中,前三个矩与行进距离成线性关系,而第四个矩是二阶多项式。该协议允许我们选择在两个模型中产生相同力矩的参数。当我们考虑两个拟合参数时,我们选择它们以匹配第二和第三时刻。第一时刻的匹配是从物理参数获得的。事实证明,对于这两个模型,第四矩的最终领先项是相同的。这项工作的直接结果是,对于长途旅行,将不可能使用单个BTC的数据来区分概念模型。 (C)2004 Elsevier B.V.保留所有权利。

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