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首页> 外文期刊>Journal of Hydrology >Tracer travel and residence time distributions in highly heterogeneous aquifers: Coupled effect of flow variability and mass transfer
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Tracer travel and residence time distributions in highly heterogeneous aquifers: Coupled effect of flow variability and mass transfer

机译:高度非均质含水层中的示踪剂行进和停留时间分布:流量变化和传质的耦合效应

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摘要

The driving mechanism of tracer transport in aquifers is groundwater flow which is controlled by the heterogeneity of hydraulic properties. We show how hydrodynamics and mass transfer are coupled in a general analytical manner to derive a physically-based (or process-based) residence time distribution for a given integral scale of the hydraulic conductivity; the result can be applied for a broad class of linear mass transfer processes. The derived tracer residence time distribution is a transfer function with parameters to be inferred from combined field and laboratory measurements. It is scalable relative to the correlation length and applicable for an arbitrary statistical distribution of the hydraulic conductivity. Based on the derived residence time distribution, the coefficient of variation and skewness of residence time are illustrated assuming a log-normal hydraulic conductivity field and first-order mass transfer. We show that for a low Damkohler number the coefficient of variation is more strongly influenced by mass transfer than by heterogeneity, whereas skewness is more strongly influenced by heterogeneity. (C) 2016 Elsevier B.V. All rights reserved.
机译:示踪剂在含水层中的传输驱动机制是地下水流动,其受水力特性的非均质性控制。我们展示了在一般的分析方式下,如何将流体动力学和传质耦合在一起,从而得出给定的整体式水力传导率基于物理的(或基于过程的)停留时间分布;该结果可用于多种线性传质过程。导出的示踪剂停留时间分布是一个传递函数,具有从野外和实验室测量的组合中推断出的参数。它相对于相关长度是可缩放的,并且适用于水力传导率的任意统计分布。基于导出的停留时间分布,假设对数正态水力传导率场和一级传质,说明了停留时间的变化系数和偏度。我们表明,对于低的Damkohler数,变异系数受传质的影响比受异质性影响更大,而偏斜受异质性的影响更大。 (C)2016 Elsevier B.V.保留所有权利。

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