首页> 外文会议>Groundwater Quality 2001 Conference, Jun 18-21, 2001, Sheffield, UK >Solute transport in flow fields influenced by decimetre-scale preferential flow paths: implications for groundwater remediation
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Solute transport in flow fields influenced by decimetre-scale preferential flow paths: implications for groundwater remediation

机译:分米规模优先流径影响下流场中的溶质迁移:对地下水修复的影响

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While researchers have devoted considerable effort to examining solute transport influenced by aquifer heterogeneities at either larger scales (metre and above) or at the pore scale, there is a relative paucity of work aimed at the controls administered by decimetre-scale heterogeneity. Recent studies at the Macrodispersion Experiment (MADE) site in Columbus, Mississippi (USA) have indicated that the relative preferential flow paths and flow barriers resulting from dm-scale aquifer heterogeneities appear to have a dominant effect on plume-scale solute transport. These studies suggest that only approximately 15% of the aquifer pore space is involved in advective transport while the remaining 85% serves as a reservoir for essentially immobile solute. The possibility that dm-scale preferential flow paths play such an important role in solute transport has far-reaching implications for groundwater remediation. This paper presents the results of a numerical experiment designed to quantify the key characteristics of solute transport influenced by dm-scale relative preferential flow paths, and discusses the implications for groundwater remediation at a field site.
机译:尽管研究人员投入了大量精力来研究受较大尺度(米及以上)或孔隙尺度上的含水层非均质性影响的溶质运移,但针对分米尺度非均质性控制的工作却相对较少。最近在美国密西西比州哥伦布市的宏观分散实验(MADE)现场进行的研究表明,由dm级含水层非均质性引起的相对优先流动路径和流动障碍似乎对羽状水质溶质运移具有显著作用。这些研究表明,只有约15%的含水层孔隙空间参与平流运移,而其余的85%则充当了基本固定的溶质的储层。 dm级优先流动路径在溶质运移中发挥如此重要作用的可能性对地下水修复具有深远的影响。本文介绍了一个数值实验的结果,该实验旨在量化受dm级相对优先流动路径影响的溶质运移的关键特征,并讨论了对田间地下水修复的意义。

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