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增强多孔介质中的稀释和横向反应混合:实验和基于模型的解释。

Enhancement of dilution and transverse reactive mixing in porous media: experiments and model-based interpretation.

机构信息

Center for Applied Geosciences, University of Tübingen, Sigwartstrasse 10, D-72076 Tübingen, Germany.

出版信息

J Contam Hydrol. 2009 Nov 20;110(3-4):130-42. doi: 10.1016/j.jconhyd.2009.10.003. Epub 2009 Nov 5.

Abstract

Transport and natural attenuation of contaminant plumes in groundwater are often controlled by transverse dispersion. The extent of mixing between dissolved reaction partners at the fringe of a plume determines its length and depends strongly on the groundwater flow field. Transient flow conditions as well as the focusing of the flow in high-permeability zones may enhance transverse mixing of dissolved species and, therefore, create favorable conditions for the natural attenuation of contaminant plumes. The aim of the present study is to experimentally test the influence of these processes on solute mixing and to directly compare the results with those under analogous homogeneous and steady-state conditions. We have performed conservative and reactive tracer experiments in a quasi two-dimensional tank filled with glass beads of different sizes. The experiments have been carried out in both homogeneous and heterogeneous porous media under steady-state and transient (i.e. oscillating) flow fields. We used fluorescein as conservative tracer; whereas an alkaline solution (NaOH) was injected into ambient acidic water (HCl) in the reactive experiments. A pH indicator was added to the reacting solutions in order to visualize the emerging plume. We simulated the laboratory experiments with a numerical model and compared the outcomes of the model with the measured concentrations at the outlet of the tank and with the observed tracer plumes. Spatial moments, a newly defined flux-related dilution index, the product mass fluxes and the reaction enhancement factors were calculated to quantify the differences in mixing and reaction extent under various experimental conditions. The results show that flow focusing in heterogeneous porous media significantly enhances transverse mixing and mixing-controlled reactions, whereas temporally changing flow fields appear to be of minor importance.

摘要

污染物羽流在地下水中的运移和自然衰减通常受横向弥散控制。羽流边缘处溶解反应物之间的混合程度决定了羽流的长度,并且强烈依赖于地下水流动场。瞬变流动条件以及在高渗透性带中的流动聚焦可能会增强溶解物质的横向混合,从而为污染物羽流的自然衰减创造有利条件。本研究的目的是通过实验测试这些过程对溶质混合的影响,并将结果与类似的均匀和稳定状态条件下的结果直接进行比较。我们在充满不同大小玻璃珠的准二维水箱中进行了保守和反应示踪剂实验。实验在均匀和非均匀多孔介质中,在稳定和瞬变(即振荡)流动场下进行。我们使用荧光素作为保守示踪剂;而在反应实验中,将碱性溶液(NaOH)注入环境酸性水中(HCl)。在反应溶液中添加 pH 指示剂,以可视化出现的羽流。我们用数值模型模拟了实验室实验,并将模型的结果与水箱出口处测量的浓度以及观察到的示踪剂羽流进行了比较。空间矩、新定义的通量相关稀释指数、产物质量通量和反应增强因子被计算出来,以量化各种实验条件下混合和反应程度的差异。结果表明,非均匀多孔介质中的流动聚焦显著增强了横向混合和混合控制反应,而随时间变化的流动场似乎影响较小。

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