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Imaging and characterization of solute transport during two tracer tests in a shallow aquifer using electrical resistivity tomography and multilevel groundwater samplers

机译:使用电阻层析成像和多级地下水采样器在浅层含水层中进行两次示踪剂测试期间对溶质运移进行成像和表征

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摘要

The relevance of aquifer heterogeneity for flow and transport is recognized broadly; however, its characterization is hampered by the inaccessibility of the subsurface. Time-lapse electrical resistivity tomography (ERT) offers the possibility of imaging noninvasively subsurface transport. We present results of two tracer tests that were carried out successively in a shallow aquifer at the Krauthausen test site ( Germany). The breakthroughs of an electrically conductive and a resistive tracer were monitored with ERT and local multilevel groundwater samplers (MLS) along two cross sections perpendicular to the mean flow direction. Sinking of the conductive salt tracer due to density effects was observed with ERT. We applied a stream tube model to characterize the spatially variable transport. ERT-derived stream tube parameters showed similar patterns for the two tracer experiments, reflecting the effect of aquifer heterogeneity on transport. MLS data did not show similar spatial patterns, which indicates that these measurements may be prone to subtle changes of the flow field in the small sampling volume and mixing within screened wells. Between 50% and 10% of the tracer was recovered in the ERT-derived breakthrough curves. Compared with transport simulations in a homogeneous aquifer, ERT-derived time-integrated changes in electrical conductivity were locally larger but focused in a smaller area. MLS data indicated that in this area, ERT did not underestimate the tracer recovery. The relatively low tracer recovery was attributed to undetected tracer breakthrough in regions with low ERT sensitivity and in regions where the length of the tracer plume and the electrical conductivity contrast were small.
机译:含水层非均质性与流动和运输的相关性得到广泛承认;然而,其表征受到地下无法接近的阻碍。延时电阻层析成像(ERT)提供了对非侵入性地下运输成像的可能性。我们介绍了在德国克劳特豪森试验场的浅层含水层中相继进行的两次示踪剂试验的结果。沿垂直于平均流动方向的两个横截面,使用ERT和局部多级地下水采样器(MLS)监测了导电示踪剂和电阻示踪剂的突破。用ERT观察到导电盐示踪剂由于密度效应而下沉。我们应用了流管模型来表征空间可变的运输。 ERT派生的流管参数在两个示踪剂实验中显示出相似的模式,反映了含水层非均质性对运输的影响。 MLS数据未显示相似的空间格局,这表明这些测量结果可能易于在较小的采样量中流场发生细微变化,并且在筛选的井中混合。在ERT衍生的突破曲线中回收了示踪剂的50%至10%。与均质含水层中的输运模拟相比,ERT引起的电导率时间积分变化局部较大,但集中在较小区域。 MLS数据表明,在该领域,ERT并未低估示踪剂的回收率。示踪剂回收率相对较低归因于在ERT灵敏度较低的区域以及示踪剂羽状物的长度和电导率对比度较小的区域中未检测到示踪剂突破。

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