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A tracer test in a shallow heterogeneous aquifer monitored via time-lapse surface electrical resistivity tomography

机译:通过延时表面电阻层析成像技术监测浅层非均质含水层中的示踪剂测试

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摘要

We illustrate a case study of a saline tracer test in a shallow, highly heterogeneous aquifer, monitored by means of surface time-lapse ERT. The test was aimed at identifying the system's hydraulic properties. Some of the expected limitations of the method particularly caused by the strong decrease in ERT resolution with depth and the consequent problems with mass balance and moment calculation could be partly balanced by the use of direct measurements of groundwater electrical conductivity and tracer concentration at one selected location. The vast heterogeneity of the system, ranging in litholotty from clay to gravel at a scale of meters to tens of meters, reflects itself in the tracer migration and distribution over time: The tracer is trapped in the low-permeability regions and from these it is slowly released over time. High-resolution surface ERT proves effective at picturing this system behavior over time. The extreme heterogeneity is also a challenge in the attempt to translate bulk electrical conductivity into estimates of groundwater electrical conductivity and, hence, solute concentration because surface conductivity in fine sediments has an important role. The test results could be used to identify some of the key parameters for solute transport, namely, mean groundwater velocity and aquifer dispersivity at the scale of the test by means of transport model calibration.
机译:我们举例说明了一个盐水示踪剂测试在浅层,高度非均质含水层中的案例研究,通过表面时延ERT进行监测。该测试旨在确定系统的水力特性。该方法的某些预期限制,尤其是由于ERT分辨率随深度的大幅降低以及随之而来的质量平衡和矩量计算问题而造成的,可以通过在一个选定的位置使用直接测量的地下水电导率和示踪剂浓度来部分平衡。 。该系统的巨大异质性,从粘土到砾石,范围从几米到几十米不等,从岩体到岩石,反映了随着时间的推移,示踪剂的迁移和分布:示踪剂被困在低渗透率区域,从中随着时间的流逝慢慢释放。事实证明,高分辨率表面ERT可以有效地描绘随时间变化的系统行为。在试图将总电导率转换为地下水电导率估计值并因此将溶质浓度转换为估计值时,极端的非均质性也是一个挑战,因为细沉积物中的表面电导率具有重要作用。试验结果可用于确定溶质运移的一些关键参数,即通过运移模型校准在试验规模上的平均地下水速度和含水层分散度。

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