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Challenges in evaluation of the extent of contamination in the highly heterogeneous Snake River Plain aquifer

机译:评估高度异质蛇河普通含水层中污染程度的挑战

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Hosted in predominantly volcanic material, the Snake River Plain aquifer in south east Idaho (United States) is an extremely heterogeneous medium where hydraulic conductivity (K) can vary by up to five orders of magnitude over distances of less than a meter vertically and a few hundreds of meters horizontally. While the bulk of the aquifer is only moderately conductive, the zones of contacts between lava flows, often containing rubble, are highly conductive and form preferential pathways for contaminant migration. In this study, a numerical experiment using a Monte Carlo approach is carried out to study the impact of K variability on the effectiveness of detection monitoring networks. Several scenarios with different types of source and different distances from the source to the monitoring network were considered and the probability for monitoring failure or inaccuracy was quantified for each of these scenarios. The results of this experiment confirm the challenges posed by ground water monitoring in the Snake River plain aquifer.
机译:东南爱达荷州(美国)的蛇河普通含水层主要托管火山材料,是一种极其异质的介质,液压导电性(k)可以在垂直距离小于米的距离下变化多达五个数量级,但是水平数百米。虽然含水层的大部分是仅适度导电性的,熔岩之间接触的区域中流动,经常含有碎石,是高导电性,并且形成用于污染物的迁移优先通道。在该研究中,进行了使用蒙特卡罗方法的数值实验,以研究K变异性对检测监测网络的有效性的影响。考虑了几种具有不同类型的源和不同距离与监控网络的不同类型的场景,为每个场景量化了监测失败或不准确的概率。该实验的结果证实了蛇河普通含水层中地下水监测所带来的挑战。

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