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Strategies for Designing Ground Water Monitoring Networks at Waste Storage Facilities with Multiple Source Areas

机译:在具有多个源头区域的废物存储设施中设计地下水监测网络的策略

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The objective of this study was to devise and evaluate methods for configuring ground water monitoring networks at waste storage facilities with multiple contaminant source areas. These methods allocate monitoring wells to compliance boundaries lagged hydraulically downgradient of potential contaminant sources such as landfills and lagoons. Alternative design methods separately monitor or integrate potential sources and space wells uniformly in the direction along the compliance boundary or perpendicular to ground water flow. In an application of four design methods, a computer model simulated potential contaminant releases distributed throughout multiple sources with a combined area of ~5000 m~2, computing the detection capability of each monitoring configuration. A network without monitoring redundancy in overlapping source areas, with wells spaced uniformly perpendicular to ground water flow, outperformed alternative layouts. Perpendicular networks were also more robust to uncertain model parameters. For a base case, the most efficient network of 10 wells detected 99.4% of > 5000 simulated contaminant releases, whereas alternative networks detected from 85.4% to 96.1% of releases.
机译:这项研究的目的是设计和评估在具有多个污染源区域的废物存储设施中配置地下水监测网络的方法。这些方法将监测井分配到潜在污染物源(如垃圾填埋场和泻湖)的水力下降滞后的达标边界。替代设计方法分别沿着顺应性边界或垂直于地下水流的方向均匀地监视或集成潜在的源和空间井。在四种设计方法的应用中,计算机模型模拟了分布在多个污染源中的潜在污染物释放,这些污染源的总面积约为5000 m〜2,计算了每种监视配置的检测能力。在重叠的源区域中没有监视冗余的网络,其井均匀地垂直于地下水流,其性能优于其他布局。垂直网络对于不确定的模型参数也更健壮。在一个基本案例中,最有效的10口井网检测到5000种模拟污染物释放中的99.4%,而其他网络检测到的释放量则从85.4%到96.1%。

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