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A field assessment of the value of steady shape hydraulic tomography for characterization of aquifer heterogeneities

机译:用于表征含水层非均质性的稳态液压层析成像的现场评估

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Hydraulic tomography is a promising approach for obtaining information on variations in hydraulic conductivity on the scale of relevance for contaminant transport investigations. This approach involves performing a series of pumping tests in a format similar to tomography. We present a field-scale assessment of hydraulic tomography in a porous aquifer, with an emphasis on the steady shape analysis methodology. The hydraulic conductivity (K) estimates from steady shape and transient analyses of the tomographic data compare well with those from a tracer test and direct-push permeameter tests, providing a field validation of the method. Zonations based on equal-thickness layers and cross-hole radar surveys are used to regularize the inverse problem. The results indicate that the radar surveys provide some useful information regarding the geometry of the K field. The steady shape analysis provides results similar to the transient analysis at a fraction of the computational burden. This study clearly demonstrates the advantages of hydraulic tomography over conventional pumping tests, which provide only large-scale averages, and small-scale hydraulic tests (e.g., slug tests), which cannot assess strata connectivity and may fail to sample the most important pathways or barriers to flow.
机译:水力层析成像是一种有前途的方法,可用于获取有关污染物迁移研究的相关尺度上的水力传导率变化的信息。该方法涉及以类似于断层扫描的格式执行一系列抽运测试。我们目前对多孔含水层中的层析层析成像进行现场评估,重点是稳定形状分析方法。层析成像数据的稳态形状和瞬态分析得出的水力传导率(K)与示踪剂测试和直接推压式渗透仪测试得到的数值相吻合,为该方法提供了现场验证。基于等厚层和跨孔雷达勘测的区域划分用于规范反问题。结果表明,雷达勘测提供了一些有关K场几何形状的有用信息。稳定形状分析可以在很小的计算负担下提供与瞬态分析相似的结果。这项研究清楚地证明了液压层析成像技术相对于常规泵送测试(仅提供大规模平均值和小型液压测试(例如,段塞测试))的优势,这些常规测试无法评估地层连通性,并且可能无法采样最重要的路径或流动障碍。

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