首页> 外文期刊>Grundwasser >Spatial characterization of hydraulic conductivity in alluvial gravel-and-sand aquifers: A comparison of methods [R?umliche Charakterisierung der hydraulischen Leitf?higkeit in alluvialen Schotter-Grundwasserleitern: Ein Methodenvergleich]
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Spatial characterization of hydraulic conductivity in alluvial gravel-and-sand aquifers: A comparison of methods [R?umliche Charakterisierung der hydraulischen Leitf?higkeit in alluvialen Schotter-Grundwasserleitern: Ein Methodenvergleich]

机译:冲积砾石和砂层中水力传导率的空间特征:方法比较

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摘要

For groundwater transport modeling on a scale of 10-100 m, detailed information about the spatial distribution of hydraulic conductivity is of great importance. At a test site (10×20 m) in the alluvial gravel-and-sand aquifer of the perialpine Thur valley (Switzerland), four different methods were applied on different scales to assess this parameter. A comparison of the results showed that multilevel slug tests give reliable results at the required scale. For its analysis, a plausible value of the anisotropy ratio of hydraulic conductivity (K_v/K_h) is needed, which was calculated using a pumping test. The integral results of pumping tests provide an upper boundary of the natural spectrum of hydraulic conductivity at the scale of the test site. Flowmeter logs are recommended if the relative distribution of hydraulic conductivity is of primary importance, while sieve analyses can be used if only a rough estimate of hydraulic conductivity is acceptable.
机译:对于规模为10-100 m的地下水运输建模,有关水力传导率空间分布的详细信息非常重要。在瑞士Thur山谷(瑞士)的冲积砾石和砂层含水层中的一个测试点(10×20 m),采用了四种不同的方法以不同的比例来评估该参数。结果的比较表明,多级段塞测试可在所需规模​​下提供可靠的结果。为了进行分析,需要水力传导率的各向异性比的合理值(K_v / K_h),该值使用抽水试验计算得出。泵送测试的整体结果提供了测试地点范围内水力传导率自然频谱的上限。如果水力传导率的相对分布是最重要的,则建议使用流量计测井记录;如果仅接受水力传导率的粗略估算,则可以使用筛分分析。

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