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Resolving scales of aquifer heterogeneity using ground penetrating radar and borehole geophysical logging

机译:利用探地雷达和钻孔地球物理测井解决含水层非均质性问题

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摘要

Accurate and reliable characterization of aquifer heterogeneity remains one of the foremost problems in hydrogeology. In this study, ground penetrating radar (GPR) and borehole geophysical logging are used to investigate scales of heterogeneity present locally (<500 m laterally) within an outwash deposit comprised of inter-bedded and cross-bedded sands and gravels of glaciofluvial origin. At a small scale (<15 m laterally), gamma log data in adjacent boreholes show evidence of fining upward sequences, occasional coarsening upward sequences, and abrupt changes in grain sizes, which appear to be laterally continuous at scales of 10 m. At the site scale (<500 m laterally), GPR profiles show a strong reflection interpreted as the water table. Reflectors in the unsaturated zone are more clearly defined than those beneath the water table due to signal attenuation within the saturated sediments. Undulating to discontinuous reflectors at scales of 10-15 m are interpreted to result from interbedded and cross-bedded sands and gravels. A few laterally continuous horizontal to sub-horizontal reflectors, which extend at least up to 360 m, are interpreted as unconformities, based on evidence of gravel bars, truncation of underlying units, as well as scour and fill features in a nearby gravel pit exposure. Overall, the integration of these two geophysical methods provided evidence of unit correlation at the two scales of investigation.
机译:准确,可靠地表征含水层非均质性仍然是水文地质学中最重要的问题之一。在这项研究中,探地雷达(GPR)和钻孔地球物理测井被用来调查局部存在的异质性尺度(横向<500 m),该沉积物由层间和层间交叉的砂砾和冰川河流质的砾石组成。在小范围内(横向<15 m),相邻井眼的伽马测井数据显示出精细的向上序列,偶尔的粗化向上序列以及晶粒尺寸的突然变化的证据,在10 m的尺度上横向连续。在场地规模(横向<500 m),GPR剖面显示出强烈的反射,被解释为地下水位。由于饱和沉积物中的信号衰减,非饱和区的反射器比地下水位以下的反射器更清晰。起伏为10-15 m的不连续反射体被解释为是由层间和层间交叉的砂石砾石引起的。根据砾石条,下伏单元的截断以及附近砾石坑暴露中的冲刷和填充特征,一些横向连续的水平至亚水平反射器(至少延伸到360 m)被解释为不合格。 。总体而言,这两种地球物理方法的集成为两种调查规模的单位相关性提供了证据。

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