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首页> 外文期刊>Quarterly Journal of Engineering Geology & Hydrogeology >The use of electrical resistivity tomography in deriving local-scale models of recharge through superficial deposits
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The use of electrical resistivity tomography in deriving local-scale models of recharge through superficial deposits

机译:电阻层析成像在通过表层沉积物推导局部尺度补给模型中的应用

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摘要

The way in which superficial deposits affect groundwater recharge is often a significant source of uncertainty in groundwater resources and vulnerability assessments. A study of a small catchment in Shropshire, UK, shows how electrical resistivity tomography (ERT), with a degree of borehole control, can be an effective tool for defining the geometry of superficial deposits for purposes of inferring the hydraulic processes controlling groundwater recharge. Major lithological units were mapped to within c. 0.5 m vertically and 5 m horizontally using ERT surveys with a minimum electrode spacing of 2 m. Interpretation was aided by the strong contrast in resistivity between till and glaciolacustrine deposits (20–40 m) and glaciofluvial deposits (generally >100 m) that overlie the Permo-Triassic sandstone aquifer (saturated resistivity 60–145 m) in the study area. A range of local-scale (tens to hundreds of metres) recharge models are presented, based on the findings of the field surveys, and it is shown how existing mapping misses key features of the superficial geology that may be very significant in enhancing or restricting aquifer recharge.
机译:表层沉积物影响地下水补给的方式通常是导致地下水资源和脆弱性评估不确定性的重要来源。对英国什罗普郡的一个小型 集水区进行的研究表明,在一定程度的井眼控制下,电阻率 断层扫描(ERT)如何可以 一个有效的工具,可用来定义表层沉积物的几何形状,以推断控制地下水补给的水力过程。主要岩性单元在c内映射到 。使用ERT测量 垂直放置0.5 m,水平放置5 m,最小电极间距为2 m。 解释了直到和 冰川湖沉积物(20–40 m)和冰川河流 沉积物(通常> 100 m)之间电阻率的强烈对比覆盖在研究区的Permo-Triassic 砂岩含水层(饱和电阻率60-145 m)上。根据实地调查的结果 ,提出了一系列局部规模的补给模型(数十至数百个 米),并显示了现有映射遗漏的方式< sup> 浅层地质的关键特征可能对增强或限制含水层补给非常重要。

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    Hydrogeology Research Group, School of Geography, Earth and Environmental Sciences, University of Birmingham , Birmingham B15 2TT, UK;

    Hydrogeology Research Group, School of Geography, Earth and Environmental Sciences, University of Birmingham , Birmingham B15 2TT, UK;

    Hydrogeology Research Group, School of Geography, Earth and Environmental Sciences, University of Birmingham , Birmingham B15 2TT, UK;

    Hydrogeology Research Group, School of Geography, Earth and Environmental Sciences, University of Birmingham , Birmingham B15 2TT, UK;

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