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首页> 外文期刊>Water resources research >Revealing the spatial variability of water fluxes at the groundwater-surface water interface
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Revealing the spatial variability of water fluxes at the groundwater-surface water interface

机译:揭示地下水-地表水界面水通量的空间变异性

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There is widespread recognition that the groundwater-surface water interface can have significant influence on the pattern and form of the transfer of nutrient-rich groundwater to rivers. Characterizing and quantifying this influence is critical for successful management of water resources in many catchments, particularly those threatened by rising nitrate levels in groundwater. Building on previous experimental investigations in one such catchment: the River Leith, UK, we report on a multimeasurement, multiscale program aimed at developing a conceptualization of groundwater-surface water flow pathways along a 200 m reach. Key to this conceptualization is the quantification of vertical and horizontal water fluxes, which is achieved through a series of Darcian flow estimates coupled with in-stream piezometer tracer dilution tests. These data, enhanced by multilevel measurements of chloride concentration in riverbed pore water and water-borne geophysical surveying, reveal a contrast in the contribution of flow components along the reach. In the upper section of the reach, a localized connectivity to regional groundwater, that appears to suppress the hyporheic zone, is identified. Further downstream, horizontal (lateral and longitudinal) flows appear to contribute more to the total subsurface flow at the groundwater-surface water interface. Although variation in hydraulic conductivity of the riverbed is observed, localized variation that can account for the spatial variability in flow pathways is not evident. The study provides a hydrological conceptualization for the site, which is essential for future studies which address biogeochemical processes, in relation to nitrogen retention/release. Such a conceptualization would not have been possible without a multiexperimental program.
机译:人们普遍认识到,地下水与地表水的界面对富含营养的地下水向河流的转移的形式和形式具有重大影响。表征和量化这种影响对于成功管理许多流域的水资源至关重要,尤其是那些受到地下水硝酸盐含量上升威胁的流域。在先前这样的流域(英国里斯河)的实验研究的基础上,我们报告了一项多尺度,多尺度的计划,旨在发展沿200 m范围的地下水-地表水流动路径的概念。这种概念化的关键是对垂直和水平水通量的量化,这是通过一系列Darcian流量估算以及流中压强计示踪剂稀释测试实现的。这些数据通过对河床孔隙水中的氯离子浓度进行多级测量和水上地球物理勘测而得到增强,揭示了沿河径流贡献的反差。在河段的上部,确定了与区域地下水的局部连通性,这似乎抑制了流变带。在更下游,水平(横向和纵向)流动似乎对地下水-地表水界面处的总地下流量贡献更大。尽管观察到了河床的水力传导率的变化,但可以解释流道空间变化的局部变化并不明显。该研究为该地点提供了水文概念化,这对于将来研究与氮保留/释放有关的生物地球化学过程的研究至关重要。如果没有一个多实验程序,那么这样的概念化将是不可能的。

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  • 来源
    《Water resources research》 |2013年第7期|3978-3992|共15页
  • 作者单位

    Lancaster Environment Centre, Lancaster University, Lancaster, Lancashire LAI 4YQ, UK;

    Department of Earth Sciences and Geography, Keele University, Staffordshire, UK;

    Lancaster Environment Centre, Lancaster University, Lancaster, Lancashire, UK;

    School of Geography, Queen Mary University of London, London, UK;

    Lancaster Environment Centre, Lancaster University, Lancaster, Lancashire, UK Now at School of Natural Sciences and Psychology, Liverpool JohnMoores University, Liverpool, UK;

    School of Geography, Queen Mary University of London, London, UK School of Biological and Chemical Sciences, Queen Mary Universityof London, London, UK;

    School of Biological and Chemical Sciences, Queen Mary Universityof London, London, UK;

    Lancaster Environment Centre, Lancaster University, Lancaster, Lancashire, UK;

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