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Redressing the balance: quantifying net intercatchment groundwater flows

机译:纠正平衡:量化净互动地下水流量

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摘要

Intercatchment groundwater flows (IGFs), defined as groundwater flows across topographic divides, can occur as regional groundwater flows that bypass headwater streams and only drain into the channel further downstream or directly to the sea. However, groundwater flows can also be diverted to adjacent river basins due to geological features (e.g., faults, dipping beds and highly permeable conduits). Even though intercatchment groundwater flows can be a significant part of the water balance, they are often not considered in hydrological studies. Yet, assuming this process to be negligible may introduce misrepresentation of the natural system in hydrological models, for example in regions with complex geological features. The presence of limestone formations in France and Belgium potentially further exacerbates the importance of intercatchment groundwater flows, and thus brings into question the validity of neglecting intercatchment groundwater flows in the Meuse basin. To isolate and quantify the potential relevance of net intercatchment groundwater flows in this study, we propose a three-step approach that relies on the comparison and analysis of (1) observed water balance data within the Budyko framework, (2) results from a suite of different conceptual hydrological models and (3) remote-sensing-based estimates of actual evaporation. The data of 58 catchments in the Meuse basin provide evidence of the likely presence of significant net intercatchment groundwater flows occurring mainly in small headwater catchments underlain by fractured aquifers. The data suggest that the relative importance of net intercatchment groundwater flows is reduced at the scale of the Meuse basin, as regional groundwater flows are mostly expected to be self-contained in large basins. The analysis further suggests that net intercatchment groundwater flow processes vary over the year and that at the scale of the headwaters, net intercatchment groundwater flows can make up a relatively large
机译:intercatment地下水流量(IGF)定义为跨越地形划分的地下水流,因为区域地下水流旁路,即旁路下游,仅在下游进入通道或直接进入大海。然而,由于地质特征(例如,故障,浸渍床和高度渗透管道),地下水流量也可以转移到邻近的河流盆地。尽管互动地下水流动可能是水平的重要部分,但它们通常不考虑在水文研究中。然而,假设该过程可以忽略不计,可能会引入水文模型中自然系统的虚假陈述,例如在具有复杂地质特征的地区。在法国和比利时的耐石灰石形成的存在可能进一步加剧了互动地下水流动的重要性,从而提起忽视丝池中忽略互动地下水的有效性。为了隔离和量化净闭电地下水流动在本研究中的潜在相关性,我们提出了一种三步方法,依赖于(1)观察到的Budyko框架内的水平数据,(2)套件的结果不同概念水文模型和(3)基于遥感的实际蒸发估计。 MEUSE盆地58集水区的数据提供了主要存在显着的净互动地下水流量的证据,主要是由骨折含水层底层的小型椎间面目发生。该数据表明,净闭路地下水流量的相对重要性在梅苏盆地的规模上减少,因为区域地下水流量大多是在大盆地中的自我含量。该分析进一步表明,净闭球地下水流程随着年度而变化,并且在返波的规模处,净互动地下水流量可以构成相对较大的流量

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  • 来源
    《Hydrology and Earth System Sciences》 |2018年第12期|共20页
  • 作者单位

    Delft Univ Technol Fac Civil Engn &

    Geosci Water Resources Sect POB 5048 NL-2600 GA Delft Netherlands;

    Deltares Dept Catchment &

    Urban Hydrol Boussinesqweg 1 NL-2629 HV Delft Netherlands;

    VanderSat Wilhelminastr 43A NL-2011 VK Haarlem Netherlands;

    Minist Infrastruct &

    Water Management Zuiderwagenpl 2 NL-8224 AD Lelystad Netherlands;

    Minist Infrastruct &

    Water Management Zuiderwagenpl 2 NL-8224 AD Lelystad Netherlands;

    Delft Univ Technol Fac Civil Engn &

    Geosci Water Resources Sect POB 5048 NL-2600 GA Delft Netherlands;

    Delft Univ Technol Fac Civil Engn &

    Geosci Water Resources Sect POB 5048 NL-2600 GA Delft Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

  • 入库时间 2022-08-20 08:10:33

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