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A low-dimensional hillslope-based catchment model for layered groundwater flow

机译:基于低维山坡的分层地下水流汇流模型

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摘要

Despite the strong interaction between surface and subsurface waters, groundwater flow representation is often oversimplified in hydrological models. For instance, the interplay between local or shallow aquifers and deeper regional-scale aquifers is typically neglected. In this work, a novel hillslope-based catchment model for the simulation of combined shallow and deep groundwater flow is presented. The model consists of the hillslope-storage Boussinesq (hsB) model representing shallow groundwater flow and an analytic element (AE) model representing deep regional groundwater flow. The component models are iteratively coupled via a leakage term based on Darcy's law, representing delayed recharge to the regional aquifer through a low conductivity layer. Simulations on synthetic single hillslopes and on a two-hillslope open-book catchment are presented, and the results are compared against a benchmark three-dimensional Richards equation model. The impact of hydraulic conductivity, hillslope plan geometry (uniform, convergent, divergent), and hillslope inclination (0.2%, 5%, and 30%) under drainage and recharge conditions are examined. On the single hillslopes, good matches for heads, hydrographs, and exchange fluxes are generally obtained, with the most significant differences in outflows and heads observed for the 30% slope and for hillslopes with convergent geometry. On the open-book catchment, cumulative outflows are overestimated by 1–4%. Heads in the confined and unconfined aquifers are adequately reproduced throughout the catchment, whereas exchange fluxes are found to be very sensitive to the hillslope drainable porosity. The new model is highly efficient computationally compared to the benchmark model. The coupled hsB/AE model represents an alternative to commonly used groundwater flow representations in hydrological models, of particular appeal when surface–subsurface exchanges, local aquifer–regional aquifer interactions, and low flows play a key role in a watershed's dynamics. Copyright © 2011 John Wiley & Sons, Ltd.
机译:尽管地表水和地下水之间有很强的相互作用,但是在水文模型中,地下水流的表示常常被过分简化了。例如,通常忽略局部或浅层含水层与较深的区域规模含水层之间的相互作用。在这项工作中,提出了一种基于山坡的集水模型,用于模拟浅层和深层地下水的联合流动。该模型由代表浅层地下水流的斜坡存储Boussinesq(hsB)模型和代表深层区域地下水流的分析元素(AE)模型组成。组件模型通过基于达西定律的泄漏项迭代耦合,表示通过低电导率层向区域含水层的延迟补给。给出了对合成的单个山坡和两个山坡开放式集水区的模拟,并将结果与​​基准三维理查兹方程模型进行了比较。在排水和补给条件下,研究了水力传导率,山坡平面几何形状(均匀,会聚,发散)和山坡倾角(0.2%,5%和30%)的影响。在单个山坡上,通常可以得到水头,水文图和交换通量的良好匹配,对于30%的坡度和具有会聚几何形状的山坡,流出量和水头的差异最大。在开放式集水区,累计流出量被高估了1-4%。在整个集水区中,密闭和无密闭含水层中的水头得到了充分的繁殖,而交换通量对山坡可排水的孔隙度非常敏感。与基准模型相比,新模型的计算效率更高。耦合的hsB / AE模型代表了水文模型中常用的地下水流表示形式的替代方案,当地表-地下交换,局部含水层-区域含水层相互作用以及低流量在流域动力学中起关键作用时特别有吸引力。版权所有©2011 John Wiley&Sons,Ltd.

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  • 来源
    《Hydrological Processes》 |2012年第18期|p.2814-2826|共13页
  • 作者单位

    1 Centre ESCER pour l’Étude et la simulation du climat à l’échelle régionale, Département des sciences de la Terre et de l’atmosphère, Université duQuébec à Montréal (UQAM), Case postale 8888, succursale Centre-ville, Montréal (Québec), H3C 3P8, Canada2 Institut national de la recherche scientifique - Centre Eau, Terre et Environnement (INRS-ETE), Université du Québec, 490 rue de la Couronne,Québec (Québec), G1K 9A9, Canada3 School of Public and Environmental Affairs, Indiana University, SPEA 439, Bloomington (Indiana), 47405, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hillslope modelling; Boussinesq equation; leakage; model coupling; analytic element modeling; layered groundwater flow;

    机译:斜坡模型;Boussinesq方程;渗漏;模型耦合;解析元建模;分层地下水流;

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