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Simulations of fully coupled lake-groundwater exchange in a subhumid climate with an integrated hydrologic model

机译:利用集成水文模型模拟半湿润地区完全耦合的湖水交换

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摘要

A fully coupled, integrated surface water/groundwater model was used to study hydrologic controls on lake-groundwater interaction in the subhumid, Boreal Plains of northern Alberta, Canada. Findings from a previous water budget study indicate that lakes on the outwash landscape capture groundwater as a major source of water input and function as evaporation windows. Transient hydrologic responses of a flow-through style lake and outwash groundwater flow system were simulated for a three-dimensional model. Hydraulic heads, surface water depth, and the corresponding exchange fluxes between the surface and the subsurface were all simulated simultaneously and compared to field observations for the summers of 2002 and 2003. Replication of the transient flow regime required an anisotropy ratio of 10:1 for the outwash deposits and inclusion of riparian peatlands, which control lake-groundwater interaction and maintain surface water on permeable northern landscapes. Spatially and temporally variable evapotranspiration governed the water table configuration and lake-groundwater seepage patterns.
机译:一个完全耦合的集成地表水/地下水模型用于研究加拿大亚伯达省北部半湿润的北方平原上湖-地下水相互作用的水文控制。先前水预算研究的结果表明,外流景观中的湖泊捕获地下水作为主要的水输入源,并起到蒸发窗口的作用。针对三维模型模拟了流经式湖泊和冲刷地下水流系统的瞬态水文响应。同时模拟了水头,地表水深度以及地表与地下之间的相应交换通量,并将其与2002年和2003年夏季的现场观测结果进行了比较。瞬态流态的复制要求各向异性比为10:1河岸泥炭地的冲积物和内含物,它们控制着湖水与地下水的相互作用,并在可渗透的北部景观上维持地表水。时空蒸发蒸腾量控制着地下水位和湖泊-地下水的渗流模式。

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