首页> 外文期刊>Hydrogeology journal >Quantifying baseflow and water-quality impacts from a graveldominated alluvial aquifer in an urban reach of a large Canadian river
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Quantifying baseflow and water-quality impacts from a graveldominated alluvial aquifer in an urban reach of a large Canadian river

机译:量化加拿大一条大河的市区河段中由砾石为主的冲积含水层的基流和水质影响

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Groundwater discharge and non-point source (NPS) loading were evaluated along an urban reach of an eastern-slopes Rocky Mountains river (Bow River, Canada) to understand sources of water-quality impacts and baseflow. The discharge did not increase measurably over a 16-km reach. Groundwater in the river-connected alluvial aquifer was a mixture of river and prairie groundwater, with elevated chloride concentrations (average 379 mg L~(-1)) from road salt. Alluvial groundwater was the major NPS of chloride discharging to the river. Although the mass-flux based estimates of groundwater discharge were small (mean 0.02 m~3 s~(-1) km~(-1), SD = 0.04 m~3 s~(-1) km~(-1), n=30), the associated chloride mass flux over 16 km was significant (equivalent to that discharged from the city's largest wastewater-treatment-plant effluent). Although local groundwater baseflow was previously thought to contribute significantly to overwinter baseflow in this reach, little contribution was measured in this study. Low baseflow generation is consistent with long-term river discharge data that show almost all of the baseflow generation occurs in the Rocky Mountain reach. Thus, local watershed areas are important for water-quality protection, but climate change in the headwaters is most salient to long-term flow.
机译:在东部坡地落基山脉河(加拿大波河)的城市范围内评估了地下水排放和非点源(NPS)负荷,以了解水质影响和基流的来源。在16公里的范围内,流量没有明显增加。与河流相连的冲积含水层中的地下水是河流和草原地下水的混合物,道路盐中的氯离子浓度升高(平均379 mg L〜(-1))。冲积地下水是排入河流的主要氯化物NPS。尽管基于质量通量的地下水排放量估算值很小(平均0.02 m〜3 s〜(-1)km〜(-1),SD = 0.04 m〜3 s〜(-1)km〜(-1), n = 30),超过16 km的氯化物质量通量很显着(相当于城市最大的废水处理厂废水排放的通量)。尽管以前认为该地区的局部地下水基流对越冬基流有重大贡献,但在这项研究中测得的贡献很小。低基流生成与长期河流流量数据一致,后者显示几乎所有基流生成都发生在落基山河段。因此,当地集水区对于保护水质很重要,但源头的气候变化对长期流量最重要。

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