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Field investigation of the groundwater contribution to baseflow in an urban stream from a Quaternary aquifer with a leaky base
Authors:Trisha L. Moore  John L. Nieber  John S. Gulliver  Joseph A. Magner
Affiliation:1. Department of Biological and Agricultural Engineering, Kansas State University, Manhattan, Kansas, USA;2. Department of Bioproducts and Biosystems Engineering, University of Minnesota, Minneapolis, Minnesota, USA;3. Department of Civil, Environmental and Geo- Engineering, University of Minnesota, Minneapolis, Minnesota, USA
Abstract:Groundwater contributions to baseflow in Minnehaha Creek, a creek located in a highly developed watershed in the Minneapolis-St. Paul metropolitan area, from the watershed's Quaternary aquifer were quantified as part of an effort to manage low flow conditions in the creek. Considerable uncertainty exists with any single method used to quantify groundwater contributions to baseflow; therefore, a “weight of evidence” approach in which methods spanning multiple spatial scales was utilized. Analyses conducted at the watershed-scale (streamflow separation and stable isotope analyses) were corroborated with site-scale measurements (piezometer, seepage meter, and streambed temperature profiles) over a multi-year period to understand processes and conditions controlling connectivity between the stream, its shallow aquifer system and other flow sources. In the case of Minnehaha Creek, groundwater discharge was found to range from 6.2 to 23 mm year−1, which represented only 5 to 11% of annual streamflow during the study period. From the weight of evidence, it is conjectured that regional-scale hydrogeological conditions control groundwater discharge in Minnehaha Creek. Implications of these results with regard to possible augmentation of baseflow by increasing groundwater recharge with infiltration of stormwater are discussed.
Keywords:baseflow  groundwater recharge  seepage meter  stable isotope analysis  temperature profile velocity estimation  urban stream
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