Articles | Volume 23, issue 12
https://doi.org/10.5194/hess-23-5017-2019
https://doi.org/10.5194/hess-23-5017-2019
Research article
 | 
13 Dec 2019
Research article |  | 13 Dec 2019

Effects of preferential flow on snowmelt partitioning and groundwater recharge in frozen soils

Aaron A. Mohammed, Igor Pavlovskii, Edwin E. Cey, and Masaki Hayashi

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Cited articles

Allaire, S. E., Roulier, S., and Cessna, A. J.: Quantifying preferential flow in soils: A review of different techniques, J. Hydrol., 378, 179–204, 2009. 
Appels, W. M., Coles, A. E., and McDonnell, J. J.: Infiltration into frozen soil: From core-scale dynamics to hillslope-scale connectivity, Hydrol. Process., 32, 66–79, 2018. 
Baker, J. M. and Spaans, E. J. A.: Mechanics of meltwater movement above and within frozen soil, in: International Symposium on Physics, Chemistry, and Ecology of Seasonally Frozen Soils, edited by: Iskander, I. K., Wright, E. A., Radke, J. K., Sharratt, B. S., Groenevelt, P. H., and Hinzman, L. D., US Army Cold Regions Research and Engineering Laboratory, Fairbanks, AK, 31–36, 1997. 
Bam, E. K.: Understanding hydrological processes and water fluxes linking wetland ponds and groundwater in the Prairie Pothole Region, Doctoral dissertation, University of Saskatchewan, 2018. 
Bayard, D., Stähli, M., Parriaux, A., and Flühler, H.: The influence of seasonally frozen soil on the snowmelt runoff at two Alpine sites in southern Switzerland, J. Hydrol., 309, 66–84, 2005. 
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Short summary
In cold regions, the permeability of the frozen ground is an important factor influencing a watershed's response to snowmelt. This study highlights the effects of preferential flow in frozen soils on snowmelt redistribution and groundwater recharge in seasonally frozen landscapes.