Groundwater dynamics within a watershed in the discontinuous permafrost zone near Umiujaq (Nunavik, Canada) | Dynamique de l’écoulement des eaux souterraines dans un bassin versant situé dans la zone de pergélisol discontinu près d’Umiujaq (Nunavik, Canada) Dinámica del agua subterránea en una cuenca en la zona discontinua de permafrost cerca de Umiujaq (Nunavik, Canadá) Dinâmica das águas subterrâneas dentro de uma bacia hidrográfica na zona de pergelissolos descontínuos perto de Umiujaq (Nunavik, Canadá)
2020
Lemieux, Jean-Michel | Fortier, Richard | Murray, Renaud | Dagenais, Sophie | Cochand, Marion | Delottier, Hugo | Therrien, René | Molson, John | Pryet, Alexandre | Parhizkar, Masoumeh
Groundwater distribution and flow dynamics were studied in a small watershed located in the discontinuous permafrost zone near Umiujaq in Nunavik (Québec), Canada, to assess the seasonal variations and perform a quantitative analysis of the water cycle in a subarctic watershed. Due to the complexity of the subsurface geology within the watershed, an integrated investigation was instrumental to provide a detailed understanding of the hydrogeological context as a basis for the water balance. Based on this water balance, for the two studied hydrological years of 2015 and 2016, the average values are 828 mm for precipitation, 337 mm for evapotranspiration, 46 mm for snow sublimation, 263 mm for runoff, 183 mm for groundwater exchange (losses with other aquifers outside the watershed), and 0 mm for change in water storage. Although these values likely have significant uncertainty and spatial variability, this water balance is shown to be plausible. It was also found that permafrost influences surface water and groundwater interaction, even if located in low-permeability sediments. It is expected that permafrost degradation will likely increase stream baseflow, especially in winter.
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