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A framework for untangling transient groundwater mixing and travel times
Popp, A. L., Pardo-Álvarez, Á., Schilling, O. S., Scheidegger, A., Musy, S., Peel, M., … Kipfer, R. (2021). A framework for untangling transient groundwater mixing and travel times. Water Resources Research, 57(4), e2020WR028362 (16 pp.). https://doi.org/10.1029/2020WR028362
Quantifying groundwater recharge dynamics and unsaturated zone processes in snow‐dominated catchments via on‐site dissolved gas analysis
Schilling, O. S., Parajuli, A., Tremblay Otis, C., Müller, T. U., Antolinez Quijano, W., Tremblay, Y., … Therrien, R. (2021). Quantifying groundwater recharge dynamics and unsaturated zone processes in snow‐dominated catchments via on‐site dissolved gas analysis. Water Resources Research, 57(2), e2020WR028479 (24 pp.). https://doi.org/10.1029/2020WR028479
Topsoil structure stability in a restored floodplain: impacts of fluctuating water levels, soil parameters and ecosystem engineers
Schomburg, A., Schilling, O. S., Guenat, C., Schirmer, M., Le Bayon, R. C., & Brunner, P. (2018). Topsoil structure stability in a restored floodplain: impacts of fluctuating water levels, soil parameters and ecosystem engineers. Science of the Total Environment, 639, 1610-1622. https://doi.org/10.1016/j.scitotenv.2018.05.120
Advancing physically-based flow simulations of alluvial systems through atmospheric noble gases and the novel 37Ar tracer method
Gerber, C., Schilling, O. S., Partington, D. J., Purtschert, R., Brennwald, M. S., Kipfer, R., … Brunner, P. (2017). Advancing physically-based flow simulations of alluvial systems through atmospheric noble gases and the novel 37Ar tracer method. Water Resources Research, 53(12), 10465-10490. https://doi.org/10.1002/2017WR020754