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Improved representation of laminar and turbulent sheet flow in subglacial drainage models
Hill, T., Flowers, G. E., Hoffman, M. J., Bingham, D., & Werder, M. A. (2024). Improved representation of laminar and turbulent sheet flow in subglacial drainage models. Journal of Glaciology, 70(e24), 1-14. https://doi.org/10.1017/jog.2023.103
DAS to discharge: using distributed acoustic sensing (DAS) to infer glacier runoff
Manos, J. M., Gräff, D., Martin, E. R., Paitz, P., Walter, F., Fichtner, A., & Lipovsky, B. P. (2024). DAS to discharge: using distributed acoustic sensing (DAS) to infer glacier runoff. Journal of Glaciology, 70, e67 (9 pp.). https://doi.org/10.1017/jog.2024.46
Constraints on subglacial melt fluxes from observations of active subglacial lake recharge
Malczyk, G., Gourmelen, N., Werder, M., Wearing, M., & Goldberg, D. (2023). Constraints on subglacial melt fluxes from observations of active subglacial lake recharge. Journal of Glaciology, 69(278), 1900-1914. https://doi.org/10.1017/jog.2023.70
Field-based research directions for investigating the interior of high-elevation debris-covered glaciers
Miles, K. E., Hubbard, B., Miles, E. S., Quincey, D. J., & Rowan, A. V. (2022). Field-based research directions for investigating the interior of high-elevation debris-covered glaciers. Annals of Glaciology, 63(87-89), 107-110. https://doi.org/10.1017/aog.2023.21
Characterising englacial R-channels using artificial moulins
Pohle, A., Werder, M. A., Gräff, D., & Farinotti, D. (2022). Characterising englacial R-channels using artificial moulins. Journal of Glaciology, 68(271), 879-890. https://doi.org/10.1017/jog.2022.4
Cryoegg: development and field trials of a wireless subglacial probe for deep, fast-moving ice
Prior-Jones, M. R., Bagshaw, E. A., Lees, J., Clare, L., Burrow, S., Werder, M. A., … Hubbard, B. (2021). Cryoegg: development and field trials of a wireless subglacial probe for deep, fast-moving ice. Journal of Glaciology, 67(264), 627-640. https://doi.org/10.1017/jog.2021.16
Hydrology of debris-covered glaciers in High Mountain Asia
Miles, K. E., Hubbard, B., Irvine-Fynn, T. D. L., Miles, E. S., Quincey, D. J., & Rowan, A. V. (2020). Hydrology of debris-covered glaciers in High Mountain Asia. Earth-Science Reviews, 207, 103212 (21 pp.). https://doi.org/10.1016/j.earscirev.2020.103212
Surface and subsurface hydrology of debris-covered Khumbu Glacier, Nepal, revealed by dye tracing
Miles, K. E., Hubbard, B., Quincey, D. J., Miles, E. S., Irvine-Fynn, T. D. L., & Rowan, A. V. (2019). Surface and subsurface hydrology of debris-covered Khumbu Glacier, Nepal, revealed by dye tracing. Earth and Planetary Sciences Letters, 513, 176-186. https://doi.org/10.1016/j.epsl.2019.02.020
Regional and annual variability in subglacial sediment transport by water for two glaciers in the Swiss Alps
Delaney, I., Bauder, A., Werder, M. A., & Farinotti, D. (2018). Regional and annual variability in subglacial sediment transport by water for two glaciers in the Swiss Alps. Frontiers in Earth Science, 6, 175 (17 pp.). https://doi.org/10.3389/feart.2018.00175
Quantitative evaluation of different hydrological modelling approaches in a partly glacierized Swiss watershed
Magnusson, J., Farinotti, D., Jonas, T., & Bavay, M. (2011). Quantitative evaluation of different hydrological modelling approaches in a partly glacierized Swiss watershed. Hydrological Processes, 25(13), 2071-2084. https://doi.org/10.1002/hyp.7958