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  • (-) WSL Research Units = Mountain Hydrology and Mass Movements
  • (-) Publication Year = 2019
  • (-) Keywords ≠ PREVAH model
  • (-) WSL Authors ≠ Malle, Johanna T.
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The demographics of water: a review of water ages in the critical zone
Sprenger, M., Stumpp, C., Weiler, M., Aeschbach, W., Allen, S. T., Benettin, P., … Werner, C. (2019). The demographics of water: a review of water ages in the critical zone. Reviews of Geophysics, 57(3), 800-834. https://doi.org/10.1029/2018RG000633
Verkleinerungsprozesse von Schwemmholz bei Hochwasser
Steeb, N. (2019). Verkleinerungsprozesse von Schwemmholz bei Hochwasser. Ingenieurbiologie: Mitteilungsblatt (1), 7-13.
Supraglacial ice cliffs and ponds on debris-covered glaciers: spatio-temporal distribution and characteristics
Steiner, J. F., Buri, P., Miles, E. S., Ragettli, S., & Pellicciotti, F. (2019). Supraglacial ice cliffs and ponds on debris-covered glaciers: spatio-temporal distribution and characteristics. Journal of Glaciology, 65(252), 617-632. https://doi.org/10.1017/jog.2019.40
Wavelet scale variance analysis of wind extremes in mountainous terrains
Telesca, L., Guignard, F., Helbig, N., & Kanevski, M. (2019). Wavelet scale variance analysis of wind extremes in mountainous terrains. Energies, 12(16), 3048 (10 pp.). https://doi.org/10.3390/en12163048
Numerical simulation for evaluating the phase-shift of fine sediment in stony debris flows
Uchida, T., Nishiguchi, Y., McArdell, B. W., & Satofuka, Y. (2019). Numerical simulation for evaluating the phase-shift of fine sediment in stony debris flows. In J. W. Kean, J. A. Coe, P. M. Santi, & B. K. Guillen (Eds.), Association of environmental and engineering geologists special publication: Vol. 28. Debris-flow hazards mitigation: mechanics, monitoring, modeling, and assessment (pp. 451-458). https://doi.org/10.25676/11124/173185
Review of approval of flexible rockfall protection systems according to ETAG 027
Volkwein, A., Gerber, W., Klette, J., & Spescha, G. (2019). Review of approval of flexible rockfall protection systems according to ETAG 027. Geosciences, 9(1), 49 (17 pp.). https://doi.org/10.3390/geosciences9010049
What is the best time to take stream isotope samples for event-based model calibration?
Wang, L., von Freyberg, J., van Meerveld, I., Seibert, J., & Kirchner, J. W. (2019). What is the best time to take stream isotope samples for event-based model calibration? Journal of Hydrology, 577, 123950 (14 pp.). https://doi.org/10.1016/j.jhydrol.2019.123950
Climate change impact on Swiss hydropower production. Synthesis report
Wechsler, T., & Stähli, M. (2019). Climate change impact on Swiss hydropower production. Synthesis report. Swiss Competence Center for Energy Research - Supply of Electricity (SCCER-SoE).
Diversity on the rebound
Weil, A., & Kirchner, J. W. (2019). Diversity on the rebound. Nature Ecology & Evolution, 3(6), 873-874. https://doi.org/10.1038/s41559-019-0883-5
Deciphering debris-flow seismograms at Illgraben, Switzerland
Wenner, M., Walter, F., McArdell, B., & Farinotti, D. (2019). Deciphering debris-flow seismograms at Illgraben, Switzerland. In J. W. Kean, J. A. Coe, P. M. Santi, & B. K. Guillen (Eds.), Association of environmental and engineering geologists special publication: Vol. 28. Debris-flow hazards mitigation: mechanics, monitoring, modeling, and assessment (pp. 222-229). Association of Environmental and Engineering Geologists.
ESA SnowLab project: 4 years of wide band scatterometer measurements of seasonal snow
Wiesmann, A., Caduff, R., Werner, C., Frey, O., Schneebeli, M., Löwe, H., … Fehr, T. (2019). ESA SnowLab project: 4 years of wide band scatterometer measurements of seasonal snow. In 2019 IEEE international geoscience & remote sensingsymposium. Proceedings (pp. 5745-5748). https://doi.org/10.1109/IGARSS.2019.8898961
Modeling the response of the Langtang glacier and the Hintereisferner to a changing climate since the little ice age
Wijngaard, R. R., Steiner, J. F., Kraaijenbrink, P. D. A., Klug, C., Adhikari, S., Banerjee, A., … Immerzeel, W. W. (2019). Modeling the response of the Langtang glacier and the Hintereisferner to a changing climate since the little ice age. Frontiers in Earth Science, 7, 143 (24 pp.). https://doi.org/10.3389/feart.2019.00143
The bias detecting ensemble: a new and efficient technique for dynamically incorporating observations into physics‐based, multi‐layer, snow models
Winstral, A., Magnusson, J., Schirmer, M., & Jonas, T. (2019). The bias detecting ensemble: a new and efficient technique for dynamically incorporating observations into physics‐based, multi‐layer, snow models. Water Resources Research, 55, 613-631. https://doi.org/10.1029/2018WR024521
Assessment of plant-induced suction and its effects on the shear strength of rooted soils
Yildiz, A., Graf, F., Rickli, C., & Springman, S. M. (2019). Assessment of plant-induced suction and its effects on the shear strength of rooted soils. Proceedings of the Institution of Civil Engineers: Geotechnical Engineering, 172(6), 507-519. https://doi.org/10.1680/jgeen.18.00209
Introduction to ensemble forecast applications and showcases
Zappa, M., van Andel, S. J., & Cloke, H. L. (2019). Introduction to ensemble forecast applications and showcases. In Q. Duan, F. Pappenberger, A. Wood, H. L. Cloke, & J. C. Schaake (Eds.), Handbook of hydrometeorological ensemble forecasting (pp. 1181-1185). https://doi.org/10.1007/978-3-642-39925-1_45
Thematic issue on snow resources and hydrological cycle
Zappa, M., Holko, L., Šanda, M., Vitvar, T., & Parajka, J. (2019). Thematic issue on snow resources and hydrological cycle. Journal of Hydrology and Hydromechanics, 67(1), 1-3. https://doi.org/10.2478/johh-2018-0027
Trockenheit in der Schweiz: Vergleich der Jahre 2003, 2015 und 2018
Zappa, M., Liechti, K., Winstral, A. H., & Barben, M. (2019). Trockenheit in der Schweiz: Vergleich der Jahre 2003, 2015 und 2018. Wasser, Energie, Luft, 111(2), 95-100.
Modelling the future evolution of glaciers in the European Alps under the EURO-CORDEX RCM ensemble
Zekollari, H., Huss, M., & Farinotti, D. (2019). Modelling the future evolution of glaciers in the European Alps under the EURO-CORDEX RCM ensemble. Cryosphere, 13(4), 1125-1146. https://doi.org/10.5194/tc-13-1125-2019
Unravelling the high-altitude Nansen blue ice field meteorite trap (East Antarctica) and implications for regional palaeo-conditions
Zekollari, H., Goderis, S., Debaille, V., van Ginneken, M., Gattacceca, J., Timothy Jull, A. J., … Claeys, P. (2019). Unravelling the high-altitude Nansen blue ice field meteorite trap (East Antarctica) and implications for regional palaeo-conditions. Geochimica et Cosmochimica Acta, 248, 289-310. https://doi.org/10.1016/j.gca.2018.12.035
Estimating below‐canopy light regimes using airborne laser scanning: an application to plant community analysis
Zellweger, F., Baltensweiler, A., Schleppi, P., Huber, M., Küchler, M., Ginzler, C., & Jonas, T. (2019). Estimating below‐canopy light regimes using airborne laser scanning: an application to plant community analysis. Ecology and Evolution, 9(16), 9149-9159. https://doi.org/10.1002/ece3.5462