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  • (-) WSL Research Units = Snow Avalanches and Prevention
  • (-) Publication Year = 2022
  • (-) WSL Authors ≠ Stoffel, Andreas
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Fingerprints of frontal passages and post-depositional effects in the stable water isotope signal of seasonal Alpine snow
Aemisegger, F., Trachsel, J., Sadowski, Y., Eichler, A., Lehning, M., Avak, S., & Schneebeli, M. (2022). Fingerprints of frontal passages and post-depositional effects in the stable water isotope signal of seasonal Alpine snow. Journal of Geophysical Research D: Atmospheres, 127(22), e2022JD037469 (20 pp.). https://doi.org/10.1029/2022JD037469
Crack propagation speeds in weak snowpack layers
Bergfeld, B., Van Herwijnen, A., Bobillier, G., Larose, E., Moreau, L., Trottet, B., … Schweizer, J. (2022). Crack propagation speeds in weak snowpack layers. Journal of Glaciology, 68(269), 557-570. https://doi.org/10.1017/jog.2021.118
GNSS signal-based snow water equivalent determination for different snowpack conditions along a steep elevation gradient
Capelli, A., Koch, F., Henkel, P., Lamm, M., Appel, F., Marty, C., & Schweizer, J. (2022). GNSS signal-based snow water equivalent determination for different snowpack conditions along a steep elevation gradient. Cryosphere, 16(2), 505-531. https://doi.org/10.5194/tc-16-505-2022
Achtung Lawinen!
Harvey, S., Rhyner, H., Dürr, L., Schweizer, J., & Henny, H. M. (2022). Achtung Lawinen! (8th ed.). sine loco: Kern-Ausbildungsteam «Lawinenprävention Schneesport».
Attention avalanches!
Harvey, S., Rhyner, H., Dürr, L., Schweizer, J., & Henny, H. M. (2022). Attention avalanches! (8th ed.). sine loco: Groupe de compétence «prévention des accidents d’avalanche».
Attenzione valanghe!
Harvey, S., Rhyner, H., Dürr, L., Schweizer, J., & Henny, H. (2022). Attenzione valanghe! (8th ed.). sine loco: Gruppo centrale per la formazione «Prevenzione valanghe negli sport sulla neve».
Caution avalanches!
Harvey, S., Rhyner, H., Dürr, L., Schweizer, J., & Henny, H. M. (2022). Caution avalanches! (8th ed.). sine loco: The «Snow Sport Avalanche Accident Prevention» core training team.
Characteristics of risk
Kleinn, J., Aller, D., & Oplatka, M. (2022). Characteristics of risk. In J. M. Collins & J. M. Done (Eds.), Hurricane risk: Vol. 2. Hurricane risk in a changing climate (pp. 25-42). https://doi.org/10.1007/978-3-031-08568-0_2
Physics-based estimates of drag coefficients for the impact pressure calculation of dense snow avalanches
Kyburz, M. L., Sovilla, B., Gaume, J., & Ancey, C. (2022). Physics-based estimates of drag coefficients for the impact pressure calculation of dense snow avalanches. Engineering Structures, 254, 113478 (17 pp.). https://doi.org/10.1016/j.engstruct.2021.113478
The concept of the mobilized domain: how it can explain and predict the forces exerted by a cohesive granular avalanche on an obstacle
Kyburz, M. L., Sovilla, B., Gaume, J., & Ancey, C. (2022). The concept of the mobilized domain: how it can explain and predict the forces exerted by a cohesive granular avalanche on an obstacle. Granular Matter, 24(2), 45 (17 pp.). https://doi.org/10.1007/s10035-021-01196-1
Different erosion and entrainment mechanisms in snow avalanches
Li, X., Sovilla, B., Ligneau, C., Jiang, C., & Gaume, J. (2022). Different erosion and entrainment mechanisms in snow avalanches. Mechanics Research Communications, 124, 103914 (8 pp.). https://doi.org/10.1016/j.mechrescom.2022.103914
Numerical investigation of the effect of cohesion and ground friction on snow avalanches flow regimes
Ligneau, C., Sovilla, B., & Gaume, J. (2022). Numerical investigation of the effect of cohesion and ground friction on snow avalanches flow regimes. PLoS One, 17(2), e0264033 (24 pp.). https://doi.org/10.1371/journal.pone.0264033
Approches normatives et lignes directrices pour la conception d’ouvrages de protection en bois rond
Margreth, S. (2022). Approches normatives et lignes directrices pour la conception d’ouvrages de protection en bois rond. In G. Ratsch (Ed.), Lignatec: Vol. 34. Ouvrages de protection en bois. Erosion | glissements de terrain | torrents | avalanches (pp. 14-16). Lignum.
Holz zum Schutz vor Lawinen und Schneebewegungen
Margreth, S. (2022). Holz zum Schutz vor Lawinen und Schneebewegungen. In G. Ratsch (Ed.), Lignatec: Vol. 34. Naturgefahren mit Holz begegnen. Erosion | Rutschung | Wildbach | Lawinen (pp. 43-51). Lignum.
Le bois dans la protection contre les avalanches et les mouvements de neige
Margreth, S. (2022). Le bois dans la protection contre les avalanches et les mouvements de neige. In G. Ratsch (Ed.), Lignatec: Vol. 34. Ouvrages de protection en bois. Erosion | glissements de terrain | torrents | avalanches (pp. 43-51). Lignum.
Normative Ansätze und Hinweise zur Bemessung von Schutzbauten aus Rundholz
Margreth, S. (2022). Normative Ansätze und Hinweise zur Bemessung von Schutzbauten aus Rundholz. In G. Ratsch (Ed.), Lignatec: Vol. 34. Naturgefahren mit Holz begegnen. Erosion | Rutschung | Wildbach | Lawinen (pp. 14-16). Lignum.
Standards and notes on the dimensioning of hazard mitigation structures made of round timber
Margreth, S. (2022). Standards and notes on the dimensioning of hazard mitigation structures made of round timber. In G. Ratsch (Ed.), Lignatec: Vol. 34. Using timber to counter natural hazards. Erosion | landslide | torrent | avalanche (pp. 14-16). Lignum.
Timber for protection against avalanches and snow movements
Margreth, S. (2022). Timber for protection against avalanches and snow movements. In G. Ratsch (Ed.), Lignatec: Vol. 34. Using timber to counter natural hazards. Erosion | landslide | torrent | avalanche (pp. 43-51). Lignum.
A random forest model to assess snow instability from simulated snow stratigraphy
Mayer, S., van Herwijnen, A., Techel, F., & Schweizer, J. (2022). A random forest model to assess snow instability from simulated snow stratigraphy. Cryosphere, 16(11), 4593-4615. https://doi.org/10.5194/tc-16-4593-2022
Prevention of hypothermia in the aftermath of natural disasters in areas at risk of avalanches, earthquakes, tsunamis and floods
Oshiro, K., Tanioka, Y., Schweizer, J., Zafren, K., Brugger, H., & Paal, P. (2022). Prevention of hypothermia in the aftermath of natural disasters in areas at risk of avalanches, earthquakes, tsunamis and floods. International Journal of Environmental Research and Public Health, 19(3), 1098 (13 pp.). https://doi.org/10.3390/ijerph19031098