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A multi-step avalanche risk framework for the quantification of climate change impacts on large scale avalanche hazard
Ortner, G., Bründl, M., & Bresch, D. N. (2024). A multi-step avalanche risk framework for the quantification of climate change impacts on large scale avalanche hazard. In K. Gisnås, P. Gauer, H. Dahle, M. Eckerstorfer, A. Mannberg, & K. Müller (Eds.), Proceedings of the international Snow Science Workshop 2024 (pp. 611-615). Norwegian Geotechnical Institute.
Operational forecasting of wet snow avalanche activity: a case study for the eastern European Alps
Gobiet, A., Mitterer, C., Jöbstl, L., Steinkogler, W., Rieder, H., Olefs, M., … Bellaire, S. (2016). Operational forecasting of wet snow avalanche activity: a case study for the eastern European Alps. In ISSW proceedings. International snow science workshop proceedings 2016 (pp. 132-139).
Statistical nowcast of avalanche activity at the regional scale
Harvey, S., Van Herwijnen, A., & Richter, B. (2016). Statistical nowcast of avalanche activity at the regional scale. In ISSW proceedings. International snow science workshop proceedings 2016 (pp. 1173-1179).
Thermal regime of rock and its relation to snow cover in steep alpine rock walls: Gemsstock, Central Swiss Alps
Haberkorn, A., Phillips, M., Kenner, R., Rhyner, H., Bavay, M., Galos, S. P., & Hoelzle, M. (2015). Thermal regime of rock and its relation to snow cover in steep alpine rock walls: Gemsstock, Central Swiss Alps. Geografiska Annaler Series A: Physical Geography, 97(3), 579-597. https://doi.org/10.1111/geoa.12101
Evaluation of modelled snow depth and snow water equivalent at three contrasting sites in Switzerland using SNOWPACK simulations driven by different meteorological data input
Schmucki, E., Marty, C., Fierz, C., & Lehning, M. (2014). Evaluation of modelled snow depth and snow water equivalent at three contrasting sites in Switzerland using SNOWPACK simulations driven by different meteorological data input. Cold Regions Science and Technology, 99, 27-37. https://doi.org/10.1016/j.coldregions.2013.12.004
Textile protection of snow and ice: measured and simulated effects on the energy and mass balance
Olefs, M., & Lehning, M. (2010). Textile protection of snow and ice: measured and simulated effects on the energy and mass balance. Cold Regions Science and Technology, 62(2-3), 126-141. https://doi.org/10.1016/j.coldregions.2010.03.011
Systematic assessment of new snow settlement in SNOWPACK
Steinkogler, W., Fierz, C., Lehning, M., & Obleitner, F. (2009). Systematic assessment of new snow settlement in SNOWPACK. In J. Schweizer & A. van Herwijnen (Eds.), ISSW proceedings. International snow science workshop proceedings 2009 (pp. 132-135).
Assessment of snow transport in avalanche terrain
Lehning, M., & Fierz, C. (2008). Assessment of snow transport in avalanche terrain. Cold Regions Science and Technology, 51(2-3), 240-252. https://doi.org/10.1016/j.coldregions.2007.05.012
A physical SNOWPACK model for the Swiss avalanche warning Part II. snow microstructure
Lehning, M., Bartelt, P., Brown, B., Fierz, C., & Satyawali, P. (2002). A physical SNOWPACK model for the Swiss avalanche warning Part II. snow microstructure. Cold Regions Science and Technology, 35(3), 147-167. https://doi.org/10.1016/S0165-232x(02)00073-3
Assessment of the microstructure-based snow-cover model SNOWPACK: thermal and mechanical properties
Fierz, C., & Lehning, M. (2001). Assessment of the microstructure-based snow-cover model SNOWPACK: thermal and mechanical properties. Cold Regions Science and Technology, 33(2-3), 123-131. https://doi.org/10.1016/S0165-232X(01)00033-7
An objective snow profile comparison method and its application to SNOWPACK
Lehning, M., Fierz, C., & Lundy, C. (2001). An objective snow profile comparison method and its application to SNOWPACK. Cold Regions Science and Technology, 33(2-3), 253-261. https://doi.org/10.1016/S0165-232x(01)00044-1