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A dilatant two-phase debris flow model with erosion validated by full-scale field data from the Illgraben test station
Meyrat, G., Bartelt, P., & McArdell, B. (2023). A dilatant two-phase debris flow model with erosion validated by full-scale field data from the Illgraben test station. In M. Pirulli, A. Leonardi, & F. Vagnon (Eds.), E3S web of conferences: Vol. 415. 8th international conference on debris flow hazard mitigation (DFHM8) (p. 01015 (4 pp.). https://doi.org/10.1051/e3sconf/202341501015
A dilatant, two-layer debris flow model validated by flow density measurements at the Swiss illgraben test site
Meyrat, G., McArdell, B., Ivanova, K., Müller, C., & Bartelt, P. (2022). A dilatant, two-layer debris flow model validated by flow density measurements at the Swiss illgraben test site. Landslides, 19, 265-276. https://doi.org/10.1007/s10346-021-01733-2
A reverse dynamical investigation of the catastrophic wood-snow avalanche of 18 January 2017 at Rigopiano, Gran Sasso National Park, Italy
Frigo, B., Bartelt, P., Chiaia, B., Chiambretti, I., & Maggioni, M. (2021). A reverse dynamical investigation of the catastrophic wood-snow avalanche of 18 January 2017 at Rigopiano, Gran Sasso National Park, Italy. International Journal of Disaster Risk Science, 12, 40-55. https://doi.org/10.1007/s13753-020-00306-6
AVAL-1D E RAMM:: Avalanche. Un sistema di modelli numerici per lo studio della dinamica delle valanghe dense
Sovilla, B., Christen, M., Bartelt, P., & Gruber, U. (2006). AVAL-1D E RAMM:: Avalanche. Un sistema di modelli numerici per lo studio della dinamica delle valanghe dense. In Foreste: Recupero Ambientale Naturalistico Ecologico. Linee-Guida per la mitigazione del rischio idrogeologico (pp. 257-268). Regione Autonoma Friuli Venezia Giulia. Direzione centrale risorse agricole, naturali, forestali e montagna.
Accounting for forest effects in avalanche models and risk analysis
Bebi, P., Feistl, T., Teich, M., Margreth, S., & Bartelt, P. (2016). Accounting for forest effects in avalanche models and risk analysis. In G. Koboltschnig (Ed.), 13th congress INTERPRAEVENT 2016. 30 May to 2 June 2016. Lucerne, Switzerland. Extended abstracts "Living with natural risks" (pp. 184-185). International Research Society INTERPRAEVENT.
An energy-based method to calculate streamwise density variations in snow avalanches
Buser, O., & Bartelt, P. (2015). An energy-based method to calculate streamwise density variations in snow avalanches. Journal of Glaciology, 61(227), 563-575. https://doi.org/10.3189/2015JoG14J054
An overview of a decade of applied debris-flow runout modeling in Switzerland: challenges and recommendations
Graf, C., Christen, M., McArdell, B. W., & Bartelt, P. (2019). An overview of a decade of applied debris-flow runout modeling in Switzerland: challenges and recommendations. 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. 685-692). Association of Environmental and Engineering Geologists.
Analysis of one avalanche zone in the Eastern Pyrenees (Val d’Aran) using historical analysis, snow-climate data and mixed flowing/powder avalanche modelling
Riba Porras, S., García-Sellés, C., Bartelt, P., & Stoffel, L. (2018). Analysis of one avalanche zone in the Eastern Pyrenees (Val d’Aran) using historical analysis, snow-climate data and mixed flowing/powder avalanche modelling. In International snow science workshop proceedings 2018 (pp. 561-565).
Application of three-dimensional rockfall modeling to rock-face engineering
Wendeler, C., Bühler, Y., Bartelt, P., Glover, J., & Luis, R. (2016). Application of three-dimensional rockfall modeling to rock-face engineering. In R. Ulusay, O. Aydan, M. A. Hindistan, & E. Tuncay (Eds.), Vol. 1. Rock mechanics and rock engineering: from the past to the future (pp. 1303-1306). CRC Press.
Application of three-dimensional rockfall modelling to rock face engineering. Anwendung eines 3D-Steinschlag Modells für Felssicherungen
Wendeler, C., Bühler, Y., Bartelt, P., & Glover, J. (2017). Application of three-dimensional rockfall modelling to rock face engineering. Anwendung eines 3D-Steinschlag Modells für Felssicherungen. Geomechanics and Tunnelling, 10(1), 74-80. https://doi.org/10.1002/geot.201600073
Applied space-borne remote sensing to identify mass movements and the exemplary modelling of potentially catastrophic failures in the Bhagirathi Area, India
Dasser, G., Munch, J., Bühler, Y., Bartelt, P., & Manconi, A. (2023). Applied space-borne remote sensing to identify mass movements and the exemplary modelling of potentially catastrophic failures in the Bhagirathi Area, India. In T. P. Kersten & N. Tilly (Eds.), Publikationen der Deutschen Gesellschaft für Photogrammetrie, Fernerkundung und Geoinformation e.V.: Vol. 31. 43. wissenschaftlich-technische Jahrestagung der DGPF in München. Jahrestagung der DGPF. Photogrammetrie, Fernerkundung, Geoinformation (pp. 276-287). Deutsche Gesellschaft für Photogrammetrie, Fernerkundung und Geoinformation (DGPF).
Automated avalanche hazard indication mapping on a statewide scale
Bühler, Y., Bebi, P., Christen, M., Margreth, S., Stoffel, L., Stoffel, A., … Bartelt, P. (2022). Automated avalanche hazard indication mapping on a statewide scale. Natural Hazards and Earth System Sciences, 22(6), 1825-1843. https://doi.org/10.5194/nhess-22-1825-2022
Automatisch berechnete Gefahrenhinweiskarten für Lawinen. Automated avalanche hazard indication mapping
Bühler, Y., Bebi, P., Christen, M., Margreth, S., Stoffel, A., Stoffel, L., … Kühne, R. (2022). Automatisch berechnete Gefahrenhinweiskarten für Lawinen. Automated avalanche hazard indication mapping. Wildbach- und Lawinenverbau, 86(190), 88-95.
Avalanche dynamics by Newton. Reply to comments on avalanche flow models based on the concept of random kinetic energy
Bartelt, P., & Buser, O. (2018). Avalanche dynamics by Newton. Reply to comments on avalanche flow models based on the concept of random kinetic energy. Journal of Glaciology, 64(243), 165-170. https://doi.org/10.1017/jog.2018.1
Avalanche modelling on the Milfoard Road
Miller, A., Sirguey, P., Morris, S., Bartelt, P., Cullen, N., & Buhler, Y. (2021). Avalanche modelling on the Milfoard Road. New Zealand Avalanche Dispatch (9), 43-47.
Avalanche simulations in forested terrain: a framework towards a Bayesian probabilistic model calibration
Teich, M., Vassella, I., Bartelt, P., Bebi, P., Feistl, T., & Grêt-Regamey, A. (2012). Avalanche simulations in forested terrain: a framework towards a Bayesian probabilistic model calibration. In ISSW proceedings. International snow science workshop proceedings 2012 (pp. 628-632).
Avalanche survival strategies for different parts of a flowing avalanche
Birkeland, K. W., Meiners, T., & Bartelt, P. (2008). Avalanche survival strategies for different parts of a flowing avalanche. In ISSW proceedings. International snow science workshop proceedings 2008 (pp. 73-79).
Avalanche survival strategies for different parts of a flowing avalanche: merging theory and practice to increase your odds
Birkeland, K., Bartelt, P., & Meiners, T. (2008). Avalanche survival strategies for different parts of a flowing avalanche: merging theory and practice to increase your odds. Avalanche Review, 26(3), 12-13, 27.
Avalanches and other snow movements
Bebi, P., Bartelt, P., & Rixen, C. (2022). Avalanches and other snow movements. In T. Wohlgemuth, A. Jentsch, & R. Seidl (Eds.), Landscape series: Vol. 32. Disturbance ecology (pp. 195-210). https://doi.org/10.1007/978-3-030-98756-5_9
Back calculation of the <em>In den Arelen</em> avalanche with RAMMS: interpretation of model results
Christen, M., Bartelt, P., & Kowalski, J. (2010). Back calculation of the In den Arelen avalanche with RAMMS: interpretation of model results. Annals of Glaciology, 51(54), 161-168. https://doi.org/10.3189/172756410791386553
 

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