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Debris-flow monitoring with high-frequency LiDAR scanners: a new method to infer the internal dynamics of debris flows
Aaron, J., Spielmann, R., McArdell, B. W., & Graf, C. (2023). Debris-flow monitoring with high-frequency LiDAR scanners: a new method to infer the internal dynamics of debris flows. In M. Pirulli, A. Leonardi, & F. Vagnon (Eds.), E3S web of conferences: Vol. 415. 8th international conference on debris flow hazard mitigation (DFHM8) (p. 01001 (4 pp.). https://doi.org/10.1051/e3sconf/202341501001
High‐frequency 3D LIDAR measurements of a debris flow: a novel method to investigate the dynamics of full‐scale events in the field
Aaron, J., Spielmann, R., McArdell, B. W., & Graf, C. (2023). High‐frequency 3D LIDAR measurements of a debris flow: a novel method to investigate the dynamics of full‐scale events in the field. Geophysical Research Letters, 50(5), e2022GL102373 (10 pp.). https://doi.org/10.1029/2022GL102373
Seismic measurements of roll waves in debris flows
Walter, F., Zhang, Z., Aaron, J., McArdell, B., & Graf, C. (2023). Seismic measurements of roll waves in debris flows. In M. Pirulli, A. Leonardi, & F. Vagnon (Eds.), E3S web of conferences: Vol. 415. 8th international conference on debris flow hazard mitigation (DFHM8) (p. 03031 (3 pp.). https://doi.org/10.1051/e3sconf/202341503031
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.
Erneuerung Murgangwaage im Illgraben
Graf, C., Badoux, A., McArdell, B., Collet, M., Boss, S., & Huguenin, P. (2018). Erneuerung Murgangwaage im Illgraben. FAN Agenda, Fachleute Naturgefahren Schweiz (2), 5-9.
Dispersive pressure, boundary jerk and configurational changes in debris flows
Bartelt, P., McArdell, B., Graf, C., Christen, M., & Buser, O. (2016). Dispersive pressure, boundary jerk and configurational changes in debris flows. International Journal of Erosion Control Engineering, 9(1), 1-6. https://doi.org/10.13101/ijece.9.1
Modeling debris-flow runout pattern on a forested alpine fan with different dynamic simulation models
Schraml, K., Thomschitz, B., McArdell, B., Graf, C., Hungr, O., & Kaitna, R. (2015). Modeling debris-flow runout pattern on a forested alpine fan with different dynamic simulation models. In G. Lollino, D. Giordan, G. B. Crosta, J. Corominas, R. Azzam, J. Wasowski, & N. Sciarra (Eds.), Engineering geology for society and territory - volume 2. Landslide processes (pp. 1673-1676). https://doi.org/10.1007/978-3-319-09057-3_297
Modeling debris-flow runout patterns on two alpine fans with different dynamic simulation models
Schraml, K., Thomschitz, B., McArdell, B. W., Graf, C., & Kaitna, R. (2015). Modeling debris-flow runout patterns on two alpine fans with different dynamic simulation models. Natural Hazards and Earth System Sciences, 15(7), 1483-1492. https://doi.org/10.5194/nhess-15-1483-2015
Gefahrenkartierung von Murgängen. Numerische Modellsimulationen im Vergleich zu empirischen, analytischen Methoden
Walser, M., Huggel, C., McArdell, B., & Graf, C. (2014). Gefahrenkartierung von Murgängen. Numerische Modellsimulationen im Vergleich zu empirischen, analytischen Methoden. Wasser, Energie, Luft, 106(3), 215-218.
Inwiefern eignen sich numerische Modellsimulationen für die Gefahrenkartierung von Murgängen - ein Vergleich
Walser, M., McArdell, B., Huggel, C., & Graf, C. (2014). Inwiefern eignen sich numerische Modellsimulationen für die Gefahrenkartierung von Murgängen - ein Vergleich. FAN Agenda, Fachleute Naturgefahren Schweiz (1), 21-23.
Gefahrenkartierung Mattertal: Grundlagenbeschaffung und numerische Modellierung von Murgängen
Graf, C., Deubelbeiss, Y., Bühler, Y., Meier, L., McArdell, B., Christen, M., & Bartelt, P. (2013). Gefahrenkartierung Mattertal: Grundlagenbeschaffung und numerische Modellierung von Murgängen. In C. Graf (Ed.), Mattertal – ein Tal in Bewegung (pp. 85-112). Eidg. Forschungsanstalt für Wald, Schnee und Landschaft WSL.
Integral hazard management using a unified software environment. Numerical simulation tool "RAMMS" for gravitational natural hazards
Christen, M., Bühler, Y., Bartelt, P., Leine, R., Glover, J., Schweizer, A., … Volkwein, A. (2012). Integral hazard management using a unified software environment. Numerical simulation tool "RAMMS" for gravitational natural hazards. In G. Koboltschnig, J. Hübl, & J. Braun (Eds.), 12th congress INTERPRAEVENT 2012. 23 to 26 April 2012. Grenoble, France. Conference proceedings "Protection of living space from natural hazards" (pp. 77-86).
Numerische Simulation von gravitativen Naturgefahren mit RAMMS (Rapid Mass Movements)
Christen, M., Gerber, W., Graf, C., Bühler, Y., Bartelt, P., Glover, J., … Steinkogler, W. (2012). Numerische Simulation von gravitativen Naturgefahren mit RAMMS (Rapid Mass Movements). Wildbach- und Lawinenverbau, 76(169), 282-292.
Debris-flow monitoring and debris-flow runout modelling before and after construction of mitigation measures: an example from an instable zone in the Southern Swiss Alps
Graf, C., & McArdell, B. W. (2011). Debris-flow monitoring and debris-flow runout modelling before and after construction of mitigation measures: an example from an instable zone in the Southern Swiss Alps. In C. Lambiel, E. Reynard, & C. Scapozza (Eds.), Géovisions: Vol. 36. La géomorphologie alpine: entre patrimoine et contrainte (pp. 245-258). Université de Lausanne.
A debris-flow alarm system for the Alpine Illgraben catchment: design and performance
Badoux, A., Graf, C., Rhyner, J., Kuntner, R., & McArdell, B. W. (2009). A debris-flow alarm system for the Alpine Illgraben catchment: design and performance. Natural Hazards, 49(3), 517-539. https://doi.org/10.1007/s11069-008-9303-x
Alarmsystem Illgraben - Erfahrungen während der Pilotbetriebsphase
Graf, C., Badoux, A., & McArdell, B. W. (2009). Alarmsystem Illgraben - Erfahrungen während der Pilotbetriebsphase. Wasser, Energie, Luft, 101(2), 101-107.
Simulation of debris flow runout before and after construction of mitigation measures: an example from the Swiss Alps
Graf, C., & McArdell, B. W. (2008). Simulation of debris flow runout before and after construction of mitigation measures: an example from the Swiss Alps. In S. S. Chernomorets (Ed.), Debris flows: disasters, risk, forecast, protection (pp. 233-236). Sevkavgiprovodkhoz Institute.
Überwachung und Warnung Illgraben
Dufour, F., Badoux, A., Graf, C., McArdell, B. W., Rhyner, J., & Kuntner, R. (2007). Überwachung und Warnung Illgraben. FAN Agenda, Fachleute Naturgefahren Schweiz (1), 9-12.
Alarmsystem für murgangfähige Wildbäche - Beispiel Illgraben
Graf, C., Badoux, A., Dufour, F., Fritschi, B., McArdell, B. W., Rhyner, J., … Nigg, U. (2007). Alarmsystem für murgangfähige Wildbäche - Beispiel Illgraben. Wasser, Energie, Luft, 99(2), 119-128.
Debris flow monitoring and modelling in Switzerland
McArdell, B. W., Graf, C., & Swartz, M. (2005). Debris flow monitoring and modelling in Switzerland. In F. Maraga & M. Arattano (Eds.), IHP-VI technical document in hydrology. Progress in surface and subsurface water studies at plot and small basin scale (pp. 249-250). UNESCO.