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Untersuchungen zu Erosion in steilen Bacheinhängen
Rickli, C., Graf, F., Badoux, A., McArdell, B., Steeb, N., & Rickenmann, D. (2023). Untersuchungen zu Erosion in steilen Bacheinhängen. FAN Agenda, Fachleute Naturgefahren Schweiz, 2, 15-21.
Small scale debris-flow experiments on run-up height
Rickenmann, D., Karrer, T., McArdell, B., & Scheidl, C. (2019). Small scale debris-flow experiments on run-up height. 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. 414-420). https://doi.org/10.25676/11124/173191
Debris-flow behavior in super- and subcritical conditions
Scheidl, C., McArdell, B., Nagl, G., & Rickenmann, D. (2019). Debris-flow behavior in super- and subcritical conditions. 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. 437-442). https://doi.org/10.25676/11124/173187
DebrisInterMixing-2.3: a finite volume solver for three-dimensional debris-flow simulations with two calibration parameters – part 2: model validation with experiments
von Boetticher, A., Turowski, J. M., McArdell, B. W., Rickenmann, D., Hürlimann, M., Scheidl, C., & Kirchner, J. W. (2017). DebrisInterMixing-2.3: a finite volume solver for three-dimensional debris-flow simulations with two calibration parameters – part 2: model validation with experiments. Geoscientific Model Development, 10(11), 3963-3978. https://doi.org/10.5194/gmd-10-3963-2017
DebrisInterMixing-2.3: a finite volume solver for three-dimensional debris-flow simulations with two calibration parameters – part 1: model description
von Boetticher, A., Turowski, J. M., McArdell, B. W., Rickenmann, D., & Kirchner, J. W. (2016). DebrisInterMixing-2.3: a finite volume solver for three-dimensional debris-flow simulations with two calibration parameters – part 1: model description. Geoscientific Model Development, 9(9), 2909-2923. https://doi.org/10.5194/gmd-9-2909-2016
Debris-flow velocities and superelevation in a curved laboratory channel
Scheidl, C., McArdell, B. W., & Rickenmann, D. (2015). Debris-flow velocities and superelevation in a curved laboratory channel. Canadian Geotechnical Journal, 52(3), 305-317. https://doi.org/10.1139/cgj-2014-0081
Runout prediction of debris flows and similar mass movements
Scheidl, C., Rickenmann, D., & McArdell, B. W. (2013). Runout prediction of debris flows and similar mass movements. In C. Margottini, P. Canuti, & K. Sassa (Eds.), Landslide science and practice. Volume 3: spatial analysis and modelling (pp. 221-229). https://doi.org/10.1007/978-3-642-31310-3_30
Sediment supply, grain protrusion, and bedload transport in mountain streams
Yager, E. M., Turowski, J. M., Rickenmann, D., & McArdell, B. W. (2012). Sediment supply, grain protrusion, and bedload transport in mountain streams. Geophysical Research Letters, 39(10), L10402 (5 pp.). https://doi.org/10.1029/2012GL051654
Calibration of piezoelectric bedload impact sensors in the Pitzbach mountain stream
Rickenmann, D., & McArdell, B. W. (2008). Calibration of piezoelectric bedload impact sensors in the Pitzbach mountain stream. Geodinamica Acta, 21(1-2), 35-52. https://doi.org/10.3166/ga.21.35-52
Continuous measurement of sediment transport in the Erlenbach stream using piezoelectric bedload impact sensors
Rickenmann, D., & McArdell, B. (2007). Continuous measurement of sediment transport in the Erlenbach stream using piezoelectric bedload impact sensors. Earth Surface Processes and Landforms, 32(9), 1362-1378. https://doi.org/10.1002/esp.1478
Comparison of flow resistance relations for debris flows using a one-dimensional finite element simulation model
Naef, D., Rickenmann, D., Rutschmann, P., & McArdell, B. W. (2006). Comparison of flow resistance relations for debris flows using a one-dimensional finite element simulation model. Natural Hazards and Earth System Sciences, 6(1), 155-165. https://doi.org/10.5194/nhess-6-155-2006
Comparison of 2D debris-flow simulation models with field events
Rickenmann, D., Laigle, D., McArdell, B. W., & Hübl, J. (2006). Comparison of 2D debris-flow simulation models with field events. Computational Geosciences, 10(2), 241-264. https://doi.org/10.1007/s10596-005-9021-3
Field testing and numerical modeling of flexible debris flow barriers
Wendeler, C., McArdell, B. W., Rickenmann, D., Volkwein, A., Roth, A., & Denk, M. (2006). Field testing and numerical modeling of flexible debris flow barriers. In C. W. W. Ng, Y. H. Wang, & L. M. Zhang (Eds.), Physical modelling in geotechnics. Proceedings of the 6th international conference on physical modelling in geotechnics, 6th ICPMG '06 (pp. 1573-1578). Taylor & Francis.
Systematic comparison of debris-flow laws at the Illgraben torrent, Switzerland
McArdell, B. W., Zanuttigh, B., Lamberti, A., & Rickenmann, D. (2003). Systematic comparison of debris-flow laws at the Illgraben torrent, Switzerland. In D. Rickenmann & C. I. Chen (Eds.), Debris-flow hazards mitigation. Mechanics, prediction, and assessment. Proceedings of the third international conference on debris-flow hazards mitigation. Volume 1 (pp. 647-657).