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Bedload transport fluctuations, flow conditions, and disequilibrium ratio at the Swiss Erlenbach stream: results from 27 years of high-resolution temporal measurements
Rickenmann, D. (2024). Bedload transport fluctuations, flow conditions, and disequilibrium ratio at the Swiss Erlenbach stream: results from 27 years of high-resolution temporal measurements. Earth Surface Dynamics, 12(1), 11-34. https://doi.org/10.5194/esurf-12-11-2024
Indirekte Geschiebetransportmessung, Teil 1. Vergleich von verschiedenen Messsystemen
Rickenmann, D., Ammann, L., Nicollier, T., Boss, S., Fritschi, B., Antoniazza, G., … Badoux, A. (2024). Indirekte Geschiebetransportmessung, Teil 1. Vergleich von verschiedenen Messsystemen. Wasser, Energie, Luft, 116(1), 14-22.
Anatomy of an Alpine bedload transport event: a watershed‐scale seismic‐network perspective
Antoniazza, G., Dietze, M., Mancini, D., Turowski, J. M., Rickenmann, D., Nicollier, T., … Lane, S. N. (2023). Anatomy of an Alpine bedload transport event: a watershed‐scale seismic‐network perspective. Journal of Geophysical Research F: Earth Surface, 128(8), e2022JF007000 (30 pp.). https://doi.org/10.1029/2022JF007000
Repose time patterns of debris-flow events in alpine catchments
Heiser, M., Schlögl, M., Spangl, B., Fuchs, S., Rickenmann, D., Zimmermann, M., & Scheidl, C. (2023). Repose time patterns of debris-flow events in alpine catchments. Earth Surface Processes and Landforms, 48(5), 1034-1051. https://doi.org/10.1002/esp.5533
Gefahrenbeurteilung Wildbäche in der Schweiz: Aktueller Stand und künftige Herausforderungen
Rickenmann, D., Frick, E., Busslinger, M., Hunziker, G., Ulrich, M., & Graf, C. (2023). Gefahrenbeurteilung Wildbäche in der Schweiz: Aktueller Stand und künftige Herausforderungen. FAN Agenda, Fachleute Naturgefahren Schweiz (2), 22-29.
Modelling of debris-flow deposition: terrain slope, mobility coefficient, and back-calculated basal friction coefficient
Rickermann, D., & Scheidl, C. (2023). Modelling of debris-flow deposition: terrain slope, mobility coefficient, and back-calculated basal friction coefficient. In M. Pirulli, A. Leonardi, & F. Vagnon (Eds.), E3S web of conferences: Vol. 415. 8th international conference on debris flow hazard mitigation (DFHM8) (p. 07013 (4 pp.). https://doi.org/10.1051/e3sconf/202341507013
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.
River widening in mountain and foothill areas during floods: insights from a meta-analysis of 51 European rivers
Ruiz-Villanueva, V., Piégay, H., Scorpio, V., Bachmann, A., Brousse, G., Cavalli, M., … Wyżga, B. (2023). River widening in mountain and foothill areas during floods: insights from a meta-analysis of 51 European rivers. Science of the Total Environment, 903, 166103 (18 pp.). https://doi.org/10.1016/j.scitotenv.2023.166103
Controls of local grain size distribution, bed structure and flow conditions on sediment mobility
Smith, H. E. J., Monsalve, A. D., Turowski, J. M., Rickenmann, D., & Yager, E. M. (2023). Controls of local grain size distribution, bed structure and flow conditions on sediment mobility. Earth Surface Processes and Landforms, 48(10), 1990-2004. https://doi.org/10.1002/esp.5599
Geospatial modelling of large-wood supply to rivers: a state-of-the-art model comparison in Swiss mountain river catchments
Steeb, N., Ruiz-Villanueva, V., Badoux, A., Rickli, C., Mini, A., Stoffel, M., & Rickenmann, D. (2023). Geospatial modelling of large-wood supply to rivers: a state-of-the-art model comparison in Swiss mountain river catchments. Earth Surface Dynamics, 11(3), 487-509. https://doi.org/10.5194/esurf-11-487-2023
Hydrological drivers of bedload transport in an Alpine watershed
Antoniazza, G., Nicollier, T., Boss, S., Mettra, F., Badoux, A., Schaefli, B., … Lane, S. N. (2022). Hydrological drivers of bedload transport in an Alpine watershed. Water Resources Research, 58(3), e2021WR030663 (27 pp.). https://doi.org/10.1029/2021WR030663
Finite element modelling of the Swiss plate geophone bedload monitoring system
Chen, Z., He, S., Nicollier, T., Ammann, L., Badoux, A., & Rickenmann, D. (2022). Finite element modelling of the Swiss plate geophone bedload monitoring system. Journal of Hydraulic Research, 60(5), 792-810. https://doi.org/10.1080/00221686.2022.2059585
Signal response of the Swiss plate geophone monitoring system impacted by bedload particles with different transport modes
Chen, Z., He, S., Nicollier, T., Ammann, L., Badoux, A., & Rickenmann, D. (2022). Signal response of the Swiss plate geophone monitoring system impacted by bedload particles with different transport modes. Earth Surface Dynamics, 10(2), 279-300. https://doi.org/10.5194/esurf-10-279-2022
Improving the calibration of the Swiss plate geophone bedload monitoring system by filtering out seismic signals from extraneous particle impacts
Nicollier, T., Antoniazza, G., Rickenmann, D., Hartlieb, A., & Kirchner, J. W. (2022). Improving the calibration of the Swiss plate geophone bedload monitoring system by filtering out seismic signals from extraneous particle impacts. Earth and Space Science, 9(5), e2021EA001962 (22 pp.). https://doi.org/10.1029/2021EA001962
Toward a general calibration of the Swiss plate geophone system for fractional bedload transport
Nicollier, T., Antoniazza, G., Ammann, L., Rickenmann, D., & Kirchner, J. W. (2022). Toward a general calibration of the Swiss plate geophone system for fractional bedload transport. Earth Surface Dynamics, 10(5), 929-951. https://doi.org/10.5194/esurf-10-929-2022
Comparison of calibration characteristics of different acoustic impact systems for measuring bedload transport in mountain streams
Rickenmann, D., Ammann, L., Nicollier, T., Boss, S., Fritschi, B., Antoniazza, G., … Badoux, A. (2022). Comparison of calibration characteristics of different acoustic impact systems for measuring bedload transport in mountain streams. Earth Surface Dynamics, 10(6), 1165-1183. https://doi.org/10.5194/esurf-10-1165-2022
Using acoustic signal to predict grain size of bedload particles
Saritas, F., Staehli, S., Ammann, L., Rickenmann, D., Custer, R., & Suter, S. (2022). Using acoustic signal to predict grain size of bedload particles. In Swiss conference on data science (SDS). 2022 9th Swiss conference on data science (SDS). Proceedings (pp. 59-64). https://doi.org/10.1109/SDS54800.2022.00017
Effects of obstacle's curvature on shock dynamics of gravity-driven granular flows impacting a circular cylinder
Chen, Z., Rickenmann, D., Zhang, Y., & He, S. (2021). Effects of obstacle's curvature on shock dynamics of gravity-driven granular flows impacting a circular cylinder. Engineering Geology, 293, 106343 (20 pp.). https://doi.org/10.1016/j.enggeo.2021.106343
Field and flume measurements with the impact plate: effect of bedload grain‐size distribution on signal response
Nicollier, T., Rickenmann, D., & Hartlieb, A. (2021). Field and flume measurements with the impact plate: effect of bedload grain‐size distribution on signal response. Earth Surface Processes and Landforms, 46(8), 1504-1520. https://doi.org/10.1002/esp.5117
WoodFlow project - large wood management in rivers
Steeb, N., Badoux, A., Boes, R. M., Gasser, E., Rickenmann, D., Rickli, C., … Weitbrecht, V. (2021). WoodFlow project - large wood management in rivers. In N. Beyer Portner (Ed.), 14th congress INTERPRAEVENT 2021. Natural hazards in a changing world (pp. 275-283). International Research Society INTERPRAEVENT.
 

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