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Design and evaluation of a LoRa controlled rugged multisensor unit for induced rockfall experiments
Mayer, P., Rogge, R., Caviezel, A., Munch, J., Ringenbach, A., Magno, M., & Benini, L. (2023). Design and evaluation of a LoRa controlled rugged multisensor unit for induced rockfall experiments. In Proceedings - 2023 9th International Workshop on Advances in Sensors and Interfaces, IWASI 2023. Proceedings of the 2023 9th international workshop on advances in sensors and interfaces (IWASI) (pp. 52-57). https://doi.org/10.1109/IWASI58316.2023.10164375
Highly energetic rockfalls: back analysis of the 2015 event from the Mel de la Niva, Switzerland
Noël, F., Nordang, S. F., Jaboyedoff, M., Travelletti, J., Matasci, B., Digout, M., … Locat, J. (2023). Highly energetic rockfalls: back analysis of the 2015 event from the Mel de la Niva, Switzerland. Landslides, 20(9), 1561-1582. https://doi.org/10.1007/s10346-023-02054-2
Shape still matters: rockfall interactions with trees and deadwood in a mountain forest uncover a new facet of rock shape dependency
Ringenbach, A., Bebi, P., Bartelt, P., Rigling, A., Christen, M., Bühler, Y., … Caviezel, A. (2023). Shape still matters: rockfall interactions with trees and deadwood in a mountain forest uncover a new facet of rock shape dependency. Earth Surface Dynamics, 11(4), 779-801. https://doi.org/10.5194/esurf-11-779-2023
Photogrammetrically UAV based terrain data generation and automatic extraction of torrential properties
Schmucki, G. R., Bartelt, P., Bühler, Y., Caviezel, A., Graf, C., Marty, M., … Huggel, C. (2023). Photogrammetrically UAV based terrain data generation and automatic extraction of torrential properties. In M. Pirulli, A. Leonardi, & F. Vagnon (Eds.), E3S web of conferences: Vol. 415. 8th international conference on debris flow hazard mitigation (DFHM8) (p. 03026 (5 pp.). https://doi.org/10.1051/e3sconf/202341503026
Towards an automated acquisition and parametrization of debris‐flow prone torrent channel properties based on photogrammetric‐derived uncrewed aerial vehicle data
Schmucki, G., Bartelt, P., Bühler, Y., Caviezel, A., Graf, C., Marty, M., … Huggel, C. (2023). Towards an automated acquisition and parametrization of debris‐flow prone torrent channel properties based on photogrammetric‐derived uncrewed aerial vehicle data. Earth Surface Processes and Landforms, 48(9), 1742-1764. https://doi.org/10.1002/esp.5585
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
Rockfall barrier service loads for rock impacts with spin. Theory and experiments
Caviezel, A., Munch, J., Bartelt, P., & Lanter, A. (2022). Rockfall barrier service loads for rock impacts with spin. Theory and experiments. WSL Berichte: Vol. 125. https://doi.org/10.55419/wsl:32009
Numerical modelling of turbulent geophysical flows using a hyperbolic shear shallow water model: application to powder snow avalanches
Ivanova, K., Caviezel, A., Bühler, Y., & Bartelt, P. (2022). Numerical modelling of turbulent geophysical flows using a hyperbolic shear shallow water model: application to powder snow avalanches. Computers and Fluids, 233, 105211 (9 pp.). https://doi.org/10.1016/j.compfluid.2021.105211
Rockfall trajectory reconstruction: a flexible method utilizing video footage and high-resolution terrain models
Noël, F., Jaboyedoff, M., Caviezel, A., Hibert, C., Bourrier, F., & Malet, J. P. (2022). Rockfall trajectory reconstruction: a flexible method utilizing video footage and high-resolution terrain models. Earth Surface Dynamics, 10(6), 1141-1164. https://doi.org/10.5194/esurf-10-1141-2022
Full-scale experiments to examine the role of deadwood in rockfall dynamics in forests
Ringenbach, A., Stihl, E., Bühler, Y., Bebi, P., Bartelt, P., Rigling, A., … Caviezel, A. (2022). Full-scale experiments to examine the role of deadwood in rockfall dynamics in forests. Natural Hazards and Earth System Sciences, 22(7), 2433-2443. https://doi.org/10.5194/nhess-22-2433-2022
Modeling deadwood for rockfall mitigation assessments in windthrow areas
Ringenbach, A., Bebi, P., Bartelt, P., Rigling, A., Christen, M., Bühler, Y., … Caviezel, A. (2022). Modeling deadwood for rockfall mitigation assessments in windthrow areas. Earth Surface Dynamics, 10(6), 1303-1319. https://doi.org/10.5194/esurf-10-1303-2022
Powder snow impact of tall vibrating structures
Caviezel, A., Margreth, S., Ivanova, K., Sovilla, B., & Bartelt, P. (2021). Powder snow impact of tall vibrating structures. In M. Papadrakakis & M. Fragiadakis (Eds.), Compdyn 2021 proceedings (p. 19112 (13 pp.). Institute of Research & Development for Computational Methods in Engineering Sciences.
The relevance of rock shape over mass - implications for rockfall hazard assessments
Caviezel, A., Ringenbach, A., Demmel, S. E., Dinneen, C. E., Krebs, N., Bühler, Y., … Bartelt, P. (2021). The relevance of rock shape over mass - implications for rockfall hazard assessments. Nature Communications, 12, 5546 (9 pp.). https://doi.org/10.1038/s41467-021-25794-y
Stability of rigid body motion through an extended intermediate axis theorem: application to rockfall simulation
Leine, R. I., Capobianco, G., Bartelt, P., Christen, M., & Caviezel, A. (2021). Stability of rigid body motion through an extended intermediate axis theorem: application to rockfall simulation. Multibody System Dynamics, 52, 431-455. https://doi.org/10.1007/s11044-021-09792-y
Mitigation effects of trees on rockfall hazards: does rock shape matter?
Lu, G., Ringenbach, A., Caviezel, A., Sanchez, M., Christen, M., & Bartelt, P. (2021). Mitigation effects of trees on rockfall hazards: does rock shape matter? Landslides, 18, 59-77. https://doi.org/10.1007/s10346-020-01418-2
Full scale testing of rockfall nets under realistic conditions
Caviezel, A., Sanchez, M. A., Lu, G., Christen, M., Bartelt, P., Wendeler, C., & Lanter, A. (2020). Full scale testing of rockfall nets under realistic conditions. In C. C. Li, H. Ødegaard, A. H. Høien, & J. Macias (Eds.), ISRM international symposium - EUROCK 2020 (p. (7 pp.). International Society for Rock Mechanics and Rock Engineering. Norwegian Group for Rock Mechanics.
Three-dimensional trajectory reconstruction of induced single block rockfall experiments
Ringenbach, A., Caviezel, A., Demmel, S. E., Lu, G., Bühler, Y., Christen, M., … Meier, L. (2020). Three-dimensional trajectory reconstruction of induced single block rockfall experiments. In S. A. B. da Fontoura, R. J. Rocca, & J. F. Pavón Mendoza (Eds.), Proceedings in earth and geosciences series: Vol. 6. Rock Mechanics for Natural Resources and Infrastructure Development - Full Papers. Proceedings (pp. 2887-2894). CRC Press.
Full-scale testing of rockfall nets in real terrain. Results of tests at Chant Sura: 13th September and 4th October, 2019
Sanchez, M. A., & Caviezel, A. (2020). Full-scale testing of rockfall nets in real terrain. Results of tests at Chant Sura: 13th September and 4th October, 2019. WSL Berichte: Vol. 97. Birmensdorf: WSL-Institut für Schnee- und Lawinenforschung SLF; Eidg. Forschungsanstalt für Wald, Schnee und Landschaft WSL.
New rockfall testing method of flexible rockfall barriers
Wendeler, C., Lanter, A., Lu, G., Caviezel, A., Ringenbach, A., & Bartelt, P. (2020). New rockfall testing method of flexible rockfall barriers. In S. A. B. da Fontoura, R. J. Rocca, & J. F. Pavón Mendoza (Eds.), Proceedings in earth and geosciences series: Vol. 6. Rock Mechanics for Natural Resources and Infrastructure Development - Full Papers. Proceedings (pp. 3416-3423). CRC Press.
Dynamic magnification factors for snow avalanche impact (with pile-up) on walls and pylons
Bartelt, P., Buser, O., Christen, M., & Caviezel, A. (2019). Dynamic magnification factors for snow avalanche impact (with pile-up) on walls and pylons. In M. Papadrakakis & M. Fragiadakis (Eds.), Vol. 3. COMPDYN 2019. 7th international conference on computational methods in structural dynamics and earthquake engineering. Proceedings (pp. 4376-4385). Institute of Structural Analysis and Antiseismic Research, School of Civil Engineering, National Technical University of Athens (NTUA).