Publikationen

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Akustische Überwachung des Geschiebetransports

Rickenmann, D. (2026). At-a-site and between-site variability of bedload transport, inferred from continuous surrogate monitoring, and comparison to predictive equations. Earth Surface Dynamics, 14(1), 115-139.

Rickenmann, D. (2025). Vergleich von Geschiebetransportmessungen und Berechnungsansätzen. hydrosuisse, 117(4), 5-16.

Rickenmann, D., Ammann, L., Nicollier, T., Boss, S., Fritschi, B., Antoniazza, G., Steeb, N., Chen, Z., Wyss, C., Badoux, A. (2024). Indirekte Geschiebetransportmessung, Teil 1: Vergleich von verschiedenen Messsystemen. Wasser, Energie, Luft, 116, 14-22.

Rickenmann, D., Hug Peter, D., Ammann, L., Nicollier, T., & Badoux, A. (2024). Indirekte Geschiebetransportmessung, Teil 2. Fraktionierter Transport, Unsicherheiten, Perspektiven. Wasser, Energie, Luft, 116(2), 111-119.

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.

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.

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.

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.

Antoniazza, G., Nicollier, T., Boss, S., Mettra, F., Badoux, A., Schaefli, B., et al. (2022). Hydrological drivers of bedload transport in an Alpine watershed. Water Resources Research, 58, e2021WR030663. https://doi.org/10.1029/2021WR030663

Antoniazza, G., Nicollier, T., Wyss, C. R., Boss, S., & Rickenmann, D. (2020). Bedload transport monitoring in alpine rivers: Variability in Swiss plate geophone response. Sensors, 20(15), 4089.

Rickenmann, D. (2020). Effect of sediment supply on cyclic fluctuations of the disequilibrium ratio and threshold transport discharge, inferred from bedload transport measurements over 27 years at the Swiss Erlenbach stream. Water Resources Research, 56(11), e2020WR027741.

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.

Rickenmann, D. (2017). Bed-load transport measurements with geophones and other passive acoustic methods. Journal of Hydraulic Engineering, 143(6), 03117004.

Wyss, C. R., Rickenmann, D., Fritschi, B., Turowski, J. M., Weitbrecht, V., & Boes, R. M. (2016). Measuring bed load transport rates by grain-size fraction using the Swiss plate geophone signal at the Erlenbach. Journal of Hydraulic Engineering, 142(5), 04016003.

Wyss, C. R., Rickenmann, D., Fritschi, B., Turowski, J. M., Weitbrecht, V., Travaglini, E., … & Boes, R. M. (2016). Laboratory flume experiments with the S wiss plate geophone bed load monitoring system: 2. Application to field sites with direct bed load samples. Water Resources Research, 52(10), 7760-7778.

Wyss, C. R., Rickenmann, D., Fritschi, B., Turowski, J. M., Weitbrecht, V., & Boes, R. M. (2016). Measuring bed load transport rates by grain-size fraction using the Swiss plate geophone signal at the Erlenbach. Journal of Hydraulic Engineering, 142(5), 04016003.

Hydraulikbasierte Berechnungen des Geschiebetransports

Rickenmann, D. (2025). Vergleich von Geschiebetransportmessungen und Berechnungsansätzen. hydrosuisse, 117(4), 5-16.

Rickenmann, D. (2026). At-a-site and between-site variability of bedload transport, inferred from continuous surrogate monitoring, and comparison to predictive equations. Earth Surface Dynamics, 14(1), 115-139.

Schneider, J. M., Rickenmann, D., Turowski, J. M., Bunte, K., & Kirchner, J. W. (2015). Applicability of bed load transport models for mixed‐size sediments in steep streams considering macro‐roughness. Water Resources Research, 51(7), 5260-5283.

Rickenmann, D., & Recking, A. (2011). Evaluation of flow resistance in gravel‐bed rivers through a large field data set. Water Resources Research, 47(7).

Nitsche, M., Rickenmann, D., Turowski, J. M., Badoux, A., & Kirchner, J. W. (2011). Evaluation of bedload transport predictions using flow resistance equations to account for macro‐roughness in steep mountain streams. Water Resources Research, 47(8).

Fernerkundung von Flüssen und Einzugsgebieten

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: Earth Surface, 128(8), e2022JF007000.

Antoniazza, G., Bakker, M., & Lane, S. N. (2019). Revisiting the morphological method in two‐dimensions to quantify bed‐material transport in braided rivers. Earth Surface Processes and Landforms, 44(11), 2251-2267.

Lane, S. N., Gaillet, T., & Goldenschue, L. (2022). Restoring morphodynamics downstream from Alpine dams: development of a geomorphological version of the serial discontinuity concept. Geomorphology, 402, 108131.

Lane, S. N., Gentile, A., & Goldenschue, L. (2020). Combining UAV-based SfM-MVS photogrammetry with conventional monitoring to set environmental flows: modifying dam flushing flows to improve alpine stream habitat. Remote Sensing, 12(23), 3868.

James, M. R., Antoniazza, G., Robson, S., & Lane, S. N. (2020). Mitigating systematic error in topographic models for geomorphic change detection: accuracy, precision and considerations beyond off‐nadir imagery. Earth Surface Processes and Landforms, 45(10), 2251-2271.

Bakker, M., Antoniazza, G., Odermatt, E., & Lane, S. N. (2019). Morphological response of an alpine braided reach to sediment‐laden flow events. Journal of Geophysical Research: Earth Surface, 124(5), 1310-1328.

Sismische Überwachung des Geschiebetransports

Antoniazza, G., Wyss, C. R., Rickenmann, D. et Lane, S. N. (2025). Monitoring sismique du charriage sédimentaire dans les cours d’eau : nouvelles perspectives pour la gestion fluviale. hydrosuisse, 117(4).

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: Earth Surface, 128(8), e2022JF007000.

Numerische Modellierung von Strömung, Feststrofftransport und Habitaten

Rickenmann, D., Böckli, M., Heimann, F.U.M., Badoux, A., Turowski, J.M. (2016): Bedload transport simulation with the model sedFlow: application to mountain rivers in Switzerland. In: Koboltschnig, G. (ed) 13th Congress Interpraevent 2016. 30 May to 2 June 2016, Lucerne, Switzerland. Conference Proceedings. Living with natural risks. Luzern, International Research Society Interpraevent. 387-395.

Lane, S. N., Gentile, A., & Goldenschue, L. (2020). Combining UAV-based SfM-MVS photogrammetry with conventional monitoring to set environmental flows: modifying dam flushing flows to improve alpine stream habitat. Remote Sensing, 12(23), 3868.

Antoniazza, G., Bakker, M., & Lane, S. N. (2019). Revisiting the morphological method in two‐dimensions to quantify bed‐material transport in braided rivers. Earth Surface Processes and Landforms, 44(11), 2251-2267.

Bakker, M., Antoniazza, G., Odermatt, E., & Lane, S. N. (2019). Morphological response of an alpine braided reach to sediment‐laden flow events. Journal of Geophysical Research: Earth Surface, 124(5), 1310-1328.

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