Veröffentlichungen
Publikationen
2025
- de Vugt, L., Carraro, E., Fatihi, A., Mattea, E., Myall, E., Czerwonka-Schröder, D. & Anders, K. (2025). Permanent Laser Scanning and 3D Time Series Analysis for Geomorphic Monitoring using Low-Cost Sensors and Open-Source Software. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 48, 359-365. https://doi.org/10.5194/isprs-archives-XLVIII-G-2025-359-2025.
2024
- Cocuccioni, S., Romagnoli, F., Pittore, M., Armas, I., Danila, D.T., Osaci, G., Albulescu, C., Göksu, C., Kundak, S., Arslan,i K., Klkanli, D., Pak, E., Konukcu, B., Wenzel, T., Marr, P., de Zeeuw-van Dalfsen, E., Savelberg, L., Kalubowila, P., Hürlimann, M., Bockarjova, M., Witvlie,t B., van Westen, C., & Atun, F. (2024) The Use of Impact Chains to Describe Complex Cause-Effect Relationships Within a Systemic Multi-sectoral and Multi-hazard Risk Assessment. In International Conference on Energy and Environmental Science (pp. 433-447). Cham: Springer Nature Switzerland. https://doi.org/10.1007/978-3-031-57357-6_38
- Brezzi, L., Gabrieli, F., Vallisari, D., Carraro, E., Pol, A., Galgaro, A., & Cola, S. (2024). DIPHORM: An Innovative DIgital PHOtogrammetRic Monitoring Technique for Detecting Surficial Displacements of Landslides. Remote Sensing, 16(17), 3199. https://doi.org/10.3390/rs16173199
- Nava, L., Carraro, E., Reyes-Carmona, C., Puliero, S., Bhuyan, K., Rosi, A., Monserrat, O., Floris, M., Meena, S. R., Galve, J. G. & Catani, F. (2023). Landslide displacement forecasting using deep learning and monitoring data across selected sites. Landslides, 20(10), 2111-2129. https://doi.org/10.1007/s10346-023-02104-9
2023
- Marr, P., Jiménez Donato, Y. A., Carraro, E., Kanta, R., & Glade, T. (2023). The Role of Historical Data to Investigate Slow-Moving Landslides by Long-Term Monitoring Systems in Lower Austria. Land, 12 (3), 659. https://doi.org/10.3390/land12030659
2022
- Stumvoll, M. J., Schmaltz, E. M., Kanta, R., Roth, H., Grall, B., Luhn, J., Orozco, A. F. & Glade, T. (2022). Exploring the dynamics of a complex, slow-moving landslide in the Austrian Flysch Zone with 4D surface and subsurface information. CATENA, 214, 106203. https://doi.org/10.1016/j.catena.2022.106203
- Stumvoll, M. J., Konzett, M., Schmaltz, E. M. & Glade, T. (2022). Application of UAS to Detect Infrequent and Local Large-Scale Surficial Displacements: Critical Examples from the Fields of Landslide and Erosion Research. In sUAS Applications in Geography (pp. 203-233). Springer. https://doi.org/10.1007/978-3-031-01976-0_8
- Orozco, A. F., Steiner, M., Katona, T., Roser, N., Moser, C., Stumvoll, M. J. & Glade, T. (2022). Application of induced polarization imaging across different scales to understand surface and groundwater flow at the Hofermuehle landslide. CATENA, 219, 106612. https://doi.org/10.1016/j.catena.2022.106612
Präsentationen: PICOs, Vorträge und Poster
2025
- Molitierno, E., Brunzo, A., Carraro, E., Damiano, E., de Cristofaro, M., Glade, T., Marr, P. & Olivares, L.: New Smart Extenso-Inclinometer for monitoring slow moving landslides, EGU General Assembly 2025, Vienna, Austria, 27 Apr-2 May 2025, EGU25-5731, https://doi.org/10.5194/egusphere-egu25-5731, 2025.
- Marr, P., Dietze, M., Carraro, E., Kanta, R. & Glade, T.: Exploring the potential of seismic sensors in monitoring slow moving landslides in Lower Austria, EGU General Assembly 2025, Vienna, Austria, 27 Apr-2 May 2025, EGU25-6236, https://doi.org/10.5194/egusphere-egu25-6236, 2025.
- Jiménez Donato, Y. A., Bogaard, T., Carraro, E., Marr, P., Kanta, R. & Glade, T.: Investigating the role of pore water pressure and antecedent conditions in landslide acceleration: Insights from long-term monitoring in Lower Austria, EGU General Assembly 2025, Vienna, Austria, 27 Apr-2 May 2025, EGU25-20098, https://doi.org/10.5194/egusphere-egu25-20098, 2025.
- Gazzola, E., Marr, P., Donato, A., Dìaz-Delgado, R., Colombo, N., Gallarate, M., Gianess, S., Kanta, R., Glade, T., Valreo, A., Acquaotta, F. & Freppaz, M. (2025, May). Cosmic-Ray Neutron Sensing as a multi-purpose technology in eLTER platforms. In ARPHA Conference Abstracts (Vol. 8, p. e148193). Pensoft Publishers.
- Wenzel, T., Marr, P. & Glade, T.: Forensic analysis of three permanent landslide observatories in Lower Austria, EGU General Assembly 2025, Vienna, Austria, 27 Apr-2 May 2025, EGU25-19017, https://doi.org/10.5194/egusphere-egu25-19017, 2025.
2024
- Marr, P., Jiménez Donato, A., Kanta, R., Glade, T., Gazzola, E., Morselli, L., Gianessi, S. & Lorenzi, F. (2024, April). Understanding the role of soil moisture in landslide research: Application of Cosmic Rays Neutron Sensing (CRNS) on a slow-moving landslide in Lower Austria. In EGU General Assembly Conference Abstracts (p. 20019).
- Marr P, Donato YAJ, Kanta R, Glade T, Gazzola E, Morselli L. & Gianessi S (2024) Exploring the potential of Cosmic Rays Neutron Sensing (CRNS) on a slow-moving landslide in Lower Austria. DGGM, Leipzig, Germany.
- Donato YAJ, Carraro E, Müller B, Kanta R, Marr P, Mergili M. & Glade T (2024) Exploring the effect of landslide mitigation and protection measures under simulated hazard scenarios. Interpraevent. Vienna, Austria.
- Marr P, Carraro E, Donato YAJ, Kanta R. & Glade T (2024) A Framework for Long-Term Landslide Monitoring. Interpraevent. Vienna, Austria.
- Marr P, Wenzel T. & Glade T (2024) NoeSLIDE-Long-term Monitoring of slow-moving landslides in Lower Austria. LTER-Austria Konferenz, Vienna, Austria.
2023
- Hürlimann, M., Marr, P., Glade, T., Komendantova, N., de Zeeuw-van Dalfsen, E., Armas, I., Kundzak, S., Lantada, N., Reluy, N. P., Wenzel, T., Alkema, D., van Westen, C., Atun, F. & Cocuccioni, S. (2023, November). Systemic Multi-sectoral and Multi-hazard Risk Assessment in Current and Future Scenarios. The PARATUS-Project. In International Conference on Energy and Environmental Science (pp. 425-432). Cham: Springer Nature Switzerland.
- Jiménez Donato, Y. A., Carraro, E., Marr, P., Kanta, R., & Glade, T. (2023, May). Unravelling the complex dynamic of slow-moving landslides in the Flysch zone region, Lower Austria. A case study of the Hofermühle catchment. In EGU General Assembly Conference Abstracts (pp. EGU-10159).
- Carraro, E., Jimenez Donato, Y. A., Bravo, F. A. S., Kanta, R., Marr, P. & Glade, T. (2023, May). Insights from a combination of surface and deep measurements to set a long-term monitoring system of a complex, slow-moving landslide in Lower Austria (Austria). In EGU General Assembly Conference Abstracts (pp. EGU-5022).
- Marr, P., Glade, T., Jiménez Donato, A., Gspan, K., Preissler, A., Adams, M., Pittore, M., Cocuccioni, S. & Hürlimann, M. (2023, May). The European alpine transport corridor-investigating the systemic impact of compounding disasters within the PARATUS project. In EGU General Assembly Conference Abstracts (pp. EGU-9978).
2022
- Marr, P., Stumvoll, M., Kanta, R., Donato, Y. A. J. & Glade, T. (2022). Insights from a long-term monitoring system of a slow-moving landslide at Hofermühle, Lower Austria. ICG Coimbra, Portugal
- Stumvoll, M., Marr, P., Kanta, R., Donato, Y. A. J. & Glade, T. (2022). Complex, slow-moving landslide dynamics: implications from a long-term monitoring setup on the Hofermühle landslide in Lower Austria. EGU Vienna, Austria
- Marr, P., Donato, Y. A. J., Carraro, E. & Glade, T. (2022): Landslide Observatories in Austria. LTER Austria Conference. Vienna, Austria.
Medienauftritte
2024
- Science.orf.at (11.10.2024): Wie Risiken vorhergesagt werden können
- Der Standard (online, 18.09.2024): Einsatzkräfte am Limit: Klimawandel fordert Helfende immer stärker
- Noen.at (17.09.2024):"Extreme werden extremer": Experte warnt vor Hangrutschungen und Muren
- Science.apa.at (17.09.2024): Unwetter: Experte warnt vor zeitverzögerten Hangrutschungen und Muren
- Oe1.orf.at (17.06.2024): Das Restrisiko, das bleibt
2023
- Die Presse (online, 13.09.2023): Forscher könnten Frühwarnsystem für Hangrutschungen aufbauen
- Science.apa.at (13.09.2023): Wie ein Frühwarnsystem für Hangrutschungen aussehen könnte
- science.apa.at (07.07.2023): Experte fordert langfristiges Monitoring von Hangrutschungen
2021
- Die Presse (Print issue, 03.07.2021): Die Dynamik des Hangs verstehen lernen