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Abstract
Landslide mapping and analysis are essential aspects of hazard and risk analysis. Landslides can block rivers and create landslide-dammed lakes, which pose a significant risk for downstream areas. In this research, we used an object-based image analysis approach to map geomorphological features and related changes and assess the applicability of Sentinel-1 data for the fast creation of post-event digital elevation models (DEMs) for landslide volume estimation. We investigated the Hítardalur landslide, which occurred on the 7 July 2018 in western Iceland, along with the geomorphological changes induced by this landslide, using optical and synthetic aperture radar data from Sentinel-2 and Sentinel-1. The results show that there were no considerable changes in the landslide area between 2018 and 2019. However, the landslide-dammed lake area shrunk between 2018 and 2019. Moreover, the Hítará river diverted its course as a result of the landslide. The DEMs, generated by ascending and descending flight directions and three orbits, and the subsequent volume estimation revealed that—without further post-processing—the results need to be interpreted with care since several factors influence the DEM generation from Sentinel-1 imagery.
Originalsprache | Englisch |
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Aufsatznummer | 5848 |
Seiten (von - bis) | 1-20 |
Seitenumfang | 20 |
Fachzeitschrift | Applied Sciences |
Jahrgang | 10 |
Ausgabenummer | 17 |
DOIs | |
Publikationsstatus | Veröffentlicht - Aug. 2020 |
Schlagwörter
- Object-based image analysis
- Sentinel-1
- Sentinel-2
- Digital elevation model
- InSAR
- Landslide
- Landslide-dammed lake
- River
- Iceland
Systematik der Wissenschaftszweige 2012
- 211 Andere Technische Wissenschaften
- 105 Geowissenschaften
Projekte
- 2 Abgeschlossen
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RiCoLa II: Detektion und Analyse von massenbewegungsinduzierten Flusslaufänderungen und Seebildungen
Hölbling, D. W. (Projektleitung), Friedl, B. (Projektmitarbeiter/in), Abad Crespo, L. C. (Projektmitarbeiter/in) & Dabiri, Z. (Projektmitarbeiter/in)
1/08/17 → 30/06/21
Projekt: Forschung
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MORPH: Mapping, monitoring and modelling the dynamics of land surface morphology
Tiede, D. (Projektleitung), Dittrich, J. (Projektmitarbeiter/in), Friedl, B. (Projektmitarbeiter/in), Hölbling, D. W. (Projektmitarbeiter/in), Abad Crespo, L. C. (Projektmitarbeiter/in) & Dabiri, Z. (Projektmitarbeiter/in)
1/11/16 → 30/09/20
Projekt: Forschung