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Rare flash floods and debris flows in southern Germany

  • Flash floods and debris flows are iconic hazards inmountainous regions with steep relief, high rainfall intensities, rapid snowmelt events, and abundant sediments. The cuesta landscapes of southern Germany hardly come to mind when dealing with such hazards. A series of heavy rainstorms dumping up to 140mm in 2 h caused destructive flash floods and debris flows in May 2016. The most severe damage occurred in the Braunsbach municipality, which was partly buried by 42,000 m(3) of boulders, gravel, mud, and anthropogenic debris from the small catchment of Orlacher Bach (similar to 6 km(2)). We analysed this event by combining rainfall patterns, geological conditions, and geomorphic impacts to estimate an average sediment yield of 14,000 t/km(2) that mostly (similar to 95%) came from some 50 riparian landslides and channel-bed incision of similar to 2 m. This specific sediment yield ranks among the top 20% globally, while the intensity-duration curve of the rainstormis similarly in the upper percentile range of storms that had triggeredFlash floods and debris flows are iconic hazards inmountainous regions with steep relief, high rainfall intensities, rapid snowmelt events, and abundant sediments. The cuesta landscapes of southern Germany hardly come to mind when dealing with such hazards. A series of heavy rainstorms dumping up to 140mm in 2 h caused destructive flash floods and debris flows in May 2016. The most severe damage occurred in the Braunsbach municipality, which was partly buried by 42,000 m(3) of boulders, gravel, mud, and anthropogenic debris from the small catchment of Orlacher Bach (similar to 6 km(2)). We analysed this event by combining rainfall patterns, geological conditions, and geomorphic impacts to estimate an average sediment yield of 14,000 t/km(2) that mostly (similar to 95%) came from some 50 riparian landslides and channel-bed incision of similar to 2 m. This specific sediment yield ranks among the top 20% globally, while the intensity-duration curve of the rainstormis similarly in the upper percentile range of storms that had triggered landslides. Compared to similar-sized catchments in the greater region hit by the rainstorms, we find that the Orlacher Bach is above the 95th percentile in terms of steepness, storm-rainfall intensity, and topographic curvatures. The flash flood transported a sediment volume equal to as much as 20-40% of the Pleistocene sediment volume stored in the Orlacher Bach fan, andmay have had several predecessors in the Holocene. River control structures from 1903 and records of a debris flow in the 1920s in a nearby catchment indicate that the local inhabitants may have been aware of the debris-flow hazards earlier. Such recurring and destructive events elude flood-hazard appraisals in humid landscapes of gentle relief, and broaden mechanistic views of how landslides and debris flows contribute to shaping small and deeply cut tributaries in the southern Germany cuesta landscape.show moreshow less

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Author details:Ugur OzturkORCiDGND, Dadiyorto WendiORCiDGND, Irene CrisologoORCiDGND, Adrian Riemer, Ankit AgarwalORCiDGND, Kristin VogelORCiDGND, Jose Andres Lopez-Tarazon, Oliver KorupORCiDGND
DOI:https://doi.org/10.1016/j.scitotenv.2018.01.172
ISSN:0048-9697
ISSN:1879-1026
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/29898559
Title of parent work (English):The science of the total environment : an international journal for scientific research into the environment and its relationship with man
Publisher:Elsevier
Place of publishing:Amsterdam
Publication type:Article
Language:English
Date of first publication:2018/02/19
Publication year:2018
Release date:2021/11/24
Tag:Debris flow; Flash flood; Germany; Hazard; Rainfall-triggered landslide
Volume:626
Number of pages:12
First page:941
Last Page:952
Funding institution:Secretariat for Universities and Research of the Department of the Economy and Knowledge of the Autonomous Government of Catalonia [SGR 645]; Marie Curie Intra-European FellowshipEuropean Union (EU) [PIEF-GA-2013-622468]; Vicenc Mut postdoctoral fellowship [CAIB PD/038/2016]; "Deutsche Forschungsgemeinschaft" (DFG)German Research Foundation (DFG) [GRK 2043/1]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Geowissenschaften
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
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