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  Megafloods in Europe can be anticipated from observations in hydrologically similar catchments

Bertola, M., Blöschl, G., Bohac, M., Borga, M., Castellarin, A., Chirico, G. B., Claps, P., Dallan, E., Danilovich, I., Ganora, D., Gorbachova, L., Ledvinka, O., Mavrova-Guirguinova, M., Montanari, A., Ovcharuk, V., Viglione, A., Volpi, E., Arheimer, B., Aronica, G. T., Bonacci, O., Čanjevac, I., Csik, A., Frolova, N., Gnandt, B., Gribovszki, Z., Gül, A., Günther, K., Guse, B., Hannaford, J., Harrigan, S., Kireeva, M., Kohnová, S., Komma, J., Kriauciuniene, J., Kronvang, B., Lawrence, D., Lüdtke, S., Mediero, L., Merz, B., Molnar, P., Murphy, C., Oskoruš, D., Osuch, M., Parajka, J., Pfister, L., Radevski, I., Sauquet, E., Schröter, K., Šraj, M., Szolgay, J., Turner, S., Valent, P., Veijalainen, N., Ward, P. J., Willems, P., Zivkovic, N. (2023): Megafloods in Europe can be anticipated from observations in hydrologically similar catchments. - Nature Geoscience, 16, 982-988.
https://doi.org/10.1038/s41561-023-01300-5

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Bertola, Miriam1, Author
Blöschl, Günter1, Author
Bohac, Milon1, Author
Borga, Marco1, Author
Castellarin, Attilio1, Author
Chirico, Giovanni B.1, Author
Claps, Pierluigi1, Author
Dallan, Eleonora1, Author
Danilovich, Irina1, Author
Ganora, Daniele1, Author
Gorbachova, Liudmyla1, Author
Ledvinka, Ondrej1, Author
Mavrova-Guirguinova, Maria1, Author
Montanari, Alberto1, Author
Ovcharuk, Valeriya1, Author
Viglione, Alberto1, Author
Volpi, Elena1, Author
Arheimer, Berit1, Author
Aronica, Giuseppe Tito1, Author
Bonacci, Ognjen1, Author
Čanjevac, Ivan1, AuthorCsik, Andras1, AuthorFrolova, Natalia1, AuthorGnandt, Boglarka1, AuthorGribovszki, Zoltan1, AuthorGül, Ali1, AuthorGünther, Knut2, Author              Guse, Björn2, Author              Hannaford, Jamie1, AuthorHarrigan, Shaun1, AuthorKireeva, Maria1, AuthorKohnová, Silvia1, AuthorKomma, Jürgen1, AuthorKriauciuniene, Jurate1, AuthorKronvang, Brian1, AuthorLawrence, Deborah1, AuthorLüdtke, Stefan2, Author              Mediero, Luis1, AuthorMerz, B.2, Author              Molnar, Peter1, AuthorMurphy, Conor1, AuthorOskoruš, Dijana1, AuthorOsuch, Marzena1, AuthorParajka, Juraj1, AuthorPfister, Laurent1, AuthorRadevski, Ivan1, AuthorSauquet, Eric1, AuthorSchröter, Kai1, AuthorŠraj, Mojca1, AuthorSzolgay, Jan1, AuthorTurner, Stephen1, AuthorValent, Peter1, AuthorVeijalainen, Noora1, AuthorWard, Philip J.1, AuthorWillems, Patrick1, AuthorZivkovic, Nenad1, Author more..
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1External Organizations, ou_persistent22              
24.4 Hydrology, 4.0 Geosystems, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146048              

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 Abstract: Megafloods that far exceed previously observed records often take citizens and experts by surprise, resulting in extremely severe damage and loss of life. Existing methods based on local and regional information rarely go beyond national borders and cannot predict these floods well because of limited data on megafloods, and because flood generation processes of extremes differ from those of smaller, more frequently observed events. Here we analyse river discharge observations from over 8,000 gauging stations across Europe and show that recent megafloods could have been anticipated from those previously observed in other places in Europe. Almost all observed megafloods (95.5%) fall within the envelope values estimated from previous floods in other similar places on the continent, implying that local surprises are not surprising at the continental scale. This holds also for older events, indicating that megafloods have not changed much in time relative to their spatial variability. The underlying concept of the study is that catchments with similar flood generation processes produce similar outliers. It is thus essential to transcend national boundaries and learn from other places across the continent to avoid surprises and save lives.

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Language(s): eng - English
 Dates: 2023-11-062023
 Publication Status: Finally published
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1038/s41561-023-01300-5
GFZPOF: p4 T5 Future Landscapes
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Title: Nature Geoscience
Source Genre: Journal, SCI, Scopus
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Pages: - Volume / Issue: 16 Sequence Number: - Start / End Page: 982 - 988 Identifier: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals355
Publisher: Springer Nature