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  4. Impact of climate change on the hydrological regimes in Bavaria
 
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Impact of climate change on the hydrological regimes in Bavaria

Publikationstyp
Journal Article
Date Issued
2020-06-04
Sprache
English
Author(s)
Poschlod, Benjamin  
Willkofer, Florian  
Ludwig, Ralf  
TORE-URI
https://hdl.handle.net/11420/62692
Journal
Water  
Volume
12
Issue
6
Article Number
1599
Citation
Water 12 (6): 1599 (2020)
Publisher DOI
10.3390/w12061599
Scopus ID
2-s2.0-85087548122
Publisher
MDPI
This study assesses the change of the seasonal runoff characteristics in 98 catchments in central Europe between the reference period of 1981-2010, and in the near future (2011-2040), mid future (2041-2070) and far future (2071-2099). Therefore, a large ensemble of 50 hydrological simulations featuring the model WaSiM-ETH driven by a 50-member ensemble of the Canadian Regional Climate Model, version 5 (CRCM5) under the emission scenario Representative Concentration Pathway (RCP 8.5) is analyzed. A hierarchical cluster analysis is applied to group the runoff characteristics into six flow regime classes. In the study area, (glacio-)nival, nival (transition), nivo-pluvial and three different pluvial classes are identified. We find that the characteristics of all six regime groups are severely affected by climate change in terms of the amplitude and timing of the monthly peaks and sinks. According to our simulations, the monthly peak of nival regimes will occur earlier in the season and the relative importance of rainfall increases towards the future. Pluvial regimes will become less balanced with higher normalized monthly discharge during January to March and a strong decrease during May to October. In comparison to the reference period, 8% of catchments will shift to another regime class until 2011-2040, whereas until 2041-2070 and 2071-2099, 23% and 43% will shift to another class, respectively.
Subjects
Alps
Climate change
Hierarchical clustering
Hydrology
Mean flow
Pardé coefficient
Runoff regime
DDC Class
551: Geology, Hydrology Meteorology
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