HYDROLOGY AND GEOMORPHIC EFFECTS OF A HIGH-MAGNITUDE FLOOD IN AN ALPINE RIVER |
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Authors: | DAVID MORCHE KARL-HEINZ SCHMIDT TOBIAS HECKMANN FLORIAN HAAS |
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Affiliation: | Department of Geography, Physical Geography, Martin-Luther-University Halle-Wittenberg, D-06099 Halle, Germany;E-mail:;Department of Geography, Physical Geography, Martin-Luther-University Halle-Wittenberg, D-06099 Halle, Germany;E-mail:;Department of Geography, Physical Geography, Catholic University Eichstätt/Ingolstadt, Ostenstrasse 18, D-85072 Eichstätt, Germany;E-mail:;Department of Geography, Physical Geography, Catholic University Eichstätt/Ingolstadt, Ostenstrasse 18, D-85072 Eichstätt, Germany;E-mail: |
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Abstract: | The catchment of the River Partnach, a torrent situated in a glacial valley in the Northern Calcareous Alps of Bavaria/Germany, was affected by a high‐magnitude flood on 22/23 August 2005 with a peak discharge of more than 16 m3s‐1 at the spring and about 50 m3s‐1 at the catchment outlet. This flood was caused by a long period of intense rainfall with a maximum intensity of 230 mm per day. During this event, a landslide dam, which previously held a small lake, failed. The flood wave originating from the dam breach transported a large volume of sediment (more than 50 000 m3) derived from bank erosion and the massive undercutting of a talus cone. This caused a fundamental transformation of the downstream channel system including the redistribution of large woody debris and channel switching. Using terrestrial survey and aerial photography, erosional and depositional consequences of the event were mapped, pre‐ and post‐event surfaces were compared and the sediment budget of the event calculated for ten consecutive channel reaches downstream of the former lake. According to the calculations more than 100 000 tonnes of sediment were eroded, 75% of which was redeposited within the channel and the proximal floodplain. A previous large flood which occurred a few weeks prior to the August 2005 event had a significant effect on controlling the impact of this event. |
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Keywords: | sediment transport fluvial sediment budget high-magnitude flood landslide dam failure geomorphic coupling Bavarian Alps |
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