Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains

Mediterranean climatic influences was explored by studying a lake sequence (Lake Foréant) of the Western European Alps. High-resolution sedimentological and geochemical analysis revealed 171 event layers, 168 of which result from past flood events over the last millennium. The layer thickness was us...

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Main Authors: B. Wilhelm, H. Vogel, C. Crouzet, D. Etienne, F. S. Anselmetti
Format: Article
Language:English
Published: Copernicus Publications 2016-02-01
Series:Climate of the Past
Online Access:http://www.clim-past.net/12/299/2016/cp-12-299-2016.pdf
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spelling doaj-5ae8fef216c948eba0876edabc48a95c2020-11-24T23:08:31ZengCopernicus PublicationsClimate of the Past1814-93241814-93322016-02-0112229931610.5194/cp-12-299-2016Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domainsB. Wilhelm0H. Vogel1C. Crouzet2D. Etienne3F. S. Anselmetti4Université Grenoble Alpes, LTHE, 38000 Grenoble, FranceInstitute of Geological Sciences and Oeschger Centre for Climate Change Research, Univ. of Bern, 3012 Bern, SwitzerlandUniversité Savoie Mont Blanc, ISTerre, 73376 Le Bourget-du-Lac, FranceUMR INRA 42 CARRTEL, Université Savoie Mont Blanc, 73376 Le Bourget-du-Lac, FranceInstitute of Geological Sciences and Oeschger Centre for Climate Change Research, Univ. of Bern, 3012 Bern, SwitzerlandMediterranean climatic influences was explored by studying a lake sequence (Lake Foréant) of the Western European Alps. High-resolution sedimentological and geochemical analysis revealed 171 event layers, 168 of which result from past flood events over the last millennium. The layer thickness was used as a proxy of intensity of past floods. Because the Foréant palaeoflood record is in agreement with the documented variability of historical floods resulting from local and mesoscale, summer-to-autumn convective events, it is assumed to highlight changes in flood frequency and intensity related to such events typical of both Atlantic (local events) and Mediterranean (mesoscale events) climatic influences. Comparing the Foréant record with other Atlantic-influenced and Mediterranean-influenced regional flood records highlights a common feature in all flood patterns that is a higher flood frequency during the cold period of the Little Ice Age (LIA, AD 1300–1900). In contrast, high-intensity flood events are apparent during both the cold LIA and the warm Medieval Climate Anomaly (MCA, AD 950–1250). However, there is a tendency towards higher frequencies of high-intensity flood events during the warm MCA. The MCA extremes could mean that under the global warming scenario, we might see an increase in intensity (not in frequency). However, the flood frequency and intensity in the course of the 20th century warming trend did not change significantly. Uncertainties in future evolution of flood intensity lie in the interpretation of the lack of 20th century extremes (transition or stable?) and the different climate forcing factors between the two periods (greenhouse gases vs. solar and/or volcanic eruptions).http://www.clim-past.net/12/299/2016/cp-12-299-2016.pdf
collection DOAJ
language English
format Article
sources DOAJ
author B. Wilhelm
H. Vogel
C. Crouzet
D. Etienne
F. S. Anselmetti
spellingShingle B. Wilhelm
H. Vogel
C. Crouzet
D. Etienne
F. S. Anselmetti
Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains
Climate of the Past
author_facet B. Wilhelm
H. Vogel
C. Crouzet
D. Etienne
F. S. Anselmetti
author_sort B. Wilhelm
title Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains
title_short Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains
title_full Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains
title_fullStr Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains
title_full_unstemmed Frequency and intensity of palaeofloods at the interface of Atlantic and Mediterranean climate domains
title_sort frequency and intensity of palaeofloods at the interface of atlantic and mediterranean climate domains
publisher Copernicus Publications
series Climate of the Past
issn 1814-9324
1814-9332
publishDate 2016-02-01
description Mediterranean climatic influences was explored by studying a lake sequence (Lake Foréant) of the Western European Alps. High-resolution sedimentological and geochemical analysis revealed 171 event layers, 168 of which result from past flood events over the last millennium. The layer thickness was used as a proxy of intensity of past floods. Because the Foréant palaeoflood record is in agreement with the documented variability of historical floods resulting from local and mesoscale, summer-to-autumn convective events, it is assumed to highlight changes in flood frequency and intensity related to such events typical of both Atlantic (local events) and Mediterranean (mesoscale events) climatic influences. Comparing the Foréant record with other Atlantic-influenced and Mediterranean-influenced regional flood records highlights a common feature in all flood patterns that is a higher flood frequency during the cold period of the Little Ice Age (LIA, AD 1300–1900). In contrast, high-intensity flood events are apparent during both the cold LIA and the warm Medieval Climate Anomaly (MCA, AD 950–1250). However, there is a tendency towards higher frequencies of high-intensity flood events during the warm MCA. The MCA extremes could mean that under the global warming scenario, we might see an increase in intensity (not in frequency). However, the flood frequency and intensity in the course of the 20th century warming trend did not change significantly. Uncertainties in future evolution of flood intensity lie in the interpretation of the lack of 20th century extremes (transition or stable?) and the different climate forcing factors between the two periods (greenhouse gases vs. solar and/or volcanic eruptions).
url http://www.clim-past.net/12/299/2016/cp-12-299-2016.pdf
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