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Characteristics and Seasonal evolution of firns and snow cornices in the High Vosges mountains (Eastern France)

Bibliographic Data

ID13430501
AuthorsLaurent Wahl (corresponding author), Olivier Planchon, Pierre-Marie David (0000-0001-7441-0633)
Year2009
Volume63
Issue1
Pages51-67
Publication date2009-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueErdkunde (JOURNAL)
Journal identifiersISSN: 0014-0015 • E-ISSN: 2702-5985
PublisherErdkunde (PUBLISHER • DE)
DOI10.3112/erdkunde.2009.01.04
OpenAlexW2093987236
LanguageEN
References cited1

Despite their relatively low elevation (about 1300-1400 m) and because of their cold and humid climate, the High Vosges Mountains in eastern France (at about 48?N 7?E) usually experience a long-lasting snow cover and the persist ence of residual snow patches into late spring and summer, sometimes until mid-September. Snow accumulation in winter results in the formation of firns and snow cornices. Climate, topography and land cover of the High Vosges are favourable to snow accumulation on the upper leeward edges of fossil glacial cirques. Firns and snow re-form at the same loca tions. Therefore, 40 (including 23 firn sites and 17 cornices sites) were identified in glacial cirques, most of them facing E to NE and above 1150 m. The variability and succession of weather observed in winter and spring affect on the snow depth and the formation and duration of firns and snow cornices. While snowy winters are followed by a late melting of snow patches (high frequency of NW and N circulation types), mild and winters with little snow cover are followed by an early melting of small firns and snow (high frequency of alternating south-westerly and westerly circulation types). A high frequency of cyclonic/anticyclonic northerly circulation types in spring reduces the snowmelt and sometimes causes new snowfalls. However, heavy rainfall in spring and high temperature in summer cause a rapid snowmelt and disappear ance of firns and snow cornices. Slides of firns and cornice collapses increase slope erosion and a serious risk of avalanches occurs during and after snowy winters. Avalanches occur in glacial cirques because of their steep slopes and the Hohneck Massif is particularly subject. A map of the risk of avalanches in the Hohneck Massif in association with the location of the main firns and snow is provided

Geography · Geomorphology · Physical geography · Snow · Cryospheric studies and observations · Geology · Geology and Paleoclimatology Research · Landslides and related hazards

  • The Residual Snow Cover in the Canadian Arctic in July

    Open Access•Bernard Lauriol, Yvan Carrier et al.•ARCTIC•1986

Citation velocityhistorical
Highly citedNo

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