4.4 Article

Decadal evolution of a very small heavily debris-covered glacier in an Alpine permafrost environment

Journal

JOURNAL OF GLACIOLOGY
Volume 62, Issue 233, Pages 535-551

Publisher

CAMBRIDGE UNIV PRESS
DOI: 10.1017/jog.2016.56

Keywords

climate change; debris-covered glaciers; glacier mass balance; mountain glaciers; permafrost

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Glacier response to climate forcing can be heterogeneous and complex, depending on glacier system characteristics. This article presents the decadal evolution of the Tsarmine Glacier (Swiss Alps), a very small and heavily debris-covered cirque glacier located in the Alpine periglacial belt. Archival aerial photogrammetry and autocorrelation of orthophotos were used to compute surface elevation, volume and geodetic mass changes, as well as horizontal displacement rates for several periods between 1967 and 2012. A GPR survey allowed us to investigate glacier thickness (15 m mean) and volume (4 x 10(6) m(3)) in 2015 and to anticipate its future evolution. Different dynamics occurred in recent decades because of the heterogeneous surface characteristics. The climate-sensitive upper debris-free zone contrasts with the progressively stagnant heavily debris-covered glacier tongue. Between 1967 and 2012, the glacier lost 1/3 of its initial volume (2 x 10(6) m(3)). The average mass balance stabilised at similar to-0.3 m w.e. a(-1) since 1999. Compared with other local glaciers, the Tsarmine Glacier shows a particular decadal behaviour both in time (divergence of mass balance since the 2000s) and space (inverted ablation pattern). This might be explained by the combined influence of debris cover, shadow, snow redistribution and permafrost conditions on this very small glacier.

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