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Published on: July 3, 2016
Rapid increase in West Siberia's retrogressive thaw slumps since 1964 associated with Arctic winter warming
Nina Nesterova1,2, Marina Leibman3, Carl Stadie4,5
1Permafrost Research Section, Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research, 14473, Potsdam, Germany. nina.nesterova@awi.de.
Abstract:
Retrogressive thaw slumps (RTSs) are key indicators of permafrost thaw in the West Siberian Arctic. Based on a new high-resolution remote sensing-derived, field-verified inventory of 6168 RTSs for the Yamal and Gydan peninsulas, we provide the first large-scale spatio-temporal and climate sensitivity analysis from 1964 until 2024. In Gydan, RTS clusters are located at higher elevations, on rougher terrain, and in lake-rich areas, whereas such associations are weaker in Yamal. Temporal analysis of RTS using historical and modern satellite imagery for key sites (~ 6,103 km2) indicates that RTS numbers increased 23-fold from 1964 to 2024, and initiation rates rose 26-fold. A discrete-time Bayesian hazards model identified summer maximum precipitation as the strongest short-term factor. However, winter warming was the dominant long-term driver, with an increase of + 4.82 K resulting in a 29-pp increase in annual initiation probability. RTS development in the region poses high risks to gas and transport infrastructure.
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