Smoother sea ice in a more dynamic Arctic: 30 years of airborne pressure ridge observations.

Krumpen, Thomas, von Albedyll, Luisa, Bünger, Hans J., Castellani, Giulia, Hartmann, Jörg, Helm, Veit, Hendricks, Stefan, Hutter, Nils, Landy, Jack, Lisovski, Simeon, Lüpkes, Christof, Rohde, Jan, Suhrhoff, Mira and Haas, Christian (2025) Smoother sea ice in a more dynamic Arctic: 30 years of airborne pressure ridge observations. Open Access Nature Climate Change, 15 . pp. 66-72. DOI 10.1038/s41558-024-02199-5.

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Abstract

Pressure ridges, formed by sea ice deformation, affect momentum transfer in the Arctic Ocean and support a larger biomass than the surrounding-level ice. Although trends in Arctic sea ice thickness and concentration are well documented, changes in ridge morphology remain unclear. This study provides airborne-based evidence of a shift towards a smoother ice surface, with fewer pressure ridges and reduced surface drag, attributed to the loss of old ice. Furthermore, an increase in seasonal ice cover enhances overall deformation in the Arctic and acts as a negative feedback mechanism on pan-Arctic ridge morphology: the greater the proportion of seasonal ice, the higher the pan-Arctic mean ridge rate, dampening an overall decline in ridges with age. While thinner and less frequent ridges benefit industries such as shipping, these changes are likely to have profound impacts on the energy and mass balance and the ecosystem of the Arctic Ocean.

Document Type: Article
Keywords: Arctic; climate change; cryospheric science; environmental impact
Research affiliation: OceanRep > GEOMAR > FB1 Ocean Circulation and Climate Dynamics > FB1-OD Ocean Dynamics
HGF-AWI
Main POF Topic: PT2: Ocean and Cryosphere
Refereed: Yes
Open Access Journal?: No
Publisher: Nature Research
Related URLs:
Date Deposited: 04 Dec 2024 09:51
Last Modified: 17 Jan 2025 06:39
URI: https://oceanrep.geomar.de/id/eprint/61034

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