Abstract
Surface crevassing on the Greenland Ice Sheet is a large source of uncertainty in processes controlling mass loss due to a lack of comprehensive observations of their location and evolution through time. Here we use high-resolution digital elevation models to map the three-dimensional volume of crevasse fields across the Greenland Ice Sheet in 2016 and 2021. We show that, between the two years, large and significant increases in crevasse volume occurred at marine-terminating sectors with accelerating flow (up to +25.3 ± 10.1% in the southeast sector), while the change in total ice-sheet-wide crevasse volume was within measurement error (+4.3 ± 5.9%). The sectoral increases were offset by a reduction in crevasse volume in the central west sector (−14.2 ± 3.2%), particularly at Sermeq Kujalleq (Jakobshavn Isbræ), which exhibited slowdown and thickening over the study period. Changes in crevasse volume correlate strongly with antecedent discharge changes, indicating that the acceleration of ice flow in Greenland forces significant increases in crevassing on a timescale of less than five years. This response provides a mechanism for mass-loss-promoting feedbacks on sub-decadal timescales, including increased calving, faster flow and accelerated water transfer to the bed.
| Original language | English |
|---|---|
| Article number | e2021JF006287 |
| Pages (from-to) | 148-153 |
| Number of pages | 6 |
| Journal | Nature Geoscience |
| Volume | 18 |
| Issue number | 2 |
| DOIs | |
| Publication status | Published - 3 Feb 2025 |
Bibliographical note
Publisher Copyright:© The Author(s) 2025.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 14 Life Below Water
Fingerprint
Dive into the research topics of 'Increased crevassing across accelerating Greenland Ice Sheet margins'. Together they form a unique fingerprint.Projects
- 1 Finished
-
Leverhulme Early Career Fellowship
Chudley, T. (Principal Investigator)
1/02/23 → 31/12/25
Project: Research
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