Byrd Polar and Climate Research Center, Ohio State University, Columbus, OH, USA.
Department of Geography, Durham University, Durham, UK.
Nat Commun. 2023 Apr 19;14(1):2151. doi: 10.1038/s41467-023-37764-7.
Ice discharge from Greenland's marine-terminating glaciers contributes to half of all mass loss from the ice sheet, with numerous mechanisms proposed to explain their retreat. Here, we examine K.I.V Steenstrups Nordre Bræ ('Steenstrup') in Southeast Greenland, which, between 2018 and 2021, retreated ~7 km, thinned ~20%, doubled in discharge, and accelerated ~300%. This rate of change is unprecedented amongst Greenland's glaciers and now places Steenstrup in the top 10% of glaciers by contribution to ice-sheet-wide discharge. In contrast to expected behaviour from a shallow, grounded tidewater glacier, Steenstrup was insensitive to high surface temperatures that destabilised many regional glaciers in 2016, appearing instead to respond to a >2 °C anomaly in deeper Atlantic water (AW) in 2018. By 2021, a rigid proglacial mélange had developed alongside notable seasonal variability. Steenstrup's behaviour highlights that even long-term stable glaciers with high sills are vulnerable to sudden and rapid retreat from warm AW intrusion.
从格陵兰海洋终端冰川流失的冰,对冰原一半以上的质量损失负有责任,有许多机制被提出来解释其退缩的原因。在这里,我们研究了格陵兰东南的 K.I.V. Steenstrups Nordre Bræ(“Steenstrup”),该冰川在 2018 年至 2021 年间后退了约 7 公里,变薄了约 20%,流量增加了一倍,速度加快了约 300%。这种变化速度在格陵兰的冰川中是前所未有的,现在 Steenstrup 冰川对冰原总排放量的贡献排在前 10%。与人们预期的浅、基础潮汐冰川的行为相反,Steenstrup 对 2016 年使许多地区冰川不稳定的高表面温度不敏感,反而似乎对 2018 年大西洋深部(AW)超过 2°C 的异常做出了反应。到 2021 年,一个坚硬的冰川前缘混合物已经与显著的季节性变化一起发展起来。Steenstrup 的行为表明,即使是具有高门槛的长期稳定冰川,也容易受到温暖的 AW 入侵的突然和快速退缩的影响。