Seawater Can Intrude Even Under “Grounded” Ice to Accelerate Ice Sheet Retreat

The Cryosphere, 8 February 2022

New modeling suggests that warm seawater can slip underneath grounded ice sheets — ice resting on land or bedrock — and travel tens of kilometers inland beneath the grounded ice. When the ground below the ice is flat or slopes downward and is impermeable, such as bedrock; seawater can mix with the channels of meltwater flowing beneath the surface of the ice sheet. This mixing pushes warm saltwater against the bottom of the ice, accelerating melt rates and ice loss. These findings suggest that the “grounding line” – where the ice sheet transitions to float on the surface of water – is not an impenetrable barrier between ice sheet and ocean. If seawater sneaks underneath and flows just several hundred meters past the grounding line, ice loss from that ice sheet could increase by 10-50% over a century. Should this seawater flow tens of kilometers inland, it can double or triple projected ice loss. Understanding the extent to which ice sheets and outlet glaciers are affected by seawater intrusion is critical to predicting how quickly Antarctic ice sheet loss may contribute to sea-level rise.

https://tc.copernicus.org/articles/16/451/2022/

Pam Pearson

Recent Posts

COP31 Cryosphere Pavilion: Call for Side Events and ECS Volunteers

Dear Friends of the Cryosphere Pavilion and Cryosphere Capsule Readers! We are happy to announce…

2 weeks ago

Extreme Sea-Level Rise Could Lead to Large-Scale Coastal Relocation in the United Kingdom

Nature Communications, 21 July 2026 Rising sea levels driven by ocean warming and ice sheet…

2 weeks ago

East Antarctic Ice Shelf Melt Driven by Warm Surface Ocean Waters

Journal of Geophysical Research: Oceans, 26 June 2026 East Antarctica has long been considered less…

2 weeks ago

Increasing Decline in Antarctic Bottom Water Volume Since 2000s

Geophysical Research Letters, 9 July 2026 Antarctic Bottom Water (AABW) is the cold, dense water…

2 weeks ago

Record-Low Arctic Winter Sea Ice in 2025 and 2026 Signals Continued Decline

PNAS, 20 July 2026 After several years in the early 2020s when Arctic winter sea…

2 weeks ago

AMOC Weakening and Permafrost Thaw During Overshoot of the 1.5°C Paris Limit

Nature Communications, 16 July 2026 Temporarily exceeding global warming targets increases the risk of long-lasting…

2 weeks ago