Related Experiment Video
Updated: Dec 29, 2025

Simulating Impacts of Ice Storms on Forest Ecosystems
Published on: June 30, 2020
Enhanced eddy activity in the Beaufort Gyre in response to sea ice loss
Thomas W K Armitage1, Georgy E Manucharyan2, Alek A Petty3,4
1Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, USA. Tom.W.Armitage@gmail.com.
Abstract:
The Beaufort Gyre freshwater content has increased since the 1990s, potentially stabilizing in recent years. The mechanisms proposed to explain the stabilization involve either mesoscale eddy activity that opposes Ekman pumping or the reduction of Ekman pumping due to reduced sea ice-ocean surface stress. However, the relative importance of these mechanisms is unclear. Here, we present observational estimates of the Beaufort Gyre mechanical energy budget and show that energy dissipation and freshwater content stabilization by eddies increased in the late-2000s. The loss of sea ice and acceleration of ocean currents after 2007 resulted in enhanced mechanical energy input but without corresponding increases in potential energy storage. To balance the energy surplus, eddy dissipation and its role in gyre stabilization must have increased after 2007. Our results imply that declining Arctic sea ice will lead to an increasingly energetic Beaufort Gyre with eddies playing a greater role in its stabilization.
Related Concept Videos
Eddy Currents
Other major applications of eddy currents appear in metal detectors and the braking systems of trains and roller...
Coriolis Force
Keystone Species
Global Climate Change
Effect of Sea Water on Concrete
Concrete in areas between tide marks,...
Freezing Point Depression and Boiling Point Elevation
The boiling point of a liquid is the temperature at which its vapor pressure is equal to ambient atmospheric pressure. Since the vapor pressure of a solution is lowered due to the presence of nonvolatile solutes, it stands to reason that the solution’s boiling point will subsequently be increased. Vapor pressure increases with temperature, and so a solution will require a higher temperature than will pure solvent to achieve any given vapor pressure, including one...

