Decadal variability in high northern latitudes as simulated by an intermediate-complexity climate model
- 1 January 2001
- journal article
- Published by International Glaciological Society in Annals of Glaciology
- Vol. 33, 525-532
- https://doi.org/10.3189/172756401781818482
Abstract
A 2500 year integration has been performed with a global coupled atmospheric-sea-ice-ocean model of intermediate complexity with the main objective of studying the climate variability in polar regions on decadal time-scales and longer. The atmospheric component is the ECBILT model, a spectral T21 three-level quasi-geostrophic model that includes a representation of horizontal and vertical heat transfers as well as of the hydrological cycle. ECBILT is coupled to the CLIO model, which consists of a primitive-equation free-surface ocean general circulation model and a dynamic-thermodynamic sea-ice model. Comparison of model results with observations shows that the ECBILT-CLIO model is able to reproduce reasonably well the climate of the high northern latitudes. The dominant mode of coupled variability between the atmospheric circulation and sea-ice cover in the simulation consists of an annular mode for geopotential height at 800 hPa and of a dipole between the Barents and Labrador Seas for the sea-ice concentration which are similar to observed patterns of variability. In addition, the simulation displays strong decadal variability in the sea-ice volume, with a significant peak at about 18 years. Positive volume anomalies are caused by (1) a decrease in ice export through Fram Strait associated with more anticyclonic winds at high latitudes, (2) modifications in the freezing/melting rates in the Arctic due to lower air temperature and higher surface albedo, and (3) a weaker heat flux at the ice base in the Barents and Kara seas caused by a lower inflow of warm Atlantic water. Opposite anomalies occur during the volume-decrease phase of the oscillation.Keywords
This publication has 25 references indexed in Scilit:
- Evidence for a recent change in the link between the North Atlantic Oscillation and Arctic Sea ice exportGeophysical Research Letters, 2000
- Satellite Evidence for an Arctic Sea Ice Cover in TransformationScience, 1999
- Thinning of the Arctic sea‐ice coverGeophysical Research Letters, 1999
- Seasonal cycles in two regimes of Arctic climateJournal of Geophysical Research: Oceans, 1999
- The Role of Physical Processes in Determining the Interdecadal Variability of Central Arctic Sea IceJournal of Climate, 1999
- The Arctic oscillation signature in the wintertime geopotential height and temperature fieldsGeophysical Research Letters, 1998
- Linking Arctic sea‐ice and atmospheric circulation anomalies on interannual and decadal timescalesAtmosphere-Ocean, 1997
- Recent decreases in Arctic summer ice cover and linkages to atmospheric circulation anomaliesGeophysical Research Letters, 1996
- On the interbasin‐scale thermohaline circulationReviews of Geophysics, 1995
- Interannual atmospheric variability and associated fluctuations in Arctic Sea ice extentJournal of Geophysical Research: Oceans, 1979