A global hybrid coupled model based on atmosphere-SST feedbacks

Publication date

2012

Authors

Cimatoribus, A.A.
Drijfhout, S. S.ORCID 0000-0001-5325-7350ISNI 0000000396843522
Dijkstra, H. A.ISNI 0000000023267948

Editors

Advisors

Supervisors

Document Type

Article
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Abstract

A global hybrid coupled model is developed, with the aim of studying the effects of ocean-atmosphere feedbacks on the stability of the Atlantic meridional overturning circulation. The model includes a global ocean general circulation model and a statistical atmosphere model. The statistical atmosphere model is based on linear regressions of data from a fully coupled climate model on sea surface temperature both locally and hemispherically averaged, being the footprint of Atlantic meridional overturning variability. It provides dynamic boundary conditions to the ocean model for heat, freshwater and wind-stress. A basic but consistent representation of oceanatmosphere feedbacks is captured in the hybrid coupled model and it is more than 10 times faster than the fully coupled climate model. The hybrid coupled model reaches a steady state with a climate close to the one of the fully coupled climate model, and the two models also have a similar response (collapse) of the Atlantic meridional overturning circulation to a freshwater hosing applied in the northern North Atlantic.

Keywords

SDG 13 - Climate Action

Citation

Cimatoribus, A A, Drijfhout, S S & Dijkstra, H A 2012, 'A global hybrid coupled model based on atmosphere-SST feedbacks', Climate Dynamics, vol. 38, pp. 745-760. https://doi.org/10.1007/s00382-011-1094-1