PP038-01
Mechanisms for recent decadal AMOC variability
Abstract:
The surface-forced streamfunction, estimated from modelled/observed buoyancy fluxes, has been shown in previous studies to be a reasonably good predictor of decadal changes in the overturning strength, preceding the latter with a lead time of between 3 and 5 years, although the reliability of the correlations before 2000 is limited by data sparsity, and especially so in the pre-satellite era. To verify a causal link between surface forcing and decadal variations in the AMOC over longer timescales, a set of hindcast integrations of a global 0.25° NEMO ocean configuration has been carried out from 1958 until nearly the present day, with a selection of standard surface forcing datasets (CORE2, DFS5.2 and JRA55). These show an evolution of the AMOC strength from 1970 onwards which is consistent, both between forcing datasets and with that inferred from observations. The surface-forced streamfunction is evaluated for these experiments and the surface heat loss from the Labrador and Irminger Seas is found to be the dominant predictor of AMOC changes. A scalar metric based on the surface forced streamfunction in critical density and latitude classes is found to be a good predictor of changes in the overturning strength.