IMIS

Publications | Institutes | Persons | Datasets | Projects | Maps | Infrastructure
[ report an error in this record ]basket (0): add | show Print this page

Enhanced warming constrained by past trends in equatorial Pacific sea surface temperature gradient
Watanabe, M.; Dufresne, J.-L.; Kosaka, Y.; Mauritsen, T.; Tatebe, H. (2021). Enhanced warming constrained by past trends in equatorial Pacific sea surface temperature gradient. Nat. Clim. Chang. 11(1): 33-37. https://dx.doi.org/10.1038/s41558-020-00933-3
In: Nature Climate Change. Nature Publishing Group: London. ISSN 1758-678X; e-ISSN 1758-6798, more
Peer reviewed article  

Available in  Authors 

Authors  Top 
  • Watanabe, M.
  • Dufresne, J.-L.
  • Kosaka, Y.
  • Mauritsen, T.
  • Tatebe, H.

Abstract
    The equatorial Pacific zonal sea surface temperature (SST) gradient, known to be a pacemaker of global warming, has strengthened since the mid-twentieth century. However, the cause is controversial because a majority of Coupled Model Intercomparison Project Phase 5 (CMIP5) models suggest weakening of the zonal SST gradient from the past to the future. Reconciling this discrepancy is important for the climate change attribution and climate sensitivity assessment. Here we use the CMIP5 ensemble and large ensemble simulations by four climate models to show that the intensifying SST gradient observed during 1951–2010 could arise from internal climate variability. Models and members that simulate historical strengthening of the SST gradient commonly exhibit reversed future trends. Using these models as a constraint, the rate of global-mean temperature rise is amplified by 9–30%, with higher values occurring in low-emission scenarios, because internal variability has a greater impact when the externally forced response is smaller.

All data in the Integrated Marine Information System (IMIS) is subject to the VLIZ privacy policy Top | Authors