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An assessment of a multi-model ensemble of decadal climate predictions

  • A. Bellucci
  • , R. Haarsma
  • , S. Gualdi
  • , P. J. Athanasiadis
  • , M. Caian
  • , C. Cassou
  • , E. Fernandez
  • , A. Germe
  • , J. Jungclaus
  • , J. Kröger
  • , D. Matei
  • , W. Müller
  • , H. Pohlmann
  • , D. Salas y Melia
  • , E. Sanchez
  • , D. Smith
  • , L. Terray
  • , K. Wyser
  • , S. Yang
  • Euro Mediterranean Center on Climage Change
  • Royal Netherlands Meteorological I.
  • Istituto Nazionale di Geofisica e Vulcanologia (INGV)
  • Swedish Meteorological and Hydrological Institute
  • CERFACS
  • Météo-France/CNRS
  • Max Planck Institute for Meteorology
  • Now at Met Office Hadley Centre
  • Now at Danish Meteorological Institute

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78 Citations (Scopus)

Résumé

A multi-model ensemble of decadal prediction experiments, performed in the framework of the EU-funded COMBINE (Comprehensive Modelling of the Earth System for Better Climate Prediction and Projection) Project following the 5th Coupled Model Intercomparison Project protocol is examined. The ensemble combines a variety of dynamical models, initialization and perturbation strategies, as well as data assimilation products employed to constrain the initial state of the system. Taking advantage of the multi-model approach, several aspects of decadal climate predictions are assessed, including predictive skill, impact of the initialization strategy and the level of uncertainty characterizing the predicted fluctuations of key climate variables. The present analysis adds to the growing evidence that the current generation of climate models adequately initialized have significant skill in predicting years ahead not only the anthropogenic warming but also part of the internal variability of the climate system. An important finding is that the multi-model ensemble mean does generally outperform the individual forecasts, a well-documented result for seasonal forecasting, supporting the need to extend the multi-model framework to real-time decadal predictions in order to maximize the predictive capabilities of currently available decadal forecast systems. The multi-model perspective did also allow a more robust assessment of the impact of the initialization strategy on the quality of decadal predictions, providing hints of an improved forecast skill under full-value (with respect to anomaly) initialization in the near-term range, over the Indo-Pacific equatorial region. Finally, the consistency across the different model predictions was assessed. Specifically, different systems reveal a general agreement in predicting the near-term evolution of surface temperatures, displaying positive correlations between different decadal hindcasts over most of the global domain.

langue originaleAnglais
Pages (de - à)2787-2806
Nombre de pages20
journalClimate Dynamics
Volume44
Numéro de publication9-10
Les DOIs
étatPublié - 1 mai 2015
Modification externeOui

SDG des Nations Unies

Ce résultat contribue à ou aux Objectifs de développement durable suivants

  1. SDG 13 - Action climatique
    SDG 13 Action climatique

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