Litcius/Paper detail

Seasonal prediction of Euro-Atlantic teleconnections from multiple systems

Llorenç Lledó, Irene Cionni, Verónica Torralba, Pierre-Antoine Bretonnière, Margarida Samsó

2020Environmental Research Letters53 citationsDOIOpen Access PDF

Abstract

Abstract Seasonal mean atmospheric circulation in Europe can vary substantially from year to year. This diversity of conditions impacts many socioeconomic sectors. Teleconnection indices can be used to characterize this seasonal variability, while seasonal forecasts of those indices offer the opportunity to take adaptation actions a few months in advance. For instance, the North Atlantic Oscillation has proven useful as a proxy for atmospheric effects in several sectors, and dynamical forecasts of its evolution in winter have been shown skillful. However the NAO only characterizes part of this seasonal circulation anomalies, and other teleconnections such as the East Atlantic, the East Atlantic Western Russia or the Scandinavian Pattern also play an important role in shaping atmospheric conditions in the continent throughout the year. This paper explores the quality of seasonal forecasts of these four teleconnection indices for the four seasons of the year, derived from five different seasonal prediction systems. We find that several teleconnection indices can be skillfully predicted in advance in winter, spring and summer. We also show that there is no single prediction system that performs better than the others for all seasons and teleconnections, and that a multi-system approach produces results that are as good as the best of the systems.

Topics & Concepts

TeleconnectionClimatologyNorth Atlantic oscillationProxy (statistics)Environmental scienceAtmospheric circulationClimate systemSeasonalityGeographyClimate changeEl Niño Southern OscillationOceanographyGeologyMathematicsStatisticsClimate variability and modelsAtmospheric and Environmental Gas DynamicsMeteorological Phenomena and Simulations
Seasonal prediction of Euro-Atlantic teleconnections from multiple systems | Litcius