Assessment of a full-field initialized decadal climate prediction system with the CMIP6 version of EC-Earth

In this paper, we present and evaluate the skill of an EC-Earth3.3 decadal prediction system contributing to the Decadal Climate Prediction Project – Component A (DCPP-A). This prediction system is capable of skilfully simulating past global mean surface temperature variations at interannual and dec...

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Detalles Bibliográficos
Autores: Bilbao, Roberto|||0000-0003-0729-4980, Wild, Simon|||0000-0002-1089-5579, Ortega Montilla, Pablo|||0000-0002-4135-9621, Acosta Navarro, Juan Camilo|||0000-0001-5375-0639, Arsouze, Thomas|||0000-0002-8871-6120, Bretonnière, Pierre-Antoine|||0000-0002-3066-6685, Caron, Louis-Philippe|||0000-0001-5221-0147, Castrillo, Miguel|||0000-0003-1826-623X, Cruz García, Rubén|||0000-0003-0087-9898, Cvijanovic, Ivana, Doblas-Reyes, Francisco|||0000-0002-6622-4280, Donat, Markus|||0000-0002-0608-7288, Dutra, Emanuel, Echevarria, Pablo|||0000-0003-3951-1310, Ho, An-Chi, Loosveldt-Tomas, Saskia, Moreno Chamarro, Eduardo|||0000-0002-7931-5149, Pérez-Zanón, Núria|||0000-0001-8568-3071, Ramos, Arthur, Ruprich-Robert, Yohan|||0000-0002-4008-2026, Sicardi, Valentina|||0000-0002-5116-2670, Tourigny, Etienne|||0000-0003-4628-1461, Vegas-Regidor, Javier|||0000-0003-0096-4291
Tipo de recurso: artículo
Fecha de publicación:2021
País:España
Institución:Universitat Politècnica de Catalunya (UPC)
Repositorio:UPCommons. Portal del coneixement obert de la UPC
Idioma:inglés
OAI Identifier:oai:upcommons.upc.edu:2117/341413
Acceso en línea:https://hdl.handle.net/2117/341413
https://dx.doi.org/10.5194/esd-12-173-2021
Access Level:acceso abierto
Palabra clave:Computer simulation
Climatology
Climatology--Mathematical models
Climatology--Periodicals
EC-Earth3.3
Decadal prediction systems
Decadal Climate Prediction Project – Component A (DCPP-A)
Forecast
Simulació per ordinador
Àrees temàtiques de la UPC::Enginyeria agroalimentària::Ciències de la terra i de la vida::Climatologia i meteorologia
Descripción
Sumario:In this paper, we present and evaluate the skill of an EC-Earth3.3 decadal prediction system contributing to the Decadal Climate Prediction Project – Component A (DCPP-A). This prediction system is capable of skilfully simulating past global mean surface temperature variations at interannual and decadal forecast times as well as the local surface temperature in regions such as the tropical Atlantic, the Indian Ocean and most of the continental areas, although most of the skill comes from the representation of the external radiative forcings. A benefit of initialization in the predictive skill is evident in some areas of the tropical Pacific and North Atlantic oceans in the first forecast years, an added value that is mostly confined to the south-east tropical Pacific and the eastern subpolar North Atlantic at the longest forecast times (6–10 years). The central subpolar North Atlantic shows poor predictive skill and a detrimental effect of initialization that leads to a quick collapse in Labrador Sea convection, followed by a weakening of the Atlantic Meridional Overturning Circulation (AMOC) and excessive local sea ice growth. The shutdown in Labrador Sea convection responds to a gradual increase in the local density stratification in the first years of the forecast, ultimately related to the different paces at which surface and subsurface temperature and salinity drift towards their preferred mean state. This transition happens rapidly at the surface and more slowly in the subsurface, where, by the 10th forecast year, the model is still far from the typical mean states in the corresponding ensemble of historical simulations with EC-Earth3. Thus, our study highlights the Labrador Sea as a region that can be sensitive to full-field initialization and hamper the final prediction skill, a problem that can be alleviated by improving the regional model biases through model development and by identifying more optimal initialization strategies.