Publication | Open Access
Link between the double-Intertropical Convergence Zone problem and cloud biases over the Southern Ocean
402
Citations
39
References
2013
Year
EngineeringClimate ModelingOceanographyEarth System ScienceEarth ScienceExcessive PrecipitationAtmospheric ScienceClimate ProjectionSouthern OceanClimate ChangeClimate VariabilityMeteorologyGeographyOceanic ForcingCloud BiasesDouble-intertropical Convergence ZoneClimate SystemClimatologyPhysical OceanographyGlobal ClimateClimate Modelling
The double-Intertropical Convergence Zone (ITCZ) problem, in which excessive precipitation is produced in the Southern Hemisphere tropics, which resembles a Southern Hemisphere counterpart to the strong Northern Hemisphere ITCZ, is perhaps the most significant and most persistent bias of global climate models. In this study, we look to the extratropics for possible causes of the double-ITCZ problem by performing a global energetic analysis with historical simulations from a suite of global climate models and comparing with satellite observations of the Earth's energy budget. Our results show that models with more energy flux into the Southern Hemisphere atmosphere (at the top of the atmosphere and at the surface) tend to have a stronger double-ITCZ bias, consistent with recent theoretical studies that suggest that the ITCZ is drawn toward heating even outside the tropics. In particular, we find that cloud biases over the Southern Ocean explain most of the model-to-model differences in the amount of excessive precipitation in Southern Hemisphere tropics, and are suggested to be responsible for this aspect of the double-ITCZ problem in most global climate models.
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