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Robust Longitudinally Variable Responses of the ITCZ to a Myriad of Climate Forcings

Alyssa R. Atwood, Aaron Donohoe, David S. Battisti, Xiaojuan Liu, Francesco S. R. Pausata

2020Geophysical Research Letters69 citationsDOIOpen Access PDF

Abstract

Abstract We evaluate the longitudinal variation in meridional shifts of the tropical rainbelt in response to natural and anthropogenic forcings using a large suite of coupled climate model simulations. We find that the energetic framework of the zonal mean Hadley cell is generally not useful for characterizing shifts of the rainbelt at regional scales, regardless of the characteristics of the forcing. Forcings with large hemispheric asymmetry such as extratropical volcanic forcing, meltwater forcing, and the Last Glacial Maximum give rise to robust zonal mean shifts of the rainbelt; however, the direction and magnitude of the shift vary strongly as a function of longitude. Even the Pacific rainband does not shift uniformly under any forcing considered. Forcings with weak hemispheric asymmetry such as CO 2 and mid‐Holocene forcing give rise to zonal mean shifts that are small or absent, but the rainbelt does shift regionally in coherent ways across models that may have important dynamical consequences.

Topics & Concepts

ClimatologyHadley cellForcing (mathematics)Intertropical Convergence ZoneOrbital forcingClimate modelClimate changeAtmospheric sciencesEnvironmental scienceGeologyExtratropical cycloneZonal and meridionalPhysicsPrecipitationMeteorologyGeneral Circulation ModelOceanographyInsolationGeology and Paleoclimatology ResearchClimate variability and modelsGeological and Geochemical Analysis
Robust Longitudinally Variable Responses of the ITCZ to a Myriad of Climate Forcings | Litcius