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Role of mixed layer dynamics in tropical North Atlantic interannual sea surface temperature variability

  • Allyson Rugg
  • , Gregory R. Foltz
  • , Renellys C. Perez
    • National Oceanic and Atmospheric Administration
    • University of Miami

    Research output: Contribution to journalArticlepeer-review

    34 Scopus citations

    Abstract

    This study examines the causes of observed sea surface temperature (SST) anomalies in the tropical North Atlantic between 1982 and 2015. The emphasis is on the boreal winter and spring seasons, when tropical Atlantic SSTs project strongly onto the Atlantic meridional mode (AMM). Results from a composite analysis of satellite and reanalysis data show important forcing of SST anomalies by wind-driven changes in mixed layer depth and shortwave radiation between 5° and 10°N, in addition to the well-known positive wind-evaporation-SST and shortwave radiation-SST feedbacks between 5° and 20°N. Anomalous surface winds also drive pronounced thermocline depth anomalies of opposite signs in the eastern equatorial Atlantic and intertropical convergence zone (ITCZ; 2°-8°N). A major new finding is that there is strong event-to-event variability in the impact of thermocline depth on SST in the ITCZ region, in contrast to the more consistent relationship in the eastern equatorial Atlantic. Much stronger anomalies of meridional wind stress, thermocline depth, and vertical turbulent cooling are found in the ITCZ region during a negative AMM event in 2009 compared to a negative event in 2015 and a positive event in 2010, despite SST anomalies of similar magnitude in the early stages of each event. The larger anomalies in 2009 led to a much stronger and longer-lived event. Possible causes of the inconsistent relationship between thermocline depth and SST in the ITCZ region are discussed, including the preconditioning role of the winter cross-equatorial SST gradient.

    Original languageEnglish
    Pages (from-to)8083-8101
    Number of pages19
    JournalJournal of Climate
    Volume29
    Issue number22
    DOIs
    StatePublished - 2016

    Keywords

    • Atmosphere-ocean interaction
    • Ekman pumping
    • Oceanic mixed layer
    • Sea surface temperature

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