4.7 Article

ENSO-Unrelated Variability in Indo-Northwest Pacific Climate: Regional Coupled Ocean-Atmospheric Feedback

Journal

JOURNAL OF CLIMATE
Volume 33, Issue 10, Pages 4095-4108

Publisher

AMER METEOROLOGICAL SOC
DOI: 10.1175/JCLI-D-19-0426.1

Keywords

Indian Ocean; North Pacific Ocean; Atmosphere-ocean interaction; ENSO; Interannual variability

Funding

  1. Natural Science Foundation of China [41490640, 41490641]
  2. U.S. National Science Foundation [AGS 1637450]
  3. Japan Society for the Promoting Science [18H01278, 19H05703]
  4. Environment Research and Technology Development Fund of the Environmental Restoration and Conservation Agency of Japan [2-1904]
  5. Japan Science and Technology Agency through Belmont Forum CRA InterDec
  6. Grants-in-Aid for Scientific Research [19H05703, 18H01278] Funding Source: KAKEN

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Regional ocean-atmospheric interactions in the summer tropical Indo-northwest Pacific region are investigated using a tropical Pacific Ocean-global atmosphere pacemaker experiment with a coupled ocean-atmospheric model (cPOGA) and a parallel atmosphere model simulation (aPOGA) forced with sea surface temperature (SST) variations from cPOGA. Whereas the ensemble mean features pronounced influences of El Nino-Southern Oscillation (ENSO), the ensemble spread represents internal variability unrelated to ENSO. By comparing the aPOGA and cPOGA, this study examines the effect of the ocean-atmosphere coupling on the ENSO-unrelated variability. In boreal summer, ocean-atmosphere coupling induces local positive feedback to enhance the variance and persistence of the sea level pressure and rainfall variability over the northwest Pacific and likewise induces local negative feedback to suppress the variance and persistence of the sea level pressure and rainfall variability over the north Indian Ocean. Anomalous surface heat fluxes induced by internal atmosphere variability cause SST to change, and SST anomalies feed back onto the atmosphere through atmospheric convection. The local feedback is sensitive to the background winds: positive under the mean easterlies and negative under the mean westerlies. In addition, north Indian Ocean SST anomalies reinforce the low-level anomalous circulation over the northwest Pacific through atmospheric Kelvin waves. This interbasin interaction, along with the local feedback, strengthens both the variance and persistence of atmospheric variability over the northwest Pacific. The response of the regional Indo-northwest Pacific mode to ENSO and influences on the Asian summer monsoon are discussed.

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