Observations of Equatorial Kelvin Waves and their Convective Coupling with the Atmosphere/Ocean Surface Layer

ORAL

Abstract

Intraseasonal disturbances with their genesis in the equatorial Indian Ocean (IO) are an important component of global climate. The disturbances, which include Madden-Julian Oscillation and equatorial Kelvin and Rossby waves in the atmosphere and ocean, carry energy which affects El Ni\~{n}o, cyclogenesis, and monsoons. A recent field experiment in IO (\underline {ASIRI-RAWI}) observed disturbances at three sites across IO with arrays of instruments probing from surface layer to lower stratosphere. During the field campaign the most pronounced planetary-scale disturbances were Kelvin waves in tropical tropopause layer. In Seychelles, quasi-biweekly westerly wind bursts were documented and linked to the Kelvin waves aloft, which breakdown in the upper troposphere due to internal shear instabilities. Convective coupling between waves' phase in upper troposphere and surface initiates rapid (turbulent) vertical transport and resultant wind bursts at surface. Such phenomena reveal linkages between planetary-scale waves and small-scale turbulence in the surface layer that can affect air-sea property exchanges and should be parameterized in atmosphere-ocean general circulation models.

*Funded by ONR Grants N00014-14-1-0279 and N00014-13-1-0199

Authors

  • Patrick Conry

    • University of Notre Dame
  • H. J. S. Fernando

    • University of Notre Dame
  • Laura Leo

    • University of Notre Dame
  • Byron Blomquist

    • University of Notre Dame
  • Vincent Amelie

    • Seychelles Meteorological Authority
  • Nelson Lalande

    • Seychelles Meteorological Authority
  • Ed Creegan

    • US Army Research Laboratory
  • Chris Hocut

    • US Army Research Laboratory
  • Ben MacCall

    • US Army Research Laboratory
  • Yansen Wang

    • US Army Research Laboratory
  • S. U. P. Jinadasa

    • National Aquatic Resources Research and Development Agency
  • Chien Wang

    • Singapore-MIT Alliance for Research and Technology
  • Lik-Khian Yeo

    • Singapore-MIT Alliance for Research and Technology