Interannual Variations of Wind Regimes off the Subtropical Western Australia Coast during Austral Winter and Spring

Author:

Weller Evan1,Feng Ming1,Hendon Harry2,Ma Jian3,Xie Shang-Ping3,Caputi Nick4

Affiliation:

1. CSIRO Marine and Atmospheric Research, Wembley, Western Australia, Australia

2. Centre for Australian Weather and Climate Research, Melbourne, Victoria, Australia

3. Department of Meteorology, and International Pacific Research Center, SOEST, University of Hawaii at Manoa, Honolulu, Hawaii

4. Western Australian Fisheries and Marine Research Laboratories, Department of Fisheries, North Beach, Western Australia, Australia

Abstract

Abstract Off the Western Australia coast, interannual variations of wind regime during the austral winter and spring are significantly correlated with the Indian Ocean dipole (IOD) and the southern annular mode (SAM) variability. Atmospheric general circulation model experiments forced by an idealized IOD sea surface temperature anomaly field suggest that the IOD-generated deep atmospheric convection anomalies trigger a Rossby wave train in the upper troposphere that propagates into the southern extratropics and induces positive geopotential height anomalies over southern Australia, independent of the SAM. The positive geopotential height anomalies extended from the upper troposphere to the surface, south of the Australian continent, resulting in easterly wind anomalies off the Western Australia coast and a reduction of the high-frequency synoptic storm events that deliver the majority of southwest Australia rainfall during austral winter and spring. In the marine environment, the wind anomalies and reduction of storm events may hamper the western rock lobster recruitment process.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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