Why the Western Pacific Subtropical High Has Extended Westward since the Late 1970s

Author:

Zhou Tianjun1,Yu Rucong1,Zhang Jie12,Drange Helge3,Cassou Christophe4,Deser Clara5,Hodson Daniel L. R.6,Sanchez-Gomez Emilia4,Li Jian12,Keenlyside Noel7,Xin Xiaoge12,Okumura Yuko5

Affiliation:

1. *LASG, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China

2. Graduate School of the Chinese Academy of Sciences, Beijing, China

3. Nansen Environmental and Remote Sensing Center, and Bjerknes Centre for Climate Research, Bergen, Norway

4. CNRS-CERFACS, Toulouse, France

5. National Center for Atmospheric Research, Boulder, Colorado

6. **Center for Atmospheric Modeling, University of Reading, Reading, United Kingdom

7. Leibniz Institute of Marine Sciences, Kiel, Germany

Abstract

Abstract The western Pacific subtropical high (WPSH) is closely related to Asian climate. Previous examination of changes in the WPSH found a westward extension since the late 1970s, which has contributed to the interdecadal transition of East Asian climate. The reason for the westward extension is unknown, however. The present study suggests that this significant change of WPSH is partly due to the atmosphere’s response to the observed Indian Ocean–western Pacific (IWP) warming. Coordinated by a European Union’s Sixth Framework Programme, Understanding the Dynamics of the Coupled Climate System (DYNAMITE), five AGCMs were forced by identical idealized sea surface temperature patterns representative of the IWP warming and cooling. The results of these numerical experiments suggest that the negative heating in the central and eastern tropical Pacific and increased convective heating in the equatorial Indian Ocean/Maritime Continent associated with IWP warming are in favor of the westward extension of WPSH. The SST changes in IWP influences the Walker circulation, with a subsequent reduction of convections in the tropical central and eastern Pacific, which then forces an ENSO/Gill-type response that modulates the WPSH. The monsoon diabatic heating mechanism proposed by Rodwell and Hoskins plays a secondary reinforcing role in the westward extension of WPSH. The low-level equatorial flank of WPSH is interpreted as a Kelvin response to monsoon condensational heating, while the intensified poleward flow along the western flank of WPSH is in accord with Sverdrup vorticity balance. The IWP warming has led to an expansion of the South Asian high in the upper troposphere, as seen in the reanalysis.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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