Enhanced Tropospheric Wave Forcing of Two Anticyclones in the Prephase of the January 2009 Major Stratospheric Sudden Warming Event

Author:

Schneidereit Andrea1,Peters Dieter H. W.1,Grams Christian M.2,Quinting Julian F.2,Keller Julia H.3,Wolf Gabriel4,Teubler Franziska4,Riemer Michael4,Martius Olivia5

Affiliation:

1. Leibniz-Institute of Atmospheric Physics, University of Rostock, Kühlungsborn, Germany

2. Institute for Atmospheric and Climate Science, ETH Zürich, Zurich, Switzerland

3. Deutscher Wetterdienst, Offenbach, Germany

4. Institute for Atmospheric Physics, Johannes Gutenberg-University, Mainz, Germany

5. Mobiliar Lab for Natural Risk, Oeschger Centre for Climate Change Research, Institute of Geography, University of Bern, Bern, Switzerland

Abstract

Abstract Tropospheric forcing of planetary wavenumber 2 is examined in the prephase of the major stratospheric sudden warming event in January 2009 (MSSW 2009). Because of a huge increase in Eliassen–Palm fluxes induced mainly by wavenumber 2, easterly angular momentum is transported into the Arctic stratosphere, deposited, and then decelerates the polar night jet. In agreement with earlier studies, the results reveal that the strongest eddy heat fluxes, associated with wavenumber 2, occur at 100 hPa during the prephase of MSSW 2009 in ERA-Interim. In addition, moderate conditions of the cold phase of ENSO (La Niña) contribute to the eddy heat flux anomaly. It is shown that enhanced tropospheric wave forcing over Alaska and Scandinavia is caused by tropical processes in two ways. First, in a climatological sense, La Niña contributes to an enhanced anticyclonic flow over both regions. Second, the Madden–Julian oscillation (MJO) has an indirect influence on the Alaskan ridge by enhancing eddy activity over the North Pacific. This is manifested in an increase in cyclone frequency and associated warm conveyor belt outflow, which contribute to the maintenance and amplification of the Alaskan anticyclone. The Scandinavian ridge is maintained by wave trains emanating from the Alaskan ridge propagating eastward, including an enhanced transport of eddy kinetic energy. The MSSW 2009 is an extraordinary case of how a beneficial phasing of La Niña and MJO conditions together with multiscale interactions enhances tropospheric forcing for wavenumber 2–induced zonal mean eddy heat flux in the lower stratosphere.

Funder

Deutsche Forschungsgemeinschaft

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

American Meteorological Society

Subject

Atmospheric Science

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