Sudden Stratospheric Warmings

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Version: Author's accepted manuscript
License: All rights reserved
Serval ID
serval:BIB_329375107D20
Type
Article: article from journal or magazin.
Collection
Publications
Title
Sudden Stratospheric Warmings
Journal
Reviews of Geophysics
Author(s)
Baldwin Mark P., Ayarzagüena Blanca, Birner Thomas, Butchart Neal, Butler Amy H., Charlton-Perez Andrew J., Domeisen Daniela I. V., Garfinkel Chaim I., Garny Hella, Gerber Edwin P., Hegglin Michaela I., Langematz Ulrike, Pedatella Nicholas M.
ISSN
8755-1209
1944-9208
Publication state
Published
Issued date
03/2021
Peer-reviewed
Oui
Volume
59
Number
1
Language
english
Abstract
Sudden stratospheric warmings (SSWs) are impressive fluid dynamical events in which large and rapid temperature increases in the winter polar stratosphere (∼10–50 km) are associated with a complete reversal of the climatological wintertime westerly winds. SSWs are caused by the breaking of planetary-scale waves that propagate upwards from the troposphere. During an SSW, the polar vortex breaks down, accompanied by rapid descent and warming of air in polar latitudes, mirrored by ascent and cooling above the warming. The rapid warming and descent of the polar air column affect tropospheric weather, shifting jet streams, storm tracks, and the Northern Annular Mode, making cold air outbreaks over North America and Eurasia more likely. SSWs affect the atmosphere above the stratosphere, producing widespread effects on atmospheric chemistry, temperatures, winds, neutral (nonionized) particles and electron densities, and electric fields. These effects span both hemispheres. Given their crucial role in the whole atmosphere, SSWs are also seen as a key process to analyze in climate change studies and subseasonal to seasonal prediction. This work reviews the current knowledge on the most important aspects of SSWs, from the historical background to dynamical processes, modeling, chemistry, and impact on other atmospheric layers.
Keywords
middle atmosphere, QBO, stratosphere, upper atmosphere, weather forecasts
Web of science
Open Access
Yes
Funding(s)
Swiss National Science Foundation / PP00P2_170523
Create date
10/10/2022 7:29
Last modification date
09/07/2024 15:30
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