High‐latitude influence of the quasi‐biennial oscillation
Влияние квази-двухлетней осцилляции на высокие широты
2013-03-28
SCID: 54.1/ep3t3apw
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Holton–Tan effectQBO–vortex couplingquasi-biennial oscillation (QBO)stratospheric winter polar vortexteleconnections with solar cycle and El Niño–Southern Oscillation
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Abstract (AI)
Abstract The interannual variability of the stratospheric winter polar vortex is correlated with the phase of the quasi‐biennial oscillation (QBO) of tropical stratospheric winds. This dynamical coupling between high and low latitudes, often referred to as the Holton–Tan effect, has been the subject of numerous observational and modelling studies, yet important questions regarding its mechanism remain unanswered. In particular it remains unclear which vertical levels of the QBO exert the strongest influence on the winter polar vortex, and how QBO–vortex coupling interacts with the effects of other sources of atmospheric interannual variability such as the 11‐year solar cycle or the El Niño Southern Oscillation. As stratosphere‐resolving general circulation models begin to resolve the QBO and represent its teleconnections with other parts of the climate system, it seems timely to summarize what is currently known about the QBO's high‐latitude influence. In this review article, we offer a synthesis of the modelling and observational analyses of QBO–vortex coupling that have appeared in the literature, and update the observational record.
Key Findings
1
Interaction of QBO–vortex coupling with other sources of interannual variability (11‑year solar cycle, ENSO) is not fully understood.
2
Stratosphere‑resolving general circulation models are beginning to resolve the QBO and its teleconnections, motivating synthesis of recent observational and modelling results.
3
The phase of the tropical stratospheric quasi‑biennial oscillation (QBO) correlates with interannual variability of the stratospheric winter polar vortex (Holton–Tan effect).
4
This review updates the observational record and synthesizes existing modelling and observational analyses of QBO–vortex coupling.
5
Uncertainty remains about which vertical levels of the QBO most strongly influence the winter polar vortex.
Research Object
Quasi‑biennial oscillation (QBO) of tropical stratospheric winds and its teleconnection to the stratospheric winter polar vortex
Research Subject
The high‑latitude influence of the QBO, specifically which QBO vertical levels most strongly affect the winter polar vortex and how QBO–vortex coupling interacts with other sources of interannual atmospheric variability (e.g., 11‑year solar cycle, ENSO)
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2013-03-28
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