Stratospheric ozone and quasi-biennial oscillation (QBO) interaction with the tropical troposphere on intraseasonal and interannual timescales: a normal-mode perspective
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Published:2021-01-18
Issue:1
Volume:12
Page:83-101
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ISSN:2190-4987
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Container-title:Earth System Dynamics
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language:en
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Short-container-title:Earth Syst. Dynam.
Author:
Raphaldini Breno, Teruya André S. W., Leite da Silva Dias PedroORCID, Massaroppe LucasORCID, Takahashi Daniel Yasumasa
Abstract
Abstract. The Madden–Julian oscillation (MJO) is the main controller of the weather in
the tropics on intraseasonal timescales, and recent research provides
evidence that the quasi-biennial oscillation (QBO) influences the MJO
interannual variability. However, the physical mechanisms behind this
interaction are not completely understood. Recent studies on the normal-mode
structure of the MJO indicate the contribution of global-scale Kelvin and
Rossby waves. In this study we test whether these MJO-related normal modes are
affected by the QBO and stratospheric ozone. The partial directed coherence
method was used and enabled us to probe the direction and frequency of the
interactions. It was found that equatorial stratospheric ozone and
stratospheric zonal winds are connected with the MJO at periods of 1–2 months
and 1.5–2.5 years. We explore the role of normal-mode interactions behind the
stratosphere–troposphere coupling by performing a linear regression between
the MJO–QBO indices and the amplitudes of the normal modes of the atmosphere
obtained by projections on a normal-mode basis using ERA-Interim reanalysis
data. The MJO is dominated by symmetric Rossby modes but is also influenced by
Kelvin and asymmetric Rossby modes. The QBO is mostly explained by westward-propagating inertio-gravity waves and asymmetric Rossby waves. We explore the
previous results by identifying interactions between those modes and between
the modes and the ozone concentration. In particular, westward inertio-gravity
waves, associated with the QBO, influence the MJO on interannual
timescales. MJO-related modes, such as Kelvin waves and Rossby waves
with a symmetric wind structure with respect to the Equator, are shown to have
significantly different dynamics during MJO events depending on the phase of
the QBO.
Funder
Chesapeake Bay Program
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences
Reference72 articles.
1. Amos, D. E. and Koopmans, L. H.: Tables of the distribution of the
coefficient of coherence for stationary bivariate Gaussian processes, Sandia
Corporation, Albuquerque, United States, 1963. 2. Baccala, L. A. and Sameshima, K.: Overcoming the limitations of correlation analysis for many simultaneously processed neural structures, Prog. Brain Res., 130, 33–47, https://doi.org/10.1016/S0079-6123(01)30004-3, 2001. a, b, c, d 3. Baccala, L., De Brito, C., Takahashi, D., and Sameshima, K.: Unified
asymptotic theory for all partial directed coherence forms,
Philos. T. R. Soc. A, 371, 1–13, https://doi.org/10.1098/rsta.2012.0158, 2013. a, b, c, d, e 4. Baldwin, M. P., Gillett, N. P., Forster, P., Gerber, E. P., Hegglin, M. I.,
Karpechko, A. Y., Kim, J., Kushner, P. J., Morgenstern, O. H., and
Reichler, T.: Effects of the Stratosphere on the Troposphere, chap. 10, in:
WMO/ICSU/IOC World Climate Research Programme, Springer, Dordrecht,
https://doi.org/10.1007/978-1-4020-8217-7_9, 2010. a 5. Bianco-Martinez, E. and Baptista, M. S.: Space-time nature of causality, Chaos, 28, 075509, https://doi.org/10.1063/1.5019917, 2018. a
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