A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere

We report observations of the wave number transition between two types of westward-propagating quasi-2 day wave (QTDW) with zonal wave number s = 3 and s = 4 in the mesosphere. The Aura/MLS temperature datasets from January and February 2011 are utilized in the analysis. A strong W4 was observed in...

وصف كامل

التفاصيل البيبلوغرافية
الحاوية / القاعدة:Atmosphere
المؤلفون الرئيسيون: Sheng-Yang Gu, Yafei Wei, Xiaoming Sha, Liang Tang, Na Li
التنسيق: مقال
اللغة:الإنجليزية
منشور في: MDPI AG 2023-02-01
الموضوعات:
الوصول للمادة أونلاين:https://www.mdpi.com/2073-4433/14/3/442
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author Sheng-Yang Gu
Yafei Wei
Xiaoming Sha
Liang Tang
Na Li
author_facet Sheng-Yang Gu
Yafei Wei
Xiaoming Sha
Liang Tang
Na Li
author_sort Sheng-Yang Gu
collection DOAJ
container_title Atmosphere
description We report observations of the wave number transition between two types of westward-propagating quasi-2 day wave (QTDW) with zonal wave number s = 3 and s = 4 in the mesosphere. The Aura/MLS temperature datasets from January and February 2011 are utilized in the analysis. A strong W4 was observed in the Southern Hemisphere in early February, following the fading away of a strong W3 in late January. The W3 and W4 were maximized on days 23 and 36 with maximum amplitudes of ~15 K and ~8 K, respectively. Both the amplitudes and periods were nearly equal on day 30, which coincided with the peak of the Sudden Stratospheric Warming (SSW) on day 31 in the polar region of the Northern Hemisphere. Our analysis shows that the equatorial barotropic/baroclinic and inertial instabilities, which are related with the winter planetary wave activities that lead to the SSW, may have triggered this wavenumber transition event and contributed significantly to the growth of the QTDW. Meanwhile, the relatively strong summer easterly jet at middle and high latitude regions in early February also provided favorable conditions for the amplification of W4 during 2011, and thus facilitated the wavenumber transition.
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spelling doaj-art-e7736666a7dc47bb9ee5c1a4adab761c2025-08-20T01:06:24ZengMDPI AGAtmosphere2073-44332023-02-0114344210.3390/atmos14030442A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the MesosphereSheng-Yang Gu0Yafei Wei1Xiaoming Sha2Liang Tang3Na Li4Electronic Information School, Wuhan University, Wuhan 430072, ChinaElectronic Information School, Wuhan University, Wuhan 430072, ChinaInstitute of Beijing Weather Application, Beijing 100094, ChinaSchool of Optoelectronic Engineering, Chongqing University of Posts and Telecommunications, Chongqing 400065, ChinaNational Key Laboratory of Electromagnetic Environment, China Research Institute of Radio-Wave Propagation, Qingdao 266000, ChinaWe report observations of the wave number transition between two types of westward-propagating quasi-2 day wave (QTDW) with zonal wave number s = 3 and s = 4 in the mesosphere. The Aura/MLS temperature datasets from January and February 2011 are utilized in the analysis. A strong W4 was observed in the Southern Hemisphere in early February, following the fading away of a strong W3 in late January. The W3 and W4 were maximized on days 23 and 36 with maximum amplitudes of ~15 K and ~8 K, respectively. Both the amplitudes and periods were nearly equal on day 30, which coincided with the peak of the Sudden Stratospheric Warming (SSW) on day 31 in the polar region of the Northern Hemisphere. Our analysis shows that the equatorial barotropic/baroclinic and inertial instabilities, which are related with the winter planetary wave activities that lead to the SSW, may have triggered this wavenumber transition event and contributed significantly to the growth of the QTDW. Meanwhile, the relatively strong summer easterly jet at middle and high latitude regions in early February also provided favorable conditions for the amplification of W4 during 2011, and thus facilitated the wavenumber transition.https://www.mdpi.com/2073-4433/14/3/442wavenumber transitionquasi-2 day wavesudden stratospheric warming
spellingShingle Sheng-Yang Gu
Yafei Wei
Xiaoming Sha
Liang Tang
Na Li
A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere
wavenumber transition
quasi-2 day wave
sudden stratospheric warming
title A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere
title_full A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere
title_fullStr A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere
title_full_unstemmed A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere
title_short A Case Study of the Wavenumber Transition between Westward Quasi-2 Day Wave s = 3 and s = 4 Modes in the Mesosphere
title_sort case study of the wavenumber transition between westward quasi 2 day wave s 3 and s 4 modes in the mesosphere
topic wavenumber transition
quasi-2 day wave
sudden stratospheric warming
url https://www.mdpi.com/2073-4433/14/3/442
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