Medium-Scale Thermospheric Gravity Waves in the High-Resolution Whole Atmosphere Model: Seasonal, Local Time, and Longitudinal Variations

IF 3.4 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Geophysical Research: Atmospheres Pub Date : 2025-01-04 DOI:10.1029/2024JD041810
Garima Malhotra, Timothy Fuller-Rowell, Tzu-Wei Fang, Valery Yudin, Svetlana Karol, Erich Becker, Adam Marshall Kubaryk
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Abstract

This paper presents a study of the global medium-scale (scales < ${< } $ 620 km) gravity wave (GW) activity (in terms of zonal wind variance) and its seasonal, local time, and longitudinal variations by employing the enhanced-resolution ( ${\sim} $ 50 km) whole atmosphere model (WAMT254) and space-based observations for geomagnetically quiet conditions. It is found that the GW hotspots produced by WAMT254 in the troposphere and stratosphere agree well with previously well-studied orographic and nonorographic sources. In the ionosphere-thermosphere (IT) region, GWs spread out forming latitudinal band-like hotspots. During solstices, a primary maximum in GW activity is observed in WAMT254 and GOCE over winter mid-high latitudes, likely associated with higher-order waves with primary sources in polar night jet, fronts, and polar vortex. During all the seasons, the enhancement of GWs around the geomagnetic poles as observed by GOCE (at ${\sim} $ 250 km) is well captured by simulations. WAMT254 GWs in the IT region also show dependence on local time due to their interaction with migrating tides leading to diurnal and semidiurnal variations. The GWs are more likely to propagate up from the MLT region during westward/weakly eastward phase of thermospheric tides, signifying the dominance of eastward GW momentum flux in the MLT. Additionally, as a novel finding, a wavenumber-4 signature in GW activity is predicted by WAMT254 between 6 and 12 local times in the tropics at ${\sim} $ 250 km, which propagates eastward with local time. This behavior is likely associated with the modulation of GWs by wave-4 signal of nonmigrating tides in the lower thermospheric zonal winds.

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高分辨率全大气模式中的中尺度热层重力波:季节、局地时间和纵向变化
本文介绍了全球中尺度(尺度<;$ {& lt;{$ 620 km)重力波(GW)活动(从纬向风变化的角度来看)及其季节、当地时间和纵向变化,采用提高分辨率(~ ${\sim} $ 50 km)全大气模式(WAMT254)和地磁安静条件下的天基观测。研究发现,WAMT254在对流层和平流层产生的GW热点与先前已得到充分研究的地形和非地形源非常吻合。在电离层-热层(IT)区域,GWs扩散形成纬向带状热点。在冬至期间,在冬季中高纬度地区的WAMT254和GOCE观测到GW活动的一次极大值,可能与极夜急流、锋面和极涡等主要来源的高阶波有关。在所有季节中,GOCE观测到的地磁极周围GWs的增强(在~ ${\sim} $ 250 km处)被模拟很好地捕获。WAMT254 gw在IT地区也表现出对当地时间的依赖,因为它们与迁移潮的相互作用导致了日和半日变化。在热层潮汐向西/弱向东阶段,GWs更有可能从MLT区域向上传播,这表明在MLT中,GWs动量通量向东占主导地位。此外,作为一项新发现,WAMT254预测了热带地区在当地时间6至12时在~ ${\sim} $ 250 km处的GW活动的波数-4特征,该特征随当地时间向东传播。这种行为可能与低层纬向风中非迁移潮汐的波-4信号对gw的调制有关。
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来源期刊
Journal of Geophysical Research: Atmospheres
Journal of Geophysical Research: Atmospheres Earth and Planetary Sciences-Geophysics
CiteScore
7.30
自引率
11.40%
发文量
684
期刊介绍: JGR: Atmospheres publishes articles that advance and improve understanding of atmospheric properties and processes, including the interaction of the atmosphere with other components of the Earth system.
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