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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >The mean zonal wind effect on the long-term variation of ultra-fast Kelvin waves in the mesosphere and lower thermosphere and in the upper stratosphere
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The mean zonal wind effect on the long-term variation of ultra-fast Kelvin waves in the mesosphere and lower thermosphere and in the upper stratosphere

机译:平均区间风对介质层层和较低的热层和上层流域的超快速开尔韦波长期变化

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This study investigates 14-year ultra-fast Kelvin wave (UFKW) activity in the mesosphere and lower thermosphere (MLT) and in the upper stratosphere where the mesopause semiannual oscillation (MSAO) and the stratopause semiannual oscillation (SSAO) dominate the two altitude regions, respectively. The wave properties are derived from SABER temperature data for the period from 2003 to 2016 by two-dimensional fast Fourier transform. The investigations focus on the UFKW with zonal wavenumber 1 and periods of 2.5-4.5 days. The spectra, daily variations, and seasonal variations of UFKW are investigated. The wave activity is also compared with the background zonal wind derived from the horizontal wind model 2014 (HWM14) for the MLT region and from European Centre for Medium-Range Weather Forecasts (ECMWF) interim reanalysis for the upper stratosphere. The results are that periods of UFKW are mainly in the range of 2.5-4.5 days, but the dominated periods change from year to year. The UFKW amplitudes increase with altitude, and the largest amplitudes occur at altitudes above 90 km. Above 95 km, the mean zonal wind is westward at all times and the amplitude of UFKW is large most of the time. In the MLT region and the upper stratosphere, the large-amplitude UFKW tend to occur in the westward phase of the MSAO and the SSAO. The seasonal variation of UFKW in the MLT region and the upper stratosphere both show a semiannual variation in which the maximum and the secondary maximum are in August and February, respectively. The correlation analysis shows that the time lags between the 90-km wave variation and lower altitude wave variations do not match the theoretical expectation of the wave upward velocity. Finally, the MSAO and the SSAO act like two filters, which modify the wave amplitude and result in different daily variations in the MLT region and in the upper stratosphere.
机译:本研究调查了介质圈和下热层(MLT)中的14年超快速开尔文波(UFKW)活性,以及​​中位半振荡(MSAO)和Stratopause半振荡(SSAO)主导了两个高度地区, 分别。通过二维快速傅立叶变换,从2003年到2016年的Saber温度数据导出波属性。调查专注于带有Zonal Wavenumber 1和2.5-4.5天的UFKW。研究了UFKW的光谱,日常变化和季节性变化。还将波浪活性与来自MLT区域的水平风模型(HWM14)的背景Zonal风电相比,以及来自欧洲的中等范围天气预报(ECMWF)临时再分析的欧洲中小型天气预报(ECMWF)。结果是,UFKW的时期主要在2.5-4.5天的范围内,但主导的时期从一年开始变为年。 UFKW振幅随高度而增加,最大幅度在90公里以上的海拔地区出现。在95公里以上,平均Zonal风在向西始终是向西,大部分时间都大的幅度大。在MLT区域和上层层,大幅度UFKW往往发生在MSAO和SSAO的向西阶段。 UFKW在MLT区域和上层层中的季节变化均显示出半年和二月的最大值和二次最大值。相关分析表明,90 km波变化和较低的高度波变化之间的时间滞后与波向上速度的理论期望不匹配。最后,MSAO和SSAO就像两个滤波器一样,它改变了波幅的幅度,并导致MLT区域和上层之间的不同日常变化。

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