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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >On the tropospheric origin of Mesosphere Lower Thermosphere region intraseasonal wind variability
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On the tropospheric origin of Mesosphere Lower Thermosphere region intraseasonal wind variability

机译:在对流层低中间层的起源风热电离层区域动力学可变性

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Continuous medium frequency radar observations of mesosphere lower thermosphere (MLT) region winds during February 2004–May 2005 (486 days) over Tirunelveli (8.7°N, 77.8°E) revealed intraseasonal oscillations (ISOs) in the 82- to 94-km height region. Two distinct oscillations with periods 50–70 and 20–40 days are noticed predominantly in zonal winds. As it is well established that these oscillations are nonstationary and localized in time, wavelet analysis has been employed to study the time evolution of these oscillations. The analysis showed that 50- to 70-day oscillation peaks during June-October and 20- to 40-day oscillation peaks during January-March in the MLT region. To trace back the origin of these oscillations, the tropospheric ISO has been studied for the same period using outgoing long-wave radiation (OLR) observations. The OLR, which is the proxy for convective activity in the lower atmosphere, around the radar site 5–10°N, 70–80°E is used for the present analysis. The wavelet analysis of OLR showed the 50- to 70-day oscillation peaking at the same time as in the MLT region. The shorter period oscillation (20–40 days), which showed its peak during January-March in the MLT region, is not observed in the OLR data during these months. However, the analysis of water vapor, which is the prime candidate for excitation of tides, showed the 20- to 40-day oscillation during the same time as in the MLT region. In the present study, the lower atmospheric convective activity through gravity wave excitation and water vapor through tidal forcing are accounted for the observed ISO in the MLT region. The significance of present results lies in showing the highly coherent oscillations in OLR and MLT region zonal winds. The coupling between the lower and middle atmospheric ISO is extensively discussed in the light of existing mechanisms.
机译:连续的中频雷达观测中间层降低热电离层(MLT)地区的风在2004年2月- 2005年5月(486天)Tirunelveli(8.7°N, 77.8°E)动力学振荡(iso)在82年94公里的高度。期50 - 70和20 - 40天注意到主要在纬向风。建立了这些振荡不稳定和局部时间,小波分析被用来研究这些振荡的进化。显示,50 - 70天的振荡峰值在June-October和20 - 40天振荡高峰期间1 MLT地区。追溯这些振荡的起源,对流层ISO已经研究了相同的期使用冰面长波辐射(OLR)观察。在低层大气对流活动,在雷达站点5 - 10°N, 70 - 80°E用于目前的分析。显示,50 - 70天的振荡峰值同时在MLT地区。周期振荡(20 - 40天),这显示它高峰期间1匝的地区没有观察到在OLR资料在这几个月里。但是,水蒸气的分析潮汐的主要候选人励磁,显示,20 - 40天振荡期间同时在MLT地区。研究中,较低的大气对流活动通过重力波励磁和水蒸气通过潮汐迫使占了观察到ISO MLT地区。现在的结果在于显示高度相干振荡和OLR MLT带状区域大风。大气ISO是广泛讨论的现有的机制。

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