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Amplitude modulation of the semidiurnal tide based on MLT wind measurements with a European/Siberian meteor radar network in October - December 2017

机译:基于MLT风测量与欧洲/西伯利亚流星雷达网络2017年10月 - 12月基于MLT风测量的半潮幅度调制

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We present results on temporal and longitudinal modulations of semidiurnal tide amplitudes in the mesosphere and lower thermo-sphere winds. The wind data were obtained during October - December 2017 when six meteor radars operated simultaneously. The radar network covers latitudes from 51°N to 72°N and longitudes from 13°E to 178°E. The results show a clear tidal 8-9 day amplitude modulation, which significantly changes with latitude. Evidence is provided for a non-linear interaction between the semidiurnal tide and eastward and westward propagating planetary waves as a source of the modulation. The modulation from the interaction with eastward propagating waves of zonal wavenumber 1 is observed at high latitudes (65°-72°N). A modulation in correspondence with non-linear interaction with a westward propagating wave of zonal wavenumber 1 replaces the first one at middle latitudes (51°-52°N). Furthermore, we found a significant statistical link between the upper stratosphere zonal jet oscillations and the longitudinal difference in tidal amplitudes obtained at the Collm and Angarsk mid-latitude stations. The correlation coefficients are about 0.61 and 0.55 for zonal and meridional amplitudes, respectively. The difference between tidal winds taken at different longitudes grows in amplitude for both wind components at middle latitudes during the increase of stationary planetary wave 1 activity in December. TIDI upper mesospheric wind data indicate a semidiurnal westward propagating tide with wavenumber 3 as the leading source of this effect. The difference between tidal winds at high-latitudes shows different behaviour for the zonal and meridional wind components in December.
机译:我们提出了Mesrophere和下热球风中的半潮幅度的时间和纵向调制的结果。当六个流星雷达同时运行时,在2017年10月获得风数据。雷达网络将纬度从51°N至72°N覆盖,并从13°E到178°E的长度。结果表明,潮流显着变化了普通潮汐8-9天幅度调制。在半潮和向向西和向西传播行星波作为调制的源之间的非线性相互作用提供了证据。从高纬度(65°-72°N)观察到与Zonal波数1的东方传播波的相互作用的调制。与与西向波数1的向西传播波的非线性相互作用对应的调制在中纬度(51°-52°N)时替换第一一个。此外,我们发现了在Collm和Angarsk中纬位站中获得的上层间射流振荡和潮幅度的纵向振幅之间的显着统计链路。相关系数分别为纬度和子化幅度为约0.61和0.55。在12月在12月的固定行星波1活动增加期间,在不同的纵向中采取的潮风的差异在于中间纬度的风力分量的幅度。 TIDI上部MESOMALICHER DUAL数据表示具有波兰木材3作为这种效果的领先来源的半峰向西传播潮。高纬度的潮风之间的差异显示了12月的Zonal和子午线组件的不同行为。

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