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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Planetary wave-tidal interactions over the equatorial mesosphere-lower thermosphere region and their possible implications for the equatorial electrojet
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Planetary wave-tidal interactions over the equatorial mesosphere-lower thermosphere region and their possible implications for the equatorial electrojet

机译:赤道中层下部热圈区域的行星波潮相互作用及其对赤道电喷的潜在影响

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摘要

Optically measured daylight mean mesopause temperatures over a dip equatorial station, Trivandrum (8.5°N; 77°E; dip lat. 0.5°N), have been analyzed in conjunction with simultaneously measured equatorial electrojet (EEJ)-produced magnetic field at the surface. The signature of planetary wave-tidal interactions in the mesosphere-lower thermosphere (MLT) region has been observed for the first time in the day-to-day variability in the EEJ, i.e., the time of its peaking and the duration, as inferred from the EEJ-produced magnetic field on the ground. The present study shows that the planetary wave of quasi 16 day periodicity plays an important role in causing these variabilities, especially during the winter months. The quasi 16 day wave is found to be modulating the mesopause temperature (MT), duration, and time of the maximum EEJ intensity (D_(EEJ) and T_(EEJ)). During positive excursions of the planetary wave, T_(EEJ) showed a shift toward evening, while the MT showed an increase and D_(EEJ) showed a broadening. Similarly, all these parameters exhibited an opposite trend during negative excursions. The planetary wave-tidal interactions and subsequent modification of the tidal components have been shown to be responsible for the observed variations. This study presents a new perspective addressing the day-to-day variability of the EEJ.
机译:结合同时测量的赤道电喷(EEJ)产生的磁场,分析了在赤道赤道站特里凡得琅(8.5°N; 77°E;纬度为纬度0.5°N)上光学测量的日中平均温度。在EEJ的日常变化中,首次观察到了中低层热圈(MLT)区域中行星波-潮汐相互作用的特征,即推断的峰值时间和持续时间。来自EEJ在地面上产生的磁场。本研究表明,准16天周期的行星波在引起这些变化方面起着重要作用,尤其是在冬季。准16天波被发现调节了中经温度(MT),最大EEJ强度(D_(EEJ)和T_(EEJ))的持续时间和时间。在行星波正向偏移期间,T_(EEJ)显示向傍晚移动,而MT显示增加,而D_(EEJ)显示扩大。同样,所有这些参数在负向偏移期间都呈现相反的趋势。行星波-潮汐相互作用和潮汐分量的后续变化已被证明是造成观测到的变化的原因。这项研究提出了解决EEJ日常变化的新观点。

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