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Planetary and tidal wave-type oscillations in the ionospheric sporadic E layers over Tehran region

机译:行星和潮汐波型振荡电离层对德黑兰地区分散E层

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It is believed that in the lower ionosphere, particularly in the ionospheric sporadic E (E_s) layers (90-130 km), the planetary and tidal wave-type oscillations in the ionized component indicate the planetary and tidal waves in the neutral atmosphere. In the present work, the presence of wave-type oscillations, including planetary and tidal waves in the ionospheric sporadic E layers over Tehran region is examined. Data measured by a digital ionosonde at the ionospheric station of the Institute of Geophysics, University of Tehran, from July 2006 to June 2007 are used to investigate seasonal variations of planetary and tidal waves activities. For the purpose of accurate comparison between different seasons, wavelet transform is applied to time series of foEs and h'Es, namely, the critical frequency and virtual height of Es layers, respectively. The results show that the sporadic E layers over Tehran region are strongly under the influence of upward propagation of waves from below. More specifically, among diverse range of periodicities in the sporadic E layers, we found that diurnal (24 hours) and semidiurnal (12 hours) oscillations in all seasons for both parameters. Moreover, terdiurnal (8 hours) tide-like variation is observed during spring and summer for foE_s parameter and summer and winter for h'Es. Furthermore, the results show that diurnal tidal waves obtain their maximum activities during autumn and winter seasons, and their activities decrease during the late spring and summer. In addition, periods of about 2, 4, 6, 10, 14, and 16 days in our observation verifies the hypothesis of upward propagation of planetary waves from lower atmosphere to the ionosphere. Moreover, planetary waves have their maximum activities during equinox.
机译:相信在低电离层,特别是在电离层分散E (E_s)层(90 - 130公里),行星和潮汐在电离波型振荡组件表明行星和潮汐波中性大气。波型振荡的存在,包括行星和潮汐波在电离层检查分散E层对德黑兰地区。由数字ionosonde数据测量研究所的电离层站地球物理学,德黑兰大学,从2006年7月到2007年6月被用来调查季节性行星和潮汐的变化活动。比较不同季节,小波变换应用于时间序列的敌人h,归根结底即临界频率和虚拟分别Es层高度。表明,分散E层在德黑兰地区强烈的影响下向上波的传播。具体来说,在各种各样的在分散E层周期的研究,我们发现昼夜(24小时)和半日(12两个小时)振荡在所有季节参数。在春天和tide-like变化是观察夏天foE_s参数和夏季和冬季对于h。归根结底周日潮汐波获得最大活动在秋冬季节,在春末的活动减少和夏季。6、10、14和16天在我们的观察验证向上传播的假设从低层大气行星波电离层。最大的活动在equinox。

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