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Lunar Tidal Effect on Equatorial Ionization Anomaly Region in China Low Latitude

机译:月球潮汐影响赤道电离异常在中国低纬度地区

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摘要

The equatorial ionization anomaly (EIA) crest derived from GPS observations, F2-layer peak height (hmF2), critical frequency (foF2), and equatorial electrojet (EEJ) in China low latitude are used to study the lunar tidal effect on EIA region for the years from 2006 to 2015. A predominant 14.76-day periodic component in EIA crest, hmF2, and EEJ concurrently appears in some seasonal intervals, which coincides with the half of the lunar revolution period (29.53 days) and the lunar phase, indicating that the 14.76-day periodic oscillation in EIA region is modulated by the lunar tide. This 14.76-day periodic oscillation occurs in all Northern Hemisphere (NH) winter and corresponds to their respective sudden stratospheric warming (SSW) period from 2006 to 2015. In addition, this 14.76-day periodic oscillation also occurs in other seasons for some years, for example, May and August, in which wave power is sometimes comparable to that in SSW period. The occurrence of the 14.76-day periodic oscillation and its wave power during non-SSW seasons in the solar maximum years (2012-2015) is more frequent and higher than that in the solar minimum years (2008-2010). Our results suggest that, besides the NH SSW condition, the solar activity and some other unclear factors are also responsible for the lunar tide enhancement in EIA region.
机译:赤道电离异常(EIA)波峰来自GPS观测,F2-layer高峰高度(hmF2),临界频率(foF2)赤道电喷流(EEJ)在中国较低的纬度被用来研究月球潮汐影响环评地区从2006年到2015年。环境影响评价主要周期14.76天的组成部分波峰,hmF2 EEJ同时出现在一些季节性的间隔,一半是一致的的月球(29.53天)和革命时期月球阶段,表明了14.76天的时间环评地区的周期性振荡调制月球的潮汐。振荡发生在北半球(NH)冬季和对应于各自的突然平流层变暖(f)段2006年到2015年。周期振荡也发生在其他的季节一些年来,例如,5月和8月,波浪发电是有时可比性在f。周期性振荡期间及其波浪发电太阳能最大年non-SSW季节(2012 - 2015)比这更频繁和更高太阳能最低年(2008 - 2010)。结果表明,除NH量条件下,太阳能和其他一些活动不明朗因素也负责月球潮汐在EIA地区增强。

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