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Observations and simulations of the ionospheric lunar tide: Seasonal variability

机译:观测和模拟电离层月球潮汐:季节性变化

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The seasonal variability of the ionospheric lunar tide is investigated using a combination of Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC) observations and thermosphere-ionosphere-mesosphere electrodynamics general circulation model (TIME-GCM) simulations. The present study focuses on the seasonal variability of the lunar tide in the ionosphere and its potential connection to the occurrence of stratosphere sudden warmings (SSWs). COSMIC maximum F region electron density (N_mF_2) and total electron content observations reveal a primarily annual variation of the ionospheric lunar tide, with maximum amplitudes occurring at low latitudes during December–February. Simulations of the lunar tide climatology in TIME-GCM display a similar annual variability as the COSMIC observations. This leads to the conclusion that the annual variability of the lunar tide in the ionosphere is not solely due to the occurrence of SSWs. Rather, the annual variability of the lunar tide in the ionosphere is generated by the seasonal variability of the lunar tide at E region altitudes. However, compared to the observations, the ionospheric lunar tide annual variability is weaker in the climatological simulations which is attributed to the occurrence of SSWs during the majority of the years included in the observations. Introducing a SSW into the TIME-GCM simulation leads to an additional enhancement of the lunar tide during Northern Hemisphere winter, increasing the lunar tide annual variability and resulting in an annual variability that is more consistent with the observations. The occurrence of SSWs can therefore potentially bias lunar tide climatologies, and it is important to consider these effects in studies of the lunar tide in the atmosphere and ionosphere.
机译:电离层月球的季节性变化潮流是调查使用的组合星座为气象观测系统,观察和电离层和气候(宇宙)thermosphere-ionosphere-mesosphere电动力学环流模式(TIME-GCM)模拟。在农历潮汐的季节性变化电离层和其潜在的联系平流层的发生突然的变暖(f)。(N_mF_2)和总电子含量的观察揭示了主要的年度变化电离层月球潮汐,最大振幅发生在低纬度地区该型号。气候学在TIME-GCM显示类似的年度变化的宇宙观测。导致每年的结论在电离层变化的月球潮汐不仅仅是由于量的发生。相反,月球的年度变化趋势电离层是生成的季节性可变性的月球潮汐在E海拔。电离层每年农历潮汐变化较弱的气候模拟中归因于期间发生的量多数的岁月中观察。模拟导致额外的增强月球潮汐在北半球冬季,每年农历潮汐变化和增加导致更多的年度变化与观测一致。然后可以因此月球潮汐潜在的偏见气候学,重要的是要考虑这些影响在月球潮汐的研究大气和电离层。

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