首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Coherent seasonal, annual, and quasi-biennial variations in ionospheric tidal/SPW amplitudes
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Coherent seasonal, annual, and quasi-biennial variations in ionospheric tidal/SPW amplitudes

机译:连贯的季节性,每年,quasi-biennial电离层潮汐/ SPW振幅的变化

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In this study, we examine the coherent spatial and temporal modes dominating the variation of selected ionospheric tidal and stationary planetary wave (SPW) signatures from 2007 to 2013 FORMOSAT-3/COSMIC (Constellation Observing System for Meteorology, Ionosphere, and Climate) total electron content observations using multidimensional ensemble empirical mode decomposition (MEEMD) from the Hilbert-Huang Transform. We examine the DW1, SW2, DE3, and SPW4 components, which are driven by a variety of in situ and vertical coupling sources. The intrinsic mode functions (IMFs) resolved by MEEMD analysis allows for the isolation of the dominant modes of variability for prominent ionospheric tidal/SPW signatures in a manner not previously used, allowing the effects of specific drivers to be examined individually. The time scales of the individual IMFs isolated for all tidal/SPW signatures correspond to a semiannual variation at equatorial ionization anomaly (EIA) latitudes maximizing at the equinoxes, as well as annual oscillations at the EIA crests and troughs. All tidal/SPW signatures show one IMF isolating an ionospheric quasi-biennial oscillation (QBO) in the equatorial latitudes maximizing around January of odd-numbered years. This total electron content QBO variation is in phase with a similar QBO variation isolated in both the Global Ultraviolet Imager (GUVI) zonal mean column O/N_2 density ratio (ΣO/N_2) and the F_(10.)7 solar radio flux index around solar maximum, while showing temporal variation more similar to that of GUVI ΣO/N_2 during the time around the 2008/2009 extended solar minimum. These results point to both quasi-biennial variations in solar irradiance and thermosphere/ionosphere composition as a generation mechanism for the ionospheric QBO.
机译:在这项研究中,我们研究的空间时态模式控制的变化选择的电离层潮汐和静止行星波(SPW)签名从2007年到2013年FORMOSAT-3 /宇宙(星座观测系统电离层,气象和气候)电子内容的观察使用多维合奏经验模式分解(MEEMD)的前景变换。组件,它们是由各种各样的现场和垂直耦合来源。模式函数(货币)通过MEEMD分析解决允许隔离的主导模式电离层潮汐/ SPW可变性为突出签名的方式不是以前,允许特定的驱动程序的影响单独检查。个人首先对所有潮汐/ SPW孤立签名与半年变化相对应在赤道电离异常(EIA)纬度在春分和秋分最大化,以及年度EIA波峰和波谷的振荡。潮汐/ SPW签名显示一个国际货币基金组织的隔离电离层quasi-biennial振荡(QBO)赤道纬度最大化奇数年的1月。电子内容QBO变异是在阶段类似的QBO孤立在全球变化紫外成像仪(GUVI)地带性意味着列O /甲烷密度比(ΣO /甲烷)和f(10) 7太阳能广播流量指数在太阳能最大显示时间变化更相似的GUVIΣO /甲烷在周围的时间2008/2009太阳活动极小期延长。点都quasi-biennial太阳能的变化辐照度和热电离层/电离层成分的产生机制电离层QBO。

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