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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Low-Latitude Ionospheric Density Irregularities and Associated Scintillations Investigated by Combining COSMIC RO and Ground-Based Global Positioning System Observations Over a Solar Active Period
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Low-Latitude Ionospheric Density Irregularities and Associated Scintillations Investigated by Combining COSMIC RO and Ground-Based Global Positioning System Observations Over a Solar Active Period

机译:通过将宇宙RO和基于地面的全球定位系统观测结合在太阳能活动期间,通过将宇宙RO和地面的全球定位系统观测结合而研究了低纬度电离层密度不规则性和相关的闪烁

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摘要

This study for the first time presents a locally integrated analysis of occurrences of ionospheric E and F region irregularities/scintillations in southeast China, by employing radio occultation (RO) profile data retrieved from Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC) satellites and observations from a ground-based Global Navigation Satellite System receiver over a solar active period from 2014 to 2015. Their occurrences in both nighttime and daytime were examined by using both amplitude scintillation index (S_4) and the rate of change of total electron content index. It is found that (1) F region irregularities occurred predominantly during 20-03 local time (LT) and exhibited maximum (minimum) during equinoxes (solstices) and equinoctial (solstice) asymmetry. Their geographic mapping reveals the maximum occurrence in the westward tilted structure of equatorial plasma bubbles. In addition, the altitude-time variations indicate that their occurrences at higher altitudes were prevailing at 20-22 LT. (2) The E region irregularities were found prominently during 15-00 LT at altitudes of 90-110 km with an even geographic distribution. Their occurrences with maximum in summer (May-August) were distinctly detected by RO observations but insignificantly by ground-based observations. (3) By examining simultaneous observations of E and F region irregularities, it is found that they appeared absent during 21-00 LT and predominant after midnight. This could be related to the weakening/disruption of sporadic E (Es) layers during the development of equatorial plasma bubbles. A sign of coupling of E and F regions during nighttime is likely revealed from RO profile data.
机译:本研究首次提出了东南部地区离子层E和F地区缺失的局部综合分析,通过采用从星座观察系统进行气象,电离层和气候(COSMIC)的无线弥补(RO)型材数据。从2014年至2015年的太阳能活动期间从地面全球导航卫星系统接收器的卫星和观察。通过使用幅度闪烁指数(S_4)和总电子含量的变化率来检查它们在夜间和白天的发生指数。发现(1)F区域不规则主要在20-03局部时间(LT)期间主要发生,并且在昼夜平分(溶剂质)和equinoctial(溶剂)不对称期间显示出最大(最小)。它们的地理映射显示了赤道等离子体气泡的向西倾斜结构的最大发生。此外,海拔时间变化表明它们在较高海拔地区的出现在20-22升高。 (2)e区突然突出地发现在海拔90-110公里,甚至地理分布突出。它们在夏季最多(5月8日)的出现被RO观察明显地检测到,但基于地面的观察结果不显着地检测。 (3)通过检查E和F地区的同时观察不规则,发现它们在21-00 Lt和午夜后主要出现。这可能与赤道等离子体气泡的发展期间散发型e(ES)层的弱化/破坏有关。 RO简介数据可能揭示了夜间e和f区域的耦合迹象。

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