基于TIEGCM-NG/MAGIC模拟的雷暴重力波对电离层-热层的影响及其与GNSS TEC、ICON和COSMIC-2观测的比较

IF 2.9 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Xian Lu, Haonan Wu, Chris Heale, Scott England, Shunrong Zhang
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引用次数: 0

摘要

我们利用MAGIC重力波推动的TIEGCM-NG,研究了一个具有100次龙卷风触地的强雷暴系统对电离层和热层扰动的影响。在水平尺度为150 ~ 400 km、相速为150 ~ 300 m/s的GNSS TIDs上,产生的波形成了明显的同心圆模式,模型模拟效果良好。波在时间上表现出明显的垂直演变,最初在200公里处以0.5小时为主,然后转移到0.25小时,在更高的高度(~ 400公里)出现更多的高频波。在水平风、垂直风、温度和相对中性密度条件下,TADs的振幅分别为100 m/s、60 m/s、80 K和10%。电子密度的显著扰动导致其夜间结构在200公里附近和EIA波峰附近发生剧烈变化。在离子漂移中也模拟了同心TIDs,并将其从龙卷风区域映射到可能由于中性风致电场扰动而产生的共轭半球。这些波成功地影响了ICON和COSMIC-2高度的电离层,它们在8个不同的轨道上穿过感兴趣的区域。来自这些航天器的原位离子密度观测显示,周期性波动经常与TIEGCM-NG模拟结果非常吻合。ICON的O+分数观测表明,密度波动是该区域离子垂直输送的结果,可能是由中性风的直接强迫或电动力耦合造成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impacts of Thunderstorm-Generated Gravity Waves on the Ionosphere-Thermosphere Using TIEGCM-NG/MAGIC Simulations and Comparisons With GNSS TEC, ICON, and COSMIC-2 Observations

Impacts of Thunderstorm-Generated Gravity Waves on the Ionosphere-Thermosphere Using TIEGCM-NG/MAGIC Simulations and Comparisons With GNSS TEC, ICON, and COSMIC-2 Observations

We use the TIEGCM-NG nudged by MAGIC gravity waves to study the impacts of a severe thunderstorm system, with a hundred tornado touchdowns, on the ionospheric and thermospheric disturbances. The generated waves induce a distinct concentric ring pattern on GNSS TIDs with horizontal scales of 150–400 km and phase speeds of 150–300 m/s, which is well simulated by the model. The waves show substantial vertical evolution in period, initially dominated by 0.5 hr at 200 km, shifting to 0.25 hr and with more higher-frequency waves appearing at higher altitudes (∼400 km). The TADs reach amplitudes of 100 m/s, 60 m/s, 80 K, and 10% in horizontal winds, vertical wind, temperature, and relative neutral density, respectively. Significantly perturbations in electron density cause dramatic changes in its nighttime structure around 200 km and near the EIA crest. The concentric TIDs are also simulated in ion drifts and mapped from the Tornado region to the conjugate hemisphere likely due to neutral wind-induced electric field perturbations. The waves manage to impact the ionosphere at altitudes of ICON and COSMIC-2, which pass through the region of interest on a total of 8 separate orbits. In situ ion density observations from these spacecrafts reveal periodic fluctuations that frequently show good agreement with the TIEGCM-NG simulation. The O+ fraction observations from ICON indicate that the density fluctuations are the result of vertical transport of the ions in this region, which could result from either direct forcing by neutral winds or electrodynamic coupling.

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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
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