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ICON-MIGHTI热层风观测的验证:2. 与镜面流星雷达的绿线比较。

Validation of ICON-MIGHTI Thermospheric Wind Observations: 2. Green-Line Comparisons to Specular Meteor Radars.

作者信息

Harding Brian J, Chau Jorge L, He Maosheng, Englert Christoph R, Harlander John M, Marr Kenneth D, Makela Jonathan J, Clahsen Matthias, Li Guozhu, Ratnam M Venkat, Bhaskar Rao S Vijaya, Wu Yen-Jung J, England Scott L, Immel Thomas J

机构信息

Space Sciences Laboratory, University of California, Berkeley, CA, USA.

Leibniz Institute of Atmospheric Physics at the University of Rostock, Kühlungsborn, Germany.

出版信息

J Geophys Res Space Phys. 2021 Mar;126(3). doi: 10.1029/2020JA028947. Epub 2021 Feb 22.

Abstract

We compare coincident thermospheric neutral wind observations made by the Michelson Interferometer for Global High-Resolution Thermospheric Imaging (MIGHTI) on the Ionospheric Connection Explorer (ICON) spacecraft, and four ground-based specular meteor radars (SMRs). Using the green-line MIGHTI channel, we analyze 1158 coincidences between Dec 2019 and May 2020 in the altitude range from 94 to 104 km where the observations overlap. We find that the two datasets are strongly correlated ( = 0.82) with a small mean difference (4.5 m/s). Although this agreement is good, an analysis of known error sources (e.g., shot noise, calibration errors, and analysis assumptions) can only account for about a quarter of the disagreement variance. The unexplained variance is 27.8% of the total signal variance and could be caused by unknown errors. However, based on an analysis of the spatial and caused by temporal variability of the wind on scales ≲70 min. The observed magnitudes agree well during temporal averaging of the two measurement modalities, we suggest that some of the disagreement is likely the night, but during the day, MIGHTI observes 16%-25% faster winds than the SMRs. This remains unresolved but is similar in certain ways to previous SMR-satellite comparisons.

摘要

我们比较了电离层连接探测器(ICON)航天器上的迈克尔逊全球高分辨率热层成像干涉仪(MIGHTI)以及四个地面镜面流星雷达(SMR)所进行的同步热层中性风观测。利用MIGHTI的绿线通道,我们分析了2019年12月至2020年5月期间在94至104千米高度范围内观测重叠处的1158次同步观测。我们发现这两个数据集高度相关(相关系数 = 0.82),平均差异较小(4.5米/秒)。尽管这种一致性较好,但对已知误差源(如散粒噪声、校准误差和分析假设)的分析只能解释约四分之一的差异方差。未解释的方差占总信号方差的27.8%,可能是由未知误差导致的。然而,基于对尺度≲70分钟的风的空间和时间变异性的分析,在对两种测量方式进行时间平均时,观测到的量级吻合良好,我们认为部分差异可能出现在夜间,但在白天,MIGHTI观测到的风比SMR快16% - 25%。这一问题仍未解决,但在某些方面与之前的SMR - 卫星比较类似。

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