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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A comparison of mesospheric and low-thermospheric winds measured by Fabry-Perot interferometer and meteor radar over central China
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A comparison of mesospheric and low-thermospheric winds measured by Fabry-Perot interferometer and meteor radar over central China

机译:法布里-珀罗干涉仪和流星雷达在华中地区测量的中层和低层大气风的比较

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摘要

Wind data observed by a Fabry-Perot interferometer (FPI) and a meteor radar (MR) deployed in two stations, which are 430 km apart in ground distance, are used to study wind climatology in mesosphere/lower thermosphere over central China and compare between the measurements. A general morphologic similarity of the FPI winds and MR winds is identified with 4 year data since November 2011. At 87 km, the wind vector plots show that the FPI and MR winds agree with each other very well in all months. The zonal winds of both instruments have an apparent semiannual variation with a maximal strength of -20 m/s at around 18:00 UT in equinoctial months, and the meridional winds from both instruments have an apparent annual variation with a maximal strength of -40 m/s at around 15:00 UT in summer months. The correlation coefficients between the measurements of the two instruments are about 0.95 for meridional wind and 0.90 for zonal wind. At 97 km, the wind vector plots show that FPI and MR winds agree with each other from May to October and are obviously different in the rest months. There are very weak semiannual variations at around 18:00 UT for both zonal winds and pronounced annual variation at around 13:00 UT for both meridional winds. The correlation coefficients between the FPI and MR winds are 0.73 for zonal wind and 0.86 for meridional wind, which are overall smaller than that at 87 km. A Gaussian distribution of airglow profile is used to investigate the deviations associated with peak height and full width at half maximum (FWHM) of airglow layer. It is found that the variation of peak height could lead to about 20% variation of correlation coefficients between measurements at the height of 87 km and about 14.8% at the height of 97 km on average. The variation of FWHM could lead to a correlation coefficient variation of about 2.4% and 3.5% at the height of 87 km and 97 km, respectively. Some other reasons, such as the influence of geomagnetic field on meteor trail and the propagation of gravity waves, could also contribute to these differences between measurements.
机译:用法布里-珀罗干涉仪(FPI)和流星雷达(MR)观测到的风数据在两个站之间相距地面距离430 km,用于研究中国中部中低层热层的风气候,并进行比较测量。自2011年11月以来的4年数据确定了FPI风和MR风的一般形态相似性。在87 km处,风向标绘表明FPI风和MR风在所有月份中都非常吻合。两种仪器的纬向风都有明显的半年变化,在等月月份的18:00 UT时最大强度为-20 m / s,两种仪器的子午风都有明显的年变化,最大强度为-40夏季每月15:00 UT附近的m / s。两种仪器的测量之间的相关系数对于子午风大约为0.95,对于纬向风大约为0.90。在97 km处,风向矢量图显示FPI和MR风在5月至10月彼此一致,其余月份明显不同。纬向风在18:00 UT附近都有非常弱的半年变化,而子午风在13:00 UT附近都有明显的年变化。 FPI和MR风之间的相关系数,纬向风为0.73,子午风为0.86,总体上小于87 km。气辉轮廓的高斯分布用于研究与气辉层的峰高和半峰全宽(FWHM)相关的偏差。发现峰值高度的变化平均会导致在87 km高度处的测量之间的相关系数变化约20%,而在97 km高度处约14.8%的测量值之间。 FWHM的变化可能导致在87 km和97 km高度处的相关系数变化分别约为2.4%和3.5%。其他一些原因,例如地磁场对流星迹的影响和重力波的传播,也可能导致这些测量之间的差异。

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