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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Estimation of Mesospheric Densities at Low Latitudes Using the Kunming Meteor Radar Together With SABER Temperatures
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Estimation of Mesospheric Densities at Low Latitudes Using the Kunming Meteor Radar Together With SABER Temperatures

机译:用昆明陨石雷达估计低纬度的密度密度与昆迈流星雷达与刀架温度

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摘要

Neutral mesospheric densities at a low latitude have been derived during April 2011 to December 2014 using data from the Kunming meteor radar in China (25.6°N, 103.8°E). The daily mean density at 90 km was estimated using the ambipolar diffusion coefficients from the meteor radar and temperatures from the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument. The seasonal variations of the meteor radar-derived density are consistent with the density from the Mass Spectrometer and Incoherent Scatter (MSIS) model, show a dominant annual variation, with a maximum during winter, and a minimum during summer. A simple linear model was used to separate the effects of atmospheric density and the meteor velocity on the meteor radar peak detection height. We find that a 1 km/s difference in the vertical meteor velocity yields a change of approximately 0.42 km in peak height. The strong correlation between the meteor radar density and the velocity-corrected peak height indicates that the meteor radar density estimates accurately reflect changes in neutral atmospheric density and that meteor peak detection heights, when adjusted for meteoroid velocity, can serve as a convenient tool for measuring density variations around the mesopause. A comparison of the ambipolar diffusion coefficient and peak height observed simultaneously by two co-located meteor radars indicates that the relative errors of the daily mean ambipolar diffusion coefficient and peak height should be less than 5% and 6%, respectively, and that the absolute error of the peak height is less than 0.2 km.
机译:在2011年4月至2014年4月期间,利用来自中国昆明雷达雷达的数据(25.6°N,103.8°E)的数据,已经获得了低纬度的中性伴奏性密度。使用宽带发射辐射辐射(Saber)仪器估计来自流动雷达的水间雷达和温度的温度雷达和温度估计每日平均密度。流星雷达衍生密度的季节变化与来自质谱仪和不连贯散射(MSIS)模型的密度一致,显示出占主导​​地位的年度变化,冬季最多,夏季最低。使用简单的线性模型用于分离大气密度和流速对流星雷达峰值检测高度的影响。我们发现,垂直流星速度的1公里/秒的差异产生峰值高度约0.42千米。流星雷达密度与速度校正峰值高度之间的强关系表示,流星雷达密度估计精确地反映中性大气密度的变化,并且在对菱形速度调节时的流动峰值检测高度可以作为测量的方便工具中断周围的密度变化。两个共同定位的流星雷达同时观察到的非偏极扩散系数和峰高的比较表明,每日平均分散系数和峰值高度的相对误差应分别小于5%和6%,并且绝对值峰值高度的误差小于0.2公里。

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  • 作者单位

    CAS Key Laboratory of Geospace Environment Department of Geophysics and Planetary Sciences University of Science and Technology of China Hefei China;

    CAS Key Laboratory of Geospace Environment Department of Geophysics and Planetary Sciences University of Science and Technology of China Hefei China;

    School of Physical Sciences University of Adelaide Adelaide South Australia Australia;

    School of Physical Sciences University of Adelaide Adelaide South Australia Australia;

    National Key Laboratory of Electromagnetic Environment China Research Institute of Radiowave Propagation Qingdao China;

    CAS Key Laboratory of Geospace Environment Department of Geophysics and Planetary Sciences University of Science and Technology of China Hefei China;

    CAS Key Laboratory of Geospace Environment Department of Geophysics and Planetary Sciences University of Science and Technology of China Hefei China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 空间物理 ;
  • 关键词

    Kunming; daily; meteor;

    机译:Kunming;daily;meteor;

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