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首页> 外文期刊>Atmospheric Measurement Techniques >Validation of wind measurements of two mesosphere–stratosphere–troposphere radars in northern Sweden and in Antarctica
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Validation of wind measurements of two mesosphere–stratosphere–troposphere radars in northern Sweden and in Antarctica

机译:瑞典北部和南极洲两种椎间圈 - 层间 - 对流层雷达风测量的验证

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Two atmospheric VHF radars: ESRAD (Esrange MST radar) located near Kiruna in the Swedish Arctic and MARA (Moveable Atmospheric Radar for Antarctica) at the Indian research station Maitri in Antarctica perform wind measurements in the troposphere and lower stratosphere on a regular basis. We compared horizontal winds at altitudes between about 0.5 and 14?km derived from the radar data using the full correlation analysis (FCA) technique with radiosonde observations and models. The comparison with 28 radiosondes launched from January 2017 to August 2019 showed that ESRAD underestimates the zonal and meridional winds by about 8?% and 25?%, respectively. This is likely caused by the receiver group arrangement used for the FCA together with a high level of non-white noise. A similar result was found when comparing with the regional numerical weather prediction model HARMONIE-AROME (Bengtsson et al., 2017) for the period September 2018–May 2019. The MARA winds were compared with winds from radiosondes for the period February–October 2014 (291 occasions). In contrast to ESRAD, there is no indication that MARA underestimates the winds compared to the sondes. The mean difference between the radar and radiosonde winds is close to zero for both zonal and meridional components. The comparison of MARA with the ECMWF ERA5 reanalysis for January–December 2019 reveals good agreement with the mean difference between 0.1 and ? 0.5?m/s depending on the component and season. The random errors in the wind components (standard deviations over all estimates in 1?h averages) are typically 2–3?m/s for both radars. Standard deviation of the differences between radars and sondes are 3–5?m/s.
机译:两种大气VHF雷达:Esrad(Esrange MST Radar)位于Kiruna附近,位于瑞典北极和南极洲可移动大气雷达),南极洲印度研究站Maitri定期在对流层和较低的平流层中进行风测量。我们将水平风与使用具有无线电探测器观察和模型的完全相关性分析(FCA)技术从雷达数据达到雷达数据的大约0.5和14 km之间。与2017年1月至2019年8月发布的28次无线电体的比较表明,ESRAD分别低估了Zonal和子午线的约8?%和25?%。这可能由用于FCA的接收器组布置以及高水平的非白噪声引起。与2019年9月期间的区域数值天气预报模型(Bengtsson等,2017)比较时发现了类似的结果。玛拉风与2014年2月至10月期间的无线电设计的风相比(291场)。与ESRAD相比,没有迹象表明玛拉与房颤相比低估了风。雷达和无线电探空仪之间的平均差异对于纬线和子午线组件接近零。 MARA与ECMWF ERA5 2019年1月 - 12月ERA5再分析的比较揭示了0.1之间平均差异的良好一致性差异0.5?m / s取决于组件和季节。风体组件中的随机误差(在1?H平均值的所有估计上的标准偏差)通常为两个雷达2-3μm/ s。雷达和钻石之间差异的标准偏差为3-5?m / s。

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