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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Middle-atmospheric zonal and meridional wind profiles from polar, tropical and midlatitudes with the ground-based microwave Doppler wind radiometer WIRA
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Middle-atmospheric zonal and meridional wind profiles from polar, tropical and midlatitudes with the ground-based microwave Doppler wind radiometer WIRA

机译:来自极地,热带和中层的中大气的区域和子午线与地面微波多普勒风辐射计Wira

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WIRA is a ground-based microwave Doppler spectroradiometer specifically designed for the measurement of profiles of horizontal wind in the upper stratosphere and lower mesosphere region where no other continuously running measurement technique exists. A proof of principle has been delivered in a previous publication. A technical upgrade including a new high-frequency amplifier and sideband filter has improved the signal to noise ratio by a factor of 2.4. Since this upgrade the full horizontal wind field comprising zonal and meridional wind profiles is continuously measured. A completely new retrieval based on optimal estimation has been set up. Its characteristics are detailed in the present paper. Since the start of the routine operation of the first prototype in September 2010, WIRA has been measuring at four different locations at polar, mid- and tropical latitudes (67°22' N/26°38' E, 46°57' N/7°26' E, 43°56' N/5°43' E and 21°04' S/55°23' E) for time periods between 5.5 and 11 months. The data presented in this paper are daily average wind profiles with typical uncertainties and resolutions of 10 to 20 m s1 and 10 to 16 km, respectively. A comparison between the data series from WIRA and European Centre for Medium-Range Weather Forecasts (ECMWF) model data revealed agreement within 10% in the stratospheric zonal wind. The meridional wind profiles agree within their error bars over the entire sensitive altitude range of WIRA. However, significant differences in the mesospheric zonal wind speed of up to 50% have been found.
机译:Wia是一个基于地面的微波多普勒光谱辐射仪,专门用于测量上层流层和下部椎间圈区域中水平风的曲线,其中不存在其他连续运行的测量技术。原则证明已在以前的出版物中交付。包括新的高频放大器和边带滤波器的技术升级将信号提高到噪声比率为2.4的噪声比。由于该升级,连续测量包括纬线和子型风廓的完整水平风电场。已经建立了基于最优估计的全新检索。其特征在本文中详述。自2010年9月的第一个原型的日常操作开始以来,WIRA在极性,中间和热带纬度的四个不同位置(67°22'N / 26°38'e,46°57'n / 7°26'e,43°56'n / 5°43'e和21°04's / 55°23'e),时间段5.5和11个月。本文提出的数据分别为每日平均风谱,分别具有10至20米S1和10至16公里的典型不确定性和分辨率。来自WIRA和欧洲中等天气预报中心(ECMWF)模型数据之间的数据系列的比较显示了平流层区域风中的10%内的协议。子午线风格在其误差条内同意WIRA的整个敏感高度范围。然而,已经发现了高达50%的态化区域风速的显着差异。

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