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基于径向功率谱的风廓线雷达错误风数据处理
引用本文:陈浩君,黄兴友,孙婧,孙娟,尹春光,郑杰,王勤典,薛昊.基于径向功率谱的风廓线雷达错误风数据处理[J].应用气象学报,2015,26(4):460-471.
作者姓名:陈浩君  黄兴友  孙婧  孙娟  尹春光  郑杰  王勤典  薛昊
作者单位:1.南京信息工程大学,南京 210044
基金项目:上海市气象局科技开发项目(QM201507),上海气象局研究性项目(YJ201403)
摘    要:选取上海市世博园区站、金山站和嘉定F1赛车场站3个风廓线雷达站2012年3月7日凌晨一次降水过程生成的错误水平风场数据,通过对比该时段高、低模式扫描实时径向功率谱数据,指出在降水初期风廓线雷达软件质量控制出现错误的原因,并重新识别错误时段的功率谱,反演水平风场数据。分析表明:在降水初期由于风廓线雷达各波束探测的数据在空间上不一致,易导致雷达软件采用的质量控制算法并不能全部识别和消除降水对数据的干扰,从而出现偏差。基于风廓线雷达高时空分辨率径向功率谱数据的分析处理方法可有效验证雷达软件质量控制算法,且经过该方法反演后的水平风场更为合理。

关 键 词:径向功率谱    高、低模式扫描    水平风羽数据    质量控制
收稿时间:2014-11-14
修稿时间:4/1/2015 12:00:00 AM

The Error Wind Data Processing Based on Radial Power Spectrum of Wind Profiler Radar
Chen Haojun,Huang Xingyou,Sun Jing,Sun Juan,Yin Chunguang,Zheng Jie,Wang Qindian and Xue Hao.The Error Wind Data Processing Based on Radial Power Spectrum of Wind Profiler Radar[J].Quarterly Journal of Applied Meteorology,2015,26(4):460-471.
Authors:Chen Haojun  Huang Xingyou  Sun Jing  Sun Juan  Yin Chunguang  Zheng Jie  Wang Qindian and Xue Hao
Affiliation:1.Nanjing University of Information Science & Technology, Nanjing 210044)2.Shanghai Meteorological Information and Technical Support Center, Shanghai 200030)3.Shanghai Typhoon Institute of CMA, Shanghai 200030)
Abstract:Wind profiler radar is a new generation of radio sounding wind detecting system, which takes atmospheric turbulence backscattered signal as its main detecting object. It is the most direct source to obtain high altitude wind data in addition to the sounding data. In recent years, researches on the wind profiler radar detection are widely carried out during precipitation periods. It shows that the signal to noise ratio (SNR), the refractive index structure constant (CN2), horizontal speed, vertical wind speed and other information provided by the wind profiler could help to know the precipitation process, and clearly reflect the start time and the intensity of precipitation. The real time high resolution radial power spectrum data provided by wind profiler radar, can not only be used to extract the wind data, but also estimate the height range of freezing layer and verify quality control performance of the wind profiler radar software. The application of wind profiler radar data is no longer limit to only study the clear air atmosphere.However, during a precipitation process, especially at the beginning of the precipitation, uneven rainfall leads to inconsistent beams in the space, and the quality control (QC) algorithm of the software used in radar cannot identify and eliminate all interference made by precipitation, leading to horizontal wind data errors. In order to improve data quality, the radial wind power spectrum data of wind profiler radar is analyzed to find out QC problems and identify and remove erroneous data. First, under the premise of fully knowing the principle of software QC method, the location and cause of software QC judgment errors are identified by progressively comparing the radial power spectrum data of the high and low mode. And then, the radial power spectrum data in problem period is reprocessed. Finally, the wind data is recalculated. Case analysis shows that the error wind data processing based on radial power spectrum of wind profiler radar could improve software QC methods and improve the quality of wind profiler radar data.
Keywords:radial power spectrum  high and low mode scan  horizontal wind data  quality control
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