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用于平流层和中间层下部风场和温度测量的移动式瑞利多普勒激光雷达。

Mobile Rayleigh Doppler lidar for wind and temperature measurements in the stratosphere and lower mesosphere.

作者信息

Dou Xiankang, Han Yuli, Sun Dongsong, Xia Haiyun, Shu Zhifeng, Zhao Ruocan, Shangguan Mingjia, Guo Jie

出版信息

Opt Express. 2014 Aug 25;22 Suppl 5:A1203-21. doi: 10.1364/OE.22.0A1203.

DOI:10.1364/OE.22.0A1203
PMID:25322175
Abstract

A mobile Rayleigh Doppler lidar based on the molecular double-edge technique is developed for measuring wind velocity in the middle atmosphere up to 60 km. The lidar uses three lasers with a mean power of 17.5 W at 355 nm each and three 1 m diameter telescopes to receive the backscattered echo: one points to zenith for vertical wind component and temperature measurement; the two others pointing toward east and north are titled at 30° from the zenith for zonal and meridional wind component, respectively. The Doppler shift of the backscattered echo is measured by inter-comparing the signal detected through each of the double-edge channels of a triple Fabry-Perot interferometer (FPI) tuned to either side of the emitted laser line. The third channel of FPI is used for frequency locking and a locking accuracy of 1.8 MHz RMS (root-mean-square) at 355 nm over 2 hours is realized, corresponding to a systematic error of 0.32 m/s. In this paper, we present detailed technical evolutions on system calibration. To validate the performance of the lidar, comparison experiments was carried out in December 2013, which showed good agreement with radiosondes but notable biases with ECMWF (European Centre for Medium range Weather Forecasts) in the height range of overlapping data. Wind observation over one month performed in Delhi (37.371° N, 97.374° E), northwest of China, demonstrated the stability and robustness of the system.

摘要

一种基于分子双边技术的移动式瑞利多普勒激光雷达被研发出来,用于测量高达60千米的中层大气中的风速。该激光雷达使用三台平均功率为17.5瓦、波长为355纳米的激光器以及三台直径为1米的望远镜来接收后向散射回波:一台指向天顶用于测量垂直风分量和温度;另外两台分别指向东方和北方,与天顶成30°角,分别用于测量纬向风和经向风分量。通过比较由调谐到发射激光线两侧的三通道法布里-珀罗干涉仪(FPI)的每个双边通道检测到的信号,来测量后向散射回波的多普勒频移。FPI的第三个通道用于频率锁定,在355纳米波长下2小时内实现了1.8兆赫均方根(RMS)的锁定精度,对应0.32米/秒的系统误差。在本文中,我们介绍了系统校准方面的详细技术进展。为了验证激光雷达的性能,于2013年12月进行了对比实验,结果表明与无线电探空仪的数据吻合良好,但在重叠数据的高度范围内与欧洲中期天气预报中心(ECMWF)的数据存在显著偏差。在中国西北部德里(北纬37.371°,东经97.374°)进行的为期一个月的风观测,证明了该系统的稳定性和可靠性。

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