首页> 外文期刊>Applied Optics >Direct-detection Doppler wind measurements with a Cabannes-Mie lidar: B. Impact of aerosol variation on iodine vapor filter methods
【24h】

Direct-detection Doppler wind measurements with a Cabannes-Mie lidar: B. Impact of aerosol variation on iodine vapor filter methods

机译:使用Cabannes-Mie激光雷达直接检测多普勒测风:B.气溶胶变化对碘蒸气过滤方法的影响

获取原文
获取原文并翻译 | 示例

摘要

Atmospheric line-of-sight (LOS) wind measurement by means of incoherent Cabannes- Mie lidar with three frequency analyzers, two double-edge Fabry-Perot interferometers, one at 1064 nm (IR-FPI) and another at 355 nm (UV-FPI), as well as an iodine vapor filter (IVF) at 532 nm, utilizing either a single absorption edge, single edge (se-IVF), or both absorption edges, double edge (de-IVF), was considered in a companion paper [Appl. Opt. 46, 4434 (2007)], assuming known atmospheric temperature and aerosol mixing ratio, R_b. The effects of temperature and aerosol variations on the uncertainty of LOS wind measurements are investigated and it is found that while the effect of temperature variation is small, the variation in R_b can cause significant errors in wind measurements with IVF systems. Thus the means to incorporate a credible determination of R_b into the wind measurement are presented as well as an assessment of the impact on wind measurement uncertainty. Unlike with IVF methods, researchers can take advantage of design flexibility with FPI methods to desensitize either molecular scattering for IR-FPI or aerosol scattering for UV-FPI. The additional wind measurement uncertainty caused by R_b variation with FPI methods is thus negligible for these configurations. Assuming 100,000 photons from Cabannes scattering, and accounting for the R_b measurement incorporated into the IVF method in this paper, it is found that the lowest wind uncertainty at low wind speeds in aerosol-free air is still with UV-FPI, ~32% lower than with de-IVF. For 0.05 < R_b < 0.07, the LOS wind uncertainty is lowest with de-IVF, and for R_b > 0.07, the IR-FPI outperforms all other methods. In addition to LOS wind uncertainty comparison under high wind speed conditions, the need of an appropriate and readily available narrowband filter for operating the wind lidar at visible wavelengths under sunlit condition is discussed; with such a filter the degradation of LOS wind measurement attributable to clear sky background is estimated to be 5% or less for practical lidar systems.
机译:通过不相干的Cabannes-Mie激光雷达与三个频率分析仪,两个双边缘Fabry-Perot干涉仪,一个在1064 nm(IR-FPI)和另一个在355 nm(UV-UV)进行大气视线(LOS)风测量FPI),以及在532 nm处使用单个吸收边缘,单个边缘(se-IVF)或两个吸收边缘,双边缘(de-IVF)的532 nm碘蒸气滤光片(IVF),被视为同伴纸[Appl。选择。 46,4434(2007)],假设已知大气温度和气溶胶混合比R_b。研究了温度和气溶胶变化对LOS风测量不确定性的影响,发现尽管温度变化的影响很小,但R_b的变化会在IVF系统的风测量中引起重大误差。因此,提出了将R_b的可靠确定纳入风量测量的方法,以及对风量测量不确定性的影响的评估。与IVF方法不同,研究人员可以利用FPI方法的设计灵活性来使对IR-FPI的分子散射或对UV-FPI的气溶胶散射不敏感。因此,对于这些配置,由FPI方法的R_b变化引起的附加风测量不确定性可以忽略不计。假设来自Cabannes散射的100,000个光子,并考虑到IVF方法中包含的R_b测量,发现在无气溶胶的空气中,低风速下最低的风不确定性仍然是UV-FPI,低约32%比使用体外受精对于0.05 0.07,IR-FPI优于所有其他方法。除了在高风速条件下进行LOS风不确定性比较之外,还讨论了在阳光照射条件下在可见光波长下操作激光雷达的合适且容易获得的窄带滤波器的需求。使用这种过滤器,对于实际的激光雷达系统,由于晴朗的天空背景导致的LOS风测量值的降低估计为5%或更少。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号