利用法布里-佩罗干涉仪评估不同激光波长在风力测量中的有效性

IF 0.8 4区 化学 Q4 SPECTROSCOPY
Zhiyuan Fang, Shu Li, Yuanyuan Deng, Hao Yang, Zhiqiang Kuang, Xiang Xu
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引用次数: 0

摘要

对流层和平流层的大气风场对人类的生产和生活有着显著的影响。激光雷达分辨率高、灵敏度高,是探测该区域大气的最有效手段之一。为了满足这一需求,我们利用激光雷达技术分析了不同波长的气溶胶和分子反向散射信号。结果表明,在晴朗天气条件下,355 纳米激光器在探测大气层方面具有优势;在严重雾霾天气条件下,1064 纳米激光器的探测性能优越;而 532 纳米激光器的探测性能则介于其他激光器之间。使用 532-nm 激光模拟了系统的探测性能,在晴朗天气条件下,最大探测高度达到 43 千米,在污染天气条件下,最大探测高度达到 28 千米。这一分析为今后在所有天气条件下获取对流层和平流层的大气风场提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the Effectiveness of Different Laser Wavelengths for Wind Measurements Using a Fabry–Pérot Interferometer

The atmospheric wind field in the troposphere and stratosphere notably impacts human production and life. The lidar is one of the most effective means of detecting the atmosphere in this region due to its high resolution and sensitivity. To meet this need, aerosol and molecular backscattering signals of different wavelengths were analyzed via lidar technology. The results showed that the 355-nm laser provides an advantage in detecting the atmosphere under clear weather conditions, and the 1064-nm laser achieves superior detection performance under severe haze weather conditions, while the detection performance of the 532-nm laser varies between those of the other lasers. The detection performance of the system was simulated using a 532-nm laser, and the maximum detection height reached 43 km under clear weather conditions and 28 km under polluted weather conditions. This analysis provides support for obtaining atmospheric wind fields in the troposphere and stratosphere under all weather conditions in the future.

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来源期刊
CiteScore
1.30
自引率
14.30%
发文量
145
审稿时长
2.5 months
期刊介绍: Journal of Applied Spectroscopy reports on many key applications of spectroscopy in chemistry, physics, metallurgy, and biology. An increasing number of papers focus on the theory of lasers, as well as the tremendous potential for the practical applications of lasers in numerous fields and industries.
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