大气与环境光学学报 ›› 2024, Vol. 19 ›› Issue (4): 418-428.doi: 0.3969/j.issn.1673-6141.2024.04.003

• 大气光学 • 上一篇    下一篇

基于光学工程应用的全国陆地主要地区水平消光系数情况初步分析

吕炜煜 , 陈德鹏 , 胡豪 *, 张玉坤 , 卿泽旭 , 李岩 , 刘李辉 , 姚飞 , 陈佩雷 , 郭欣   

  1. 中国电子科技集团第二十七研究所, 河南 郑州 450047
  • 收稿日期:2021-10-26 修回日期:2021-12-05 出版日期:2024-07-28 发布日期:2024-07-30
  • 通讯作者: E-mail: Huhao27@163.com E-mail:huhao27@163.com
  • 作者简介:吕炜煜 (1974- ), 江苏南通人, 博士, 高级工程师, 主要从事激光和红外辐射传输应用研究。E-mail: wylv_0551@163.com
  • 基金资助:
    国防科研项目 (TJ20203C030119)

Preliminary analysis on horizontal extinction coefficient in the main land areas of China based on optical engineering application

LYU Weiyu , CHEN Depeng , HU Hao *, ZHANG Yukun , QING Zexu , LI Yan , LIU Lihui , YAO Fei , CHEN Peilei , GUO Xin   

  1. The 27Th Institution , China Electronic Corporation, Zhengzhou 450047, China )
  • Received:2021-10-26 Revised:2021-12-05 Online:2024-07-28 Published:2024-07-30

摘要: 从光学工程应用的角度对全国陆地主要地区水平消光系数情况进行了研究。首先从总体平均情况、冷暖半 年、昼夜变化等三个方面对相关历史数据进行了分析。分析结果表明: 总体上水平消光系数的呈现北低南高的分布; 冷暖半年水平消光系数分布略有差别, 暖半年水平消光系数低于冷半年的站点区域占较大面积; 昼夜变化中白天水平 消光系数要比夜间的消光系数偏小。在基于总体平均情况、冷暖半年、昼夜变化讨论基础上进而讨论了全国陆地主要 地区水平消光系数的区域分级情况, 发现适合光学工程应用的1 级区主要分布在我国北方及西部地区。研究结果有 助于了解全国适于开展光学工程应用的区域, 并可为进一步研究水平消光系数对光学工程应用产生的定量影响提供 参考。

关键词: 光学工程, 能见度, 水平消光系数, 冷半年, 暖半年, 昼夜变化

Abstract: The available extinction coefficient of the main land areas in China are studied from the perspective of optical engineering application. Firsty, the relevant historical data are analyzed from three aspects: overall average situation, half-year change of warm and cold weather, and diurnal change. Results show that the overall distribution of horizontal extinction coefficient is basically low in the north and high in the south. There are slight differences in the distribution of horizontal extinction coefficient between the cold and warm half year, with a larger area having a lower horizontal extinction coefficient in the warm half year than in the cold half year. As for the diurnal change, it is shown that the horizontal extinction coefficient during the daytime is lower than that at night. Furthermore, the regional classification of horizontal extinction coefficient in China is discussed on the basis of overall average, half-year change and dirunal variation, and it is found that the first level areas suitable for optical engineering application are mainly in the north and west of China. The result is helpful for understanding the regions suitable for optical engineering applications in whole country, and can provide support for further research on the quantitative impacts of horizontal extinction coefficient on optical engineering applications.

Key words: optical engineering, visibility, horizontal extinction coefficient, cold half year, warm half year, diurnal variation

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