临近空间大气水汽光谱特性仿真方法OA
Simulation method of atmospheric water vapor spectral properties in near space
临近空间具有独特的应用价值,加强对临近空间的开发与利用成为大国竞争的新焦点.建立完善的临近空间大气水汽正演模型并开展正演研究是临近空间大气水汽高精度探测的重要基础.利用 SCIATRAN 辐射传输模型,建立临近空间大气水汽的正演模型,模拟卫星探测仪在轨道高度 500 km 处对大气 20~100 km 高度范围的大气水汽进行临边观测,获得1 355~1 365 nm 波段的大气水汽吸收光谱.仿真结果表明,切线高度对大气水汽吸收光谱的辐亮度和吸收特征有显著影响.通过对比 SCIATRAN 与 MODTRAN 的仿真结果表明:在相同观测条件下,两辐射传输模型仿真得到的大气水汽吸收光谱数据的相关系数为 0.959 4,吸收线差值低于 0.2,验证了利用 SCIATRAN 辐射传输模型进行临近空间大气水汽仿真探测的正确性与可行性.此外,两辐射传输模型在不同分辨率下的仿真结果对比表明,SCIATRAN 辐射传输模型能更适合作为临近空间大气水汽高精度探测的正演模型.
Near space has unique application value,and strengthening the development and utilization has become a new focus of competition among major countries.Establishing a comprehensive atmospheric water vapor forward model for near space and con-ducting forward simulations are the important basis for high-precision detection of atmospheric water vapor.Using the SCIATRAN radiative transfer model,the study establishes an atmospheric water vapor forward model,simulates the satellite observations at an orbital altitude of 500 km to carry out limb observation of the atmospheric water vapor in the altitude range of 20-100 km in the at-mosphere,and obtains the atmospheric water vapor absorption spectra in the band of 1 355-1 365 nm.The simulation results show that the tangent altitude has a significant influence on the radiative and absorption characteristics of atmospheric water vapor spectra.Meanwhile,the comparison of the simulation results between SCIATRAN and MODTRAN shows that under the same observation conditions,the correlation coefficient of the atmospheric water vapor absorption spectral data obtained by the two radiative transfer models is 0.959 4,and the difference in the absorption line value is lower than 0.2,which verifies the correctness and feasibility of the simulation of atmospheric water vapor in near space by using the SCIATRAN radiative transfer model.In addition,the compari-son of the simulation results of the two radiative transfer models at different resolutions shows that the SCIATRAN radiative trans-fer model is more suitable as a forward model for the high-precision detection of atmospheric water vapor in near space.
刘双;叶松;王新强;李树;王方原
桂林电子科技大学 光电工程学院,广西 桂林 541004||桂林电子科技大学 广西光电信息处理重点实验室,广西 桂林 541004桂林电子科技大学 光电工程学院,广西 桂林 541004||桂林电子科技大学 广西光电信息处理重点实验室,广西 桂林 541004桂林电子科技大学 光电工程学院,广西 桂林 541004||桂林电子科技大学 广西光电信息处理重点实验室,广西 桂林 541004桂林电子科技大学 光电工程学院,广西 桂林 541004||桂林电子科技大学 广西光电信息处理重点实验室,广西 桂林 541004桂林电子科技大学 光电工程学院,广西 桂林 541004||桂林电子科技大学 广西光电信息处理重点实验室,广西 桂林 541004
数理科学
临近空间大气水汽临边观测SCIATRAN模型正演模型
near spaceatmospheric water vaporlimb observationSCIATRAN radiative transfer modelforward model
《桂林电子科技大学学报》 2026 (2)
128-133,6
国家重点研发计划(2022YFB3901800,2022YFB3901803)
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