• Infrared and Laser Engineering
  • Vol. 47, Issue 7, 717006 (2018)
Ye Song1、2, Gan Yongying1、2, Xiong Wei3, Wang Xinqiang1、2, Wang Jiejun1、2, Zhang Wentao1、2, and Wang Fangyuan1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/irla201847.0717006 Cite this Article
    Ye Song, Gan Yongying, Xiong Wei, Wang Xinqiang, Wang Jiejun, Zhang Wentao, Wang Fangyuan. Sensitivity analysis of carbon dioxide based on SCIATRAN[J]. Infrared and Laser Engineering, 2018, 47(7): 717006 Copy Citation Text show less
    References

    [1] Shi Hailing, Xiong Wei, Luo Haiyan, et al. Novel hyper-spectral technology for atmospheric carbon dioxide detection[J]. Opto-Electronic Engineering, 2013, 40(8): 36-41. (in Chinese)

    [2] Li Y, Zhang C, Liu D, et al. CO2 retrieval model and analysis in short-wave infrared spectrum[J]. Optik- International Journal for Light and Electron Optics, 2016, 127(10): 4422-4425.

    [3] Eichmann K U, Leventiduo E, Heue K P, et al. Tropical upper tropospheric ozone volume mixing ratios retrieved with the cloud slicing method using SCIATRAN/GOME2 data: methodology, ozone sonde comparisons, and verification of the new S-5P operational processor[C]// ESA Living Planet Symposium, 2016.

    [4] Li Y, Zhang C, Wang D, et al. Comparison between the ESFT method and LBL method of CO2 retrieval for high-resolution satellite[C]//The International Conference on Photonics and Optical Engineering and the West China Photonics Conference. International Society for Optics and Photonics, 2015.

    [5] Liu D, Zhang C, Li Y, et al. The influence of temperature on the simulated high resolution spectra of enhanced SCIATRAN model in near infrared band[J]. Optik- International Journal for Light and Electron Optics, 2016, 127(18): 7292-7299.

    [6] Xu Mengchun, Xu Qingshan. Effect of aerosol particle characteristic and vertical distribution on radiation[J]. Infrared and Laser Engineering, 2016, 45(2): 0211002. (in Chinese)

    [7] Karsisto P, Fortelius C, Demuzere M, et al. Seasonal surface urban energy balance and wintertime stability simulated using three land-surface models in the high-latitude city Helsinki[J]. Quarterly Journal of the Royal Meteorological Society, 2016, 142(694): 401-417.

    [8] Rozanov A, Rozanov V, Buchwitz M, et al. SCIATRAN 2.0 -A new radiative transfer model for geophysical applications in the 175-2 400 nm spectral region[J]. Advances in Space Research, 2005, 36(5): 1015-1019.

    [9] Rozanov V V, Rozanov A V, Kokhanovsky A A, et al. Radiative transfer through terrestrial atmosphere and ocean: Software package SCIATRAN[J]. Journal of Quantitative Spectroscopy & Radiative Transfer, 2014, 133(2): 13-71.

    [10] Ye Hanhan, Wang Xianhua, Wu Jun, et al. Sensitivity of retrieval of atmospheric column carbon dioxide with high accuracy[J]. Journal of Atmospheric and Environmental Optics, 2011, 6(3): 208-214. (in Chinese)

    [11] Wu Jun. Research on radiative transfer characteristics and retrieval methods for atmospheric CO2 monitoring [D]. Hefei: University of Science and Technology of China, 2013. (in Chinese)

    [12] Wu Jun, Wang Xianhua, Fang Yonghua, et al. Ability analysis of spatial heterodyne spectrometer in atmospheric CO2 detection[J]. Acta Optica Sinica, 2011, 31(1): 0101001. (in Chinese)

    Ye Song, Gan Yongying, Xiong Wei, Wang Xinqiang, Wang Jiejun, Zhang Wentao, Wang Fangyuan. Sensitivity analysis of carbon dioxide based on SCIATRAN[J]. Infrared and Laser Engineering, 2018, 47(7): 717006
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