• Acta Optica Sinica
  • Vol. 32, Issue 8, 801004 (2012)
Cao Ya′nan1、2、*, Wei Heli1, Chen Xiuhong1, and Gong Chunwen1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/aos201232.0801004 Cite this Article Set citation alerts
    Cao Ya′nan, Wei Heli, Chen Xiuhong, Gong Chunwen. Simulations of the Reflectance of Cirrus Clouds in Shortwave Spectral Region[J]. Acta Optica Sinica, 2012, 32(8): 801004 Copy Citation Text show less
    References

    [1] J. D. Spinhirne, W. D. Hart, D. L. Hlavka. Cirrus infrared parameters and shortwave reflectance relations from observations[J]. J. Atmos. Sci., 1996, 53(10): 1438~1458

    [2] Liu Chunlei, Yao Keya. Cirrus cloud ice particle density variation effect on the visible radiation transfer[J]. Scientia Atmospherica Sinica, 1997, 21(5): 599~606

    [3] Tong Yanchao, Liu Changsheng. Cirrus cloud ice particle density variation effect on the visible radiation transfer[J]. Scientia Atmospherica Sinica, 1998, 22(1): 32~38

    [4] S. Kinne, K. N. Liou. The effects of the nonsphericity and size distribution of ice crystals on the radiative properties of cirrus clouds[J ]. J. Atmospheric Research, 1989, 24(1-4): 273~284

    [5] Li Juan, Mao Jietai. Simulation about influences of ice property changes on cirrus radiative properties[J]. Meteorological Monthly, 2006, 32(2): 9~13

    [6] Zhao Yanjie, Wei Heli. Chen Xiuxong et al.. Infrared radiative properties of cirrus clouds in shortwave spectral region[J]. High Power Laser and Particle Beams, 2007, 19(9): 1449~1453

    [7] Wei Heli, Chen Xiuhong, Rao Ruizhong et al.. A moderate-spectral-resolution transmittance model based on fitting the line-by-line calculation[J]. Opt. Express, 2007, 15(13): 8360~8370

    [8] Wei Heli, Chen Xiuhong, Rao Ruizhong. Introduction to the combined atmospheric radiative transfer software CART[J]. J. Atmospheric & Environmental Optics, 2007, 2(6): 446~450

    [9] Chen Xiuhong. Development of the Combined Atmospheric Radiative Transfer Software[D]. Hefei:Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, 2010. 148~149

    [10] B. C. Gao, P. Yang, W. Han et al.. An algorithm using visible and 1.38-μm channels to retrieve cirrus cloud reflectances from aircraft and satellite data[J]. IEEE Trans. Geosci. Remote, 2002, 40(8): 1659~1668

    [11] K. Meyer, P. Yang, B. C. Gao. Optical thickness of tropical cirrus clouds derived from the MODIS 0.66 and 1.375-μm channels[J]. IEEE Trans. Geosci. Remote, 2004, 42(4): 833~841

    [12] T. Nakajima, M. D. King. Determination of the optical thickness and effective particle radius of clouds from reflected solar radiation measurements. Part I: theory[J]. J. Atmos. & Environm. Opt., 1990, 47(15): 1878~1893

    CLP Journals

    [1] Cao Yanan, Wei Heli, Bian Jian. Study of Atmospheric Radiative Properties at Infrared Bands under Ice Clouds Based on Atmospheric Infrared Sounder and Moderate Resolution Imaging Spectroradiometer Observation[J]. Acta Optica Sinica, 2014, 34(9): 901003

    [2] CAO Ya-nan, WEI He-li, XU Qing-shan. Statistics Analysis of Cirrus Properties in Beijing Region Based on MODIS Cloud Products[J]. Journal of Atmospheric and Environmental Optics, 2013, 8(4): 271

    Cao Ya′nan, Wei Heli, Chen Xiuhong, Gong Chunwen. Simulations of the Reflectance of Cirrus Clouds in Shortwave Spectral Region[J]. Acta Optica Sinica, 2012, 32(8): 801004
    Download Citation