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大气科学  2003 

GMS卫星遥感中国地区气溶胶光学厚度

DOI: 10.3878/j.issn.1006-9895.2003.01.03

Keywords: GMS卫星,太阳光度计,遥感,气溶胶

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Abstract:

讨论了利用GMS卫星遥感湖面上空气溶胶光学厚度的方法,根据在5个湖面附近与多波段光度计遥感结果的比较,对卫星遥感的方法和结果进行了检验,然后利用该方法遥感了中国大陆25个湖面上空气溶胶光学厚度.结果显示,利用卫星反演湖面光学厚度可以提供大陆上空气溶胶的信息,是研究大陆上空气溶胶光学厚度一个可行的方法.

References

[1]  尹宏,大气辐射学基础,北京:气象出版社,1993, 72~81.
[2]  张军华、王美华、毛节泰,多波段光度计遥感气溶胶误差分析及订正,大气科学,2000,24(6),855~859.
[3]  杨景梅、邱金桓,我国可降水量同地面水汽压关系的经验表达式,大气科学,1996,20(5),620~626.
[4]  Heuklon, T. K. V., Estimating atmospheric ozone for solar radiation models, Solar Energy, 1979, 22, 63~68.
[5]  Ignatov, A., L. Stowe, S. Sakerin, G. Korotaev, Validation of the NOAA/NESDIS satellite aerosol product over the North Atlantic in 1989, J. Geophys. Res., 1995, 100, 5123~5132.
[6]  Vermote E., D. Tanré, J. L. Deuzé, M. Herman, and J. J. Morcrette, Second simulation of the satellite signal in the solar spectrum, 6S User Guide Version 2,NASA Godard Space Flight Cent., Greenbelt, MD.,1997.
[7]  Kaufman, Y.J., A. Karnieli, D. Tanre, Detection of dust over deserts using satellite data in the solar wavelengths, IEEE Trans. on Geosci. and Remote Sens. , 2000, 38(1), 525~531.
[8]  Shine, K. P., and P. M. F. Forster, The effect of human activity on radiative forcing of climate change: A review of recent developments, Global and Planetary Change, 1999, 20 (4), 205~225.
[9]  Rao, P. K. 等编,许健民等译,气象卫星--系统、资料及其在环境中的应用,北京:气象出版社, 1994,409~411.
[10]  Stowe, L. L., A. M. Ignatov, and R. R. Singh, Development, validation, and potential enhancements to the second-generation operational aerosol product at the National Environmental Satellite, Data, and Information Service of the National Oceanic and Atmospheric Administration, J. Geophys. Res., 1997, 102(D14), 16923~16934.
[11]  Husar, R. B., J. M. Prospero, and L. L. Stowe, Characterization of tropospheric aerosols over the oceans with the NOAA advanced very high resolution radiometer optical thickness operational product, 1997, J. Geophys. Res., 102(D14),16889~16909.
[12]  Kaufman, Y. J., D. Tanré, H. R. Gordon, T. Nakajima, J. Lenoble, R. Frouin, H. Grassl, B. M. Herman, M. D. King, and P. M. Teillet, Passive remote sensing of tropospheric aerosol and atmospheric correction for the aerosol effect, J. Geophys. Res., 1997, 102(D14), 16815~16830.
[13]  King, M. D., Y. J. Kaufman, D. Tanré, and T. Nakajima, Remote sensing of tropospheric aerosol from space: past, present, and future, Bull. Amer. Meteor. Soc., 1999, 80(11),2229~2259.
[14]  Moulin, C., F. Guillard, F. Dulac, and C. E. Lambert, Long-term daily monitoring of Saharan dust load over ocean using Meteosat ISCCP-B2 data 1. Methodology and preliminary results for 1983-1994 in the Mediterranean, J. Geophys. Res., 1997,102(D14), 16947~16958.
[15]  Moulin, C., F. Dulac, C. E. Lambert, P. Chazette, I. Jankowiak, B. Chatenet, and F. Lavenu, Long-term daily monitoring of Saharan dust load over ocean using Meteosat ISCCP-B2 data 2. Accuracy of the method and validation using Sun photometer measurements, J. Geophys. Res., 1997, 102(D14), 16959~16969.
[16]  Prins, E. M., and W. P. Menzel, Geostationary satellite detection of biomass burning in South America, Int. J. Remote Sens., 1992, 13, 2783~2799.
[17]  Prins, E. M., and W. P. Menzel, Trends in South American biomass burning detected with the GOES visible infrared spin scan radiometer atmospheric sounder from 1983-1991, J. Geophys. Res., 1994, 99, 16719~16735.
[18]  刘莉, GMS5卫星遥感气溶胶光学厚度的试验研究,北京大学硕士学位论文,1999,27~29.

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