全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
大气科学  2002 

长江三角洲地区地表月平均反照率的卫星遥感研究

DOI: 10.3878/j.issn.1006-9895.2002.03.10

Keywords: 反照率,长江三角洲,遥感

Full-Text   Cite this paper   Add to My Lib

Abstract:

应用NOAA-AVHRR气象卫星数据,通过近似的大气校正模型及双向反射模型,结合地理信息系统,建立了动态的反照率反演模型,并反演计算了我国长江三角洲地区1995年3~12月的地表反照率.通过对诸多影响反照率变化因子的分析显示,遥感反演结果与地表覆盖特征及气候特征基本相符.

References

[1]  Suits, G., The calculation of directional reflectance of a vegetative canopy, Remote Sens Environ., 1972, 2, 117~125.
[2]  Norman, J. M. and J. M. Welles, Radiative transfer in an array of canopies, Agronomy Journal, 1983,75, 481 ~488.
[3]  Roujean, J. L., M, Latoy and P. Y. Deschamps, A bidirectional reflectance model of the Earth's surfacce for the correction of remote sensing data, J. Geophys. Res., 1992, 97, 20455~ 20468.
[4]  Walthall, C. L., J. M. Norman, J. M. Welles, G. Campbell and B. L. Blad, Simple equation to approximate the bidirectional reflectance from vegetation canopies and bare soil surfaces, Appl. Opt., 1985, 24(3), 383~ 387.
[5]  Nilson, T. and A. Kuusk, A reflectance model for the homogeneous plant canopy and its inversion, Remote Sens.Environ., 1989, 27, 157~ 167.
[6]  Pinty, B. and D. Ramond, A Simple bi-directional reflectance model for terrestrial surface, J. Geophys. Res.,1986, 91, 7803~ 7809.
[7]  Braaau, N. and J. V. Dave. Effect of aerosols on the transfer of solar energy through realistic model atmospheres,Part Ⅰ: Non absorbing aerosols, J. Appl. Meteor., 1973, 12. 601~619.
[8]  Saunders, R. W., The determination of broad band surface albedo from AVHRR visible and near-infrared ra-diances, Int. J. Remote. Sens., 1990, 11(1), 49~67.
[9]  Takashima, T. and Y. Takayama, Sea surface temperature measurement from space allowing for the effect of the stratospheric aerosols, Paper in Meteorologv and Geophysics, 1986, 37, 193 ~ 204.
[10]  Tricker, R. A. R., Introduction to Meterological Optics, New York: Elsevier, 1970.
[11]  Kilsby, C. G., The derivation of aerosol optical depth using AVHRR, Meteorological Research Flight Internal Note 37, England: Meteorological Office Library, Bracknell, 1987.
[12]  Aranuvachapun, S., The atmospheric optical depth spectrum determined from CZCS radiance, Int. J. Remote Sens., 1986, 7, 105~ 118.
[13]  Kattawar. G. W., A three-parameter analytic phase function for muliiple scattering calculation, J. Qnant,Spectro.sc Radiat. Transfer., 1975, 15, 839~ 849.
[14]  Gordon, H. R., D. K. Clark, J. W. Brown et al., Phytoplankton pigment concerntration in the Middle Atlanic Bight: comparison of ship determination and CZCS estimates, Appl. Opt., 1983,22. 20~ 36.
[15]  Price, J. C., An update on visible and near infrared calibration of satellite instruments. Remote Sens. Emiron.,1988,24, 419~ 422.
[16]  Neckel, H. and D. Labs, The solar radiation between 3300 and 12500A, Solar Physics.. 1984, 90, 205 ~ 258.
[17]  Temps, S. R. C. and K. L. Coulson, Solar radiation incident upon slopes of different orientations, Solar Energy.1977, 19, 179~ 184.
[18]  Moller, F., Strahlung in der unteren atmosphere, in: Handbuch der Physik, edited by S. Flagge, Berlin:Springer-Verlag, 1957.
[19]  Singh, S. M. and R. J. Saull, The effect of atmospheric on the interpretation of multitemporal AVHRR-derived vegetation index dynamics, Remote Sens. Environ., 1988, 25, 37~ 51.
[20]  Briegleb, B. and V. Ramanathan, Spectral and diurnal variations in clear sky planetary albedo, J. Appl. Meteor.,1982,21, 1160~ 1171.
[21]  陆渝蓉、高国栋著,物理气候学,北京:气象出版社,1987,158
[22]  徐兴奎、出国良、刘素红,应用遥感和GIS在地表特征模式中应用研究,遥感知识创新文集,北京:中国科学技术出版社,1999,85~94

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133