Development of a correlated-k distribution band model scheme for the radiative transfer program GOMETRAN/SCIATRAN for retrieval of atmospheric constituents from SCIAMACHY/ENVISAT-1 data

被引:10
作者
Buchwitz, M [1 ]
Rozanov, VV [1 ]
Burrows, JP [1 ]
机构
[1] Univ Bremen, Inst Remote Sensing IFE, D-28344 Bremen, Germany
来源
SATELLITE REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE III | 1998年 / 3495卷
关键词
radiative transfer; remote sensing; atmospheric chemistry; band model; k distribution; ESFT; SCIAMACHY; GOME; GOMETRAN;
D O I
10.1117/12.332681
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
GOMETRAN/SCLATRAN is a radiative transfer forward model developed for retrieval of atmospheric trace gas concentrations, aerosol and cloud parameters, and surface reflectance from the spectral radiance measurements of the SCIAMACHY/ENVISAT-1 and GOME/ERS-2 UV-Vis-NIR multi-channel spectrometers. For radiative transfer modeling of the line absorptions of O-2, H2O, CO2, CH4, N2O, and CO, two different schemes are under development: an accurate but rather slow line-by-line (LBL) implementation and a significantly faster correlated-k(c-k) distribution scheme. The c-k scheme has been matched to the resolution of the instruments, which is channel dependent. In spectral regions free of overlapping line-absorbers the multiply scattered radiance calculated with both, the LBL and the c-k scheme, agrees within 1-2%. Calculations in c-k mode are a factor of 25-800 faster depending on spectral interval. Good agreement has been found with the MODTRAN/DISORT radiative transfer model. First results concerning a new method are presented indicating that overlapping line-absorbers can be modeled with similar accuracy and speed as single line-absorbers.
引用
收藏
页码:171 / 186
页数:4
相关论文
共 31 条
  • [1] [Anonymous], 1981, PRACTICAL OPTIMISATI
  • [2] Actinic flux and photolysis frequency comparison computations using the model PHOTOGT
    Blindauer, C
    Rozanov, V
    Burrows, JP
    [J]. JOURNAL OF ATMOSPHERIC CHEMISTRY, 1996, 24 (01) : 1 - 21
  • [3] BOVENSMANN H, 1998, IN PRESS J ATMOS SCI
  • [4] SCIAMACHY - SCANNING IMAGING ABSORPTION SPECTROMETER FOR ATMOSPHERIC CHARTOGRAPHY
    BURROWS, JP
    HOLZLE, E
    GOEDE, APH
    VISSER, H
    FRICKE, W
    [J]. ACTA ASTRONAUTICA, 1995, 35 (07) : 445 - 451
  • [5] BURROWS JP, 1998, IN PRESS J ATMOS SCI
  • [6] Evaluation of the pseudo-spherical approximation for backscattered ultraviolet radiances and ozone retrieval
    Caudill, TR
    Flittner, DE
    Herman, BM
    Torres, O
    McPeters, RD
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1997, 102 (D3) : 3881 - 3890
  • [7] A NEW SPHERICAL MODEL FOR COMPUTING THE RADIATION-FIELD AVAILABLE FOR PHOTOLYSIS AND HEATING AT TWILIGHT
    DAHLBACK, A
    STAMNES, K
    [J]. PLANETARY AND SPACE SCIENCE, 1991, 39 (05) : 671 - 683
  • [8] Parametrization of transmittance for application in atmospheric optics
    Firsov, KM
    Mitsel, AA
    Ponomarev, YN
    Ptashnik, IV
    [J]. JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 1998, 59 (3-5) : 203 - 213
  • [9] THE CORRELATED-K METHOD FOR RADIATION CALCULATIONS IN NONHOMOGENEOUS ATMOSPHERES
    GOODY, R
    WEST, R
    CHEN, L
    CRISP, D
    [J]. JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 1989, 42 (06) : 539 - 550
  • [10] GOODY RM, 1989, ATMOSPHERIC RAD THER