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Nonlinear Retrieval of Atmospheric Ozone Profile from Solar Backscatter Ultraviolet Measurements:Theory and Simulation
作者姓名:Li Jun  Lu Daren
作者单位:Li Jun and Lu Daren LAGEO,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029
摘    要:NonlinearRetrievalofAtmosphericOzoneProfilefromSolarBackscaterUltravioletMeasurements:TheoryandSimulation①LiJun(李俊)andLuDaren...

收稿时间:30 October 1996

Nonlinear retrieval of atmospheric ozone profile from solar backscatter ultraviolet measurements: Theory and simulation
Li Jun,Lu Daren.Nonlinear Retrieval of Atmospheric Ozone Profile from Solar Backscatter Ultraviolet Measurements:Theory and Simulation[J].Advances in Atmospheric Sciences,1997,14(4):473-480.
Authors:Li Jun  Lu Daren
Institution:LAGEO, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029,LAGEO, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029
Abstract:The Solar Backscatter Ultraviolet and Total Ozone Mapping Spectrometer (SBUV/TOMS) instrument has provided useful data for deducing ozone vertical profiles and total ozone amounts. Although, data processing tech-niques for solving the inverse problem have been discussed, the retrieval accuracy still needs to be improved by devel-oping new methodology. In this paper the Newtonian non-linear iteration method was applied to the Ultraviolet radiative transfer equation to retrieve the atmospheric ozone vertical distribution. In order to reduce the number of unknowns for retrieval and make the solution procedure more stable, the atmospheric ozone profile is represented by its Empirical Orthogonal Functions (EOFs) which can be derived from a set of global ozone profiles such as TIGR. Ozone retrievals based on simulated SBUV albedo measurements from 6 model atmospheres show the potential ap-plication of this method in operational processing of SBUV real observed measurements which will fly on the satellite such as NOAA-K.
Keywords:Retrieval  SBUV
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