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The MODIS Aerosol Algorithm, Products and ValidationThe MODerate resolution Imaging Spectroradiometer (MODIS) aboard both NASA's Terra and Aqua satellites is making near global daily observations of the earth in a wide spectral range. These measurements are used to derive spectral aerosol optical thickness and aerosol size parameters over both land and ocean. The aerosol products available over land include aerosol optical thickness at three visible wavelengths, a measure of the fraction of aerosol optical thickness attributed to the fine mode and several derived parameters including reflected spectral solar flux at top of atmosphere. Over ocean, the aerosol optical thickness is provided in seven wavelengths from 0.47 microns to 2.13 microns. In addition, quantitative aerosol size information includes effective radius of the aerosol and quantitative fraction of optical thickness attributed to the fine mode. Spectral aerosol flux, mass concentration and number of cloud condensation nuclei round out the list of available aerosol products over the ocean. The spectral optical thickness and effective radius of the aerosol over the ocean are validated by comparison with two years of AERONET data gleaned from 133 AERONET stations. 8000 MODIS aerosol retrievals colocated with AERONET measurements confirm that one-standard deviation of MODIS optical thickness retrievals fall within the predicted uncertainty of delta tauapproximately equal to plus or minus 0.03 plus or minus 0.05 tau over ocean and delta tay equal to plus or minus 0.05 plus or minus 0.15 tau over land. 271 MODIS aerosol retrievals co-located with AERONET inversions at island and coastal sites suggest that one-standard deviation of MODIS effective radius retrievals falls within delta r_eff approximately equal to 0.11 microns. The accuracy of the MODIS retrievals suggests that the product can be used to help narrow the uncertainties associated with aerosol radiative forcing of global climate.
Document ID
20030102194
Acquisition Source
Goddard Space Flight Center
Document Type
Preprint (Draft being sent to journal)
Authors
Remer, L. A.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Kaufman, Y. J.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Tanre, D.
(Lille-1 Univ. Villeneuve-d'Asoq, France)
Mattoo, S.
(Science Systems and Applications, Inc. United States)
Chu, D. A.
(Science Systems and Applications, Inc. United States)
Martins, J. V.
(Maryland Univ. Baltimore County Catonsville, MD, United States)
Li, R.-R.
(Science Systems and Applications, Inc. United States)
Ichoku, C.
Levy, R. C.
Kleidman, R. G.
Date Acquired
September 7, 2013
Publication Date
January 1, 2003
Subject Category
Instrumentation And Photography
Distribution Limits
Public
Copyright
Public Use Permitted.
No Preview Available