HR: 10:35h
AN: A22B-02 [Abstracts]
TI: Comparison of an Aerosol Assimilation System of MODIS Radiances with AERONET retrievals.
AU: * weaver, c
EM: weaver@blueberry.gsfc.nasa.gov
AF: Goddard Earth Sciences Technology Center / UMBC, Atmospheric Chemistry and Dynamics Branch
NASA/GSFC, Greenbelt, MD 20771
United States
AU: da Silva, A
EM: dasilva@gmao.gsfc.nasa.gov
AF: Global Modeling and Assimilation Office
NASA/GSFC, NASA/GSFC, Greenbelt, MD 20771
United States
AU: CHin, M
EM: chin@rondo.gsfc.nasa.gov
AF: Atmospheric Chemistry and Dynamics Branch, NASA/GSFC, Greenbelt, MD 20771
United States
AU: Ginoux, P
EM: Paul.Ginoux@noaa.gov
AF: NOAA GFDL Princeton University, Forrestal Campus, Route 1, Princeton, NJ 08542-0308
United States
AB:
We present results from a simple off-line assimilation system of radiances from the MODIS channels that sense atmospheric
aerosols over land and ocean. The MODIS information is directly inserted into the Goddard Chemistry and Aerosol Radiation
Transport Model (GOCART) which simulates five aerosol types: dust, sea salt, black carbon, organic carbon and sulfate.
We compare the products from this assimilation system with ground-based measurements of aerosol optical depth (AOD) and
single scattering albedo from the AERONET network. Insertion of MODIS radiances draws the GOCART model closer to the AERONET
AOD. Over ocean the assimilation aerosol optical depths (AOD) compare well with AERONET, over land less so. However, there
are still uncertainties with surface reflectivity and the amount of absorbing aerosol when we assimilate using only the seven
MODIS aerosol channels (.47 to 2.13 um). We will present new results using an additional channel at .412 um that should
resolve some of these issues.
We account for the effect of chlorophyll absorption on the water leaving radiance by using concentrations from a
three-dimensional ocean general circulation biogeochemical model. Inclusion of the chlorophyll reduces the O-F radiances at
the shorter wavelength MODIS channels.
DE: 0305 Aerosols and particles (0345, 4801, 4906)
SC: Atmospheric Sciences [A]
MN: Fall Meeting 2005