HR: 15:10h
AN: A32C-06 [PDF]
TI: Suborbital measurements of spectral aerosol optical depth and its variability at sub-satellite-grid
scales in support of CLAMS, 2001
AU: * Redemann, J
EM: jredemann@mail.arc.nasa.gov
AF: BAERI / NASA Ames Research Center, MS 245-5, Moffett Field, CA 94035 United States
AU: Schmid, B
EM: bschmid@mail.arc.nasa.gov
AF: BAERI / NASA Ames Research Center, MS 245-5, Moffett Field, CA 94035 United States
AU: Eilers, J A
EM: jeilers@mail.arc.nasa.gov
AF: NASA Ames Research Center, MS 245-5, Moffett Field, CA 94035
AU: Kahn, R
EM: Ralph.Kahn@jpl.nasa.gov
AF: Jet Propulsion Laboratory, 4800 Oak Grove Dr., Pasadena, CA 91109
AU: Levy, R C
EM: levy@climate.gsfc.nasa.gov
AF: NASA/Goddard Space Flight Center, SSAI / GSFC code 913, Greenbelt, MD 20771
AU: Russell, P B
EM: prussell@mail.arc.nasa.gov
AF: NASA Ames Research Center, MS 245-5, Moffett Field, CA 94035
AU: Livingston, J M
EM: jlivingston@mail.arc.nasa.gov
AF: SRI International / NASA Ames Research Center, MS 245-5, Moffett Field, CA 94035
AU: Hobbs, P V
EM: phobbs@atmos.washington.edu
AF: University of Washington, Department of Atmospheric Sciences
Box 351640, Seattle, WA 98195
AU: Smith, W L
EM: w.l.smith@larc.nasa.gov
AF: NASA Langley Research Center, Mail Stop 420, Hampton, VA 23681
AU: Holben, B N
EM: brent@ltpmail.gsfc.nasa.gov
AF: NASA/Goddard Space Flight Center, SSAI / GSFC code 913, Greenbelt, MD 20771
AB:
As part of the Chesapeake Lighthouse and Aircraft Measurements for Satellites (CLAMS) experiment, July 10 - August 2, 2001,
the 14-channel NASA Ames Airborne Tracking Sunphotometer (AATS-14) was operated aboard the University of Washington CV-580
during 10 research flights (\~45 flight hours). Among others, CLAMS research goals included validation of satellite-based
retrievals of aerosol properties. AATS-14 measures the direct solar beam transmission at 14 discrete wavelengths (354-1558
nm), yielding aerosol optical depth spectra and columnar water vapor for such validation purposes.
Comparisons of AOD between the AERONET Cimel instrument at COVE and airborne measurements by AATS-14 in its vicinity showed
good agreement with largest r-square correlation coefficients at wavelengths of 380 and 500nm ($>$0.99). Coordinated
low-level flight tracks of the CV-580 during Terra overpass times permitted validation of over-ocean MODIS level 2
(MOD04\_L2) multi-wavelength AOD data (10x10km, nadir) in 16 cases on 3 separate days. While the correlation between AATS-14
and MODIS-derived AOD was poor with an r-square of 0.55, almost 75% of all MODIS AOD measurements were still in the desired
uncertainty range ($\pm$0.03$\pm$0.05*AOD). This may be due to the small AODs (generally less than 0.1 at 500nm) encountered
in these comparison cases. An analogous coordination exercise resulted in 7 exact over-ocean match-ups between AATS-14 and
MISR measurements. The comparison between AATS-14 and the MISR standard algorithm regional mean AODs showed a much stronger
correlation with an r-square of 0.94. However, MISR AODs were systematically higher than the corresponding AATS values, with
an rms difference of 0.06.
AATS data collected during nine extended low-level CV-580 flight tracks were used to assess spatial variability in AOD at
horizontal scales up to 100 km. At UV and mid-visible wavelengths, the largest absolute gradients in AOD were 0.1-0.2 per 50
km horizontal distance. In the near IR, analogous gradients rarely measured 0.05. On any given day, the relative gradients in
AOD were remarkably similar for all wavelengths, with maximum values of 70% per 50 km and more typical values of 25%. We
will discuss the implications of these unique measurements of AOD spatial variability for common validation practices of
satellite data products and for comparisons to large-scale aerosol models.
DE: 0305 Aerosols and particles (0345, 4801)
DE: 0365 Troposphere--composition and chemistry
DE: 1640 Remote sensing
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting