HR: 0830h
AN: A51A-11 [Abstracts]
TI: Simulating Ozone in the Near Tropopause Region with the NASA Global Modeling Initiative Combined Model of the Stratosphere and Troposphere
AU: * Considine, D B
EM: david.b.considine@nasa.gov
AF: NASA Langley Research Center, Mail Stop 401B, Hampton, VA 23681
AU: Logan, J A
EM: jal@io.harvard.edu
AF: Harvard University, Pierce Hall,
29 Oxford St., Cambridge, MA 02138
AU: Wang, P
EM: p.wang@larc.nasa.gov
AF: Science and Technology Corporation, Mail Stop 910,
NASA Langley Research Center, Hampton, VA 23681
AB:
We use monthly mean, tropopause-referenced ozone climatologies constructed from multiple years of ozonesonde and SAGE II
satellite data to evaluate near-tropopause ozone mixing ratios and vertical gradients generated by the NASA Global Modeling
Initiative (GMI) three-dimensional chemistry and transport model. Most of the sonde station data sets exceed 10 years in
length, and the SAGE II climatology was constructed from observations made between December, 1984, and November, 2002. The
model includes a full description of stratospheric and tropospheric physicochemical processes extending from the surface to
above the stratopause with a vertical resolution near the tropopause of approximately1 km. This "combined" CTM can be driven
with several sets of meteorological data; here we focus on results using meteorological data from the NASA GEOS-4 AGCM. The
GEOS-4 AGCM has been shown to have good stratosphere-to-troposphere mass and ozone fluxes. Preliminary results indicate that
tropical profiles of modeled and observed ozone mixing ratios and vertical gradients agree best, with larger discrepancies at higher latitudes. We investigate the various factors causing these discrepancies and compare results of simulations using
other meteorological data sets to drive the CTM.
DE: 0340 Middle atmosphere--composition and chemistry
DE: 0341 Middle atmosphere--constituent transport and chemistry (3334)
DE: 0365 Troposphere--composition and chemistry
DE: 0368 Troposphere--constituent transport and chemistry
SC: Atmospheric Sciences [A]
MN: 2005 Joint Assembly