HR: 0830h
AN: A41D-0710 [PDF]
TI: An Evaluation of the Geophysical Variability in Stratospheric Aerosol and Gas Experiment II Water Vapor
Measurements
AU: * Anderson, J
EM: John.Anderson@hamptonu.edu
AF: Hampton University, 23 Tyler Street, Hampton, VA 23668 United States
AU: Burton, S P
EM: S.P.Burton@larc.nasa.gov
AF: SAIC, Mail Stop 475
NASA Langley Research Center, Hampton, VA 23681-2199 United States
AU: McCormick, M
EM: Patrick.McCormick@hamptonu.edu
AF: Hampton University, 23 Tyler Street, Hampton, VA 23668 United States
AU: Thomason, L W
EM: L.W.Thomason@nasa.gov
AF: NASA Langley Research Center, Mail Stop 475
NASA Langley Research Center, Hampton, VA 23681-2199 United States
AB:
The Stratospheric Aerosol and Gas Experiment (SAGE) II instrument has collected vertical profiles of stratospheric ozone,
nitrogen dioxide, water vapor, and aerosol extinction at four wavelengths with high resolution since the program's inception
in October, 1984. The latest version (v6.1) of SAGE II water vapor measurements in particular exhibit clear biases in
comparisons with other instruments but were of sufficient quality to provide evidence of long-term stratospheric increases,
in agreement with independent measurements. This bias has often been attributed to the inability to completely clear the
effects of aerosols. The SAGE II processing team has made great strides in characterizing stratospheric water vapor. Recent
advancements in the retrieval algorithm has significantly reduced this bias except in the proximity of heavy aerosol levels.
These advancements include a single wavelength shift for 1986-present and the combination of 2 aerosol models. There exists a
clear requirement for evaluating the water vapor's regular long-term behavior, and for extraction of information pertinent
to broader studies of atmospheric radiation, dynamics, and chemistry. This data set becomes evermore valuable as time goes on
due to its usefulness for global change studies. We present results characterizing the geophysical variability in the new
v6.2 water vapor retrievals. Analysis techniques include performing singular value decomposition on the covariances between
the water vapor and QBO time series to characterize the inter-annual variability in the data and empirical orthogonal
function analysis to reproduce the tropical tape recorder. These results will be compared to HALOE v19 and SAGE II v6.1
derived patterns to objectively assess the algorithm improvements.
DE: 0300 ATMOSPHERIC COMPOSITION AND STRUCTURE
DE: 0340 Middle atmosphere--composition and chemistry
DE: 0341 Middle atmosphere--constituent transport and chemistry (3334)
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting