HR: 0800h
AN: A31A-0045 [Abstracts]
TI: The Response of the QBO to Zonal-Mean Ozone Perturbations Consistent with the 11-Year Solar
Cycle
AU: * Cordero, E C
EM: cordero@met.sjsu.edu
AF: San Jose State University, Department of Meteorology, San Jose, CA 95192-0104
United States
AU: Nathan, T
EM: trnathan@ucdavis.edu
AF: University of California, Davis, Department of Land, Air, and Water Resources, Davis, CA 95616
United States
AB:
The response of the quasi-biennial oscillation (QBO) to zonal-mean ozone perturbations consistent with the 11-year solar
cycle is examined using a two-dimensional model of the tropical stratosphere. Driven by prescribed Kelvin and Rossby-gravity
waves at the lower (100 hPa) boundary, the model accounts for wave driven changes in the zonal-mean circulation and thus can
simulate the zonal wind, temperature, and ozone QBOs in the tropical stratosphere. We find that 11-year solar cycle-like
perturbations to the zonal-mean ozone field alter both the wave-ozone and zonal-mean ozone feedbacks, which combine to affect
the structure and period of the QBO. In particular, under conditions representative of solar max, the diabatic heating
resulting from ozone feedbacks drives a slightly stronger QBO circulation and produces a shorter QBO period, in agreement
with observations of quasi-decadal variability of the QBO. The implications of these results on quasi-decadal variability of
the global circulation will also be discussed.
DE: 1650 Solar variability
DE: 0341 Middle atmosphere--constituent transport and chemistry (3334)
SC: Atmospheric Sciences [A]
MN: 2004 AGU Fall Meeting