HR: 09:45h
AN: A11D-08 [Abstracts]
TI: Trimodal distribution of ozone and water vapor in the UT/LS during boreal summer
AU: * Dunkerton, T J
EM: tim@nwra.com
AF: NorthWest Research Associates, 14508 NE 20th St, Bellevue, WA 98007-3713
United States
AB:
The relation of ozone and water vapor in the upper troposphere and lower stratosphere (UT/LS) is strongly influenced by the
off-equatorial Asian and North American monsoons in boreal summer. Both regions experience hydration, presumably as a result
of deep convection. This behavior contrasts sharply with the apparent dehydrating influence of near-equatorial deep
convection in boreal winter. There is also a striking difference in ozone between Asia and North America in boreal summer.
Over Asia, ozone concentrations are low, evidently a result of ubiquitous deep convection and the vertical transport of
ozone-poor air, while over North America, ozone concentrations are much higher. Since deep convection also occurs in the
North American monsoon, it appears that the difference in ozone concentration between Asia and North America in boreal summer
reflects a differing influence of the large-scale circulation in the two regions: specifically, (i) isolation of the Tibetan
anticyclone versus (ii) the intrusion of filaments of ozone-rich air from the stratosphere over North America. During boreal
summer, as in winter, near-equatorial concentrations of ozone and water vapor are low near the equator. The result of these
geographical variations is a trimodal distribution of ozone and water-vapor correlation. Our talk reviews the observational
evidence of this trimodal distribution and possible dynamical and microphysical causes, focusing primarily on the quality and
possible sampling bias of satellite and aircraft measurements. A key issue is the ability of HALOE to sample areas of
ubiquitous deep convection. Other issues include the vertical structure of tracer anomalies, isentropic stirring in the
UT/LS, horizontal transport of biomass burning products lofted by deep convection, and connections to the moist phase of the
tropical `tape recorder' signal in water vapor.
DE: 3314 Convective processes
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: 2004 AGU Fall Meeting