HR: 0800h
AN: A51D-0093 [Abstracts]
TI: Tropospheric Ozone Across North America in Summer 2004 From Ozonesonde Observations During
IONS
AU: * Oltmans, S J
EM: samuel.j.oltmans@noaa.gov
AF: NOAA/CMDL, 325 Broadway, Boulder, CO 80305
United States
AU: Thompson, A M
EM: anne@met.psu.edu
AF: Pennsylvania State University Meteorology Department, 510 Walker Building, University Park, PA 16802
United States
AU: Johnson, B J
EM: bryan.j.johnson@noaa.gov
AF: NOAA/CMDL, 325 Broadway, Boulder, CO 80305
United States
AU: Cooper, O R
EM: owen.r.cooper@noaa.gov
AF: CIRES University of Colorado/NOAA Aeronomy Lab, 325 Broadway, Boulder, CO 80305
United States
AU: Merrill, J T
EM: jmerrill@gso.uri.edu
AF: Graduate School of Oceanograpy
University of Rhode Island, South Ferry Road, Narragansett, RI 02882
United States
AU: Morris, G A
EM: gary.morris@valpo.edu
AF: Department of Physics and Astronomy
Valparaiso University, Valparaiso University, Valparaiso, IN 46383
United States
AU: Newchurch, M
EM: mike@nsstc.uah.edu
AF: Atmospheric Science Department
University of Alabama in Huntsville, National Space Science and Technology Center, Huntsville, AL 35805
United States
AU: Schmidlin, F J
EM: fjs@osb.wff.nasa.gov
AF: NASA Goddard Space Flight Center
University of Alabama at Huntsville, Wallops Flight Facility, Wallops Island, VA 23337
United States
AU: Tarasick, D W
EM: david.tarasick@ec.gc.ca
AF: Experimental Studies Research Division
MSC/Environment Canada, 4905 Dufferin St., Downsview, ON M3H 5T4
Canada
AB:
During July - August 2004 an intensive series of ozone vertical profile measurements was carried out at locations across the
United States and southeastern Canada. The ozonesonde observations were carried out under the umbrella of the
INTEX/ICARTT/ITCT-2K4/NEAQS Ozone Network Study (IONS), part of an international campaign focused on the transport of
atmospheric constituents over the United States, their transformation, and eventual export over the North Atlantic. The
multinational effort included several aircraft and ground-based measurement platforms as well as the ozonesonde observations.
Eleven sites made ozonesonde launches with nine of the locations making intensified observations. Three of the sites made
daily soundings over an ~40-day period.
A prominent feature of Summer 2004 was the absence of high surface ozone episodes in the northeastern U.S. The summer
was characterized by the passage of weak cold frontal systems and the lack of stagnant high pressure. The middle and upper
troposphere often saw significant stratosphere/troposphere exchange with relatively high ozone amounts. This feature showed
up in the ozone profiles from Michigan to the NOAA Ship Ron Brown operating in the Gulf of Maine. In the southeastern and
western U.S. ozone in the troposphere was nearer average conditions. A Lagrangian tracer model (FLEXPART) was used to
identify various processes influencing the tropospheric ozone distribution. Signatures of stratospheric ozone transport into
the upper and middle stratosphere were seen at most locations. Ozone production from precursor emissions was seen most
prominently in the southeastern U.S. Comparison with longer measurement records at several of the sites showed that with the
exception of the lower altitudes in the northeast U.S., Summer 2004 exhibited characteristics that were not atypical over the
mid latitudes of North America. The summertime ozone distribution across mid latitude North America had highest low altitude
ozone concentrations in the southeastern U.S., higher upper tropospheric ozone in the northeast, and lowest ozone amounts in
both the upper and lower troposphere in the western U.S.
DE: 0300 ATMOSPHERIC COMPOSITION AND STRUCTURE
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
DE: 0365 Troposphere: composition and chemistry
DE: 0368 Troposphere: constituent transport and chemistry
SC: Atmospheric Sciences [A]
MN: Fall Meeting 2005