HR: 0830h
AN: A51D-0701 [PDF]
TI: Ozone Climatology for Portsmouth, NH 1978-2002
AU: * Wake, C P
EM: cameron.wake@unh.edu
AF: Climate Change Research Center, Institute for the Study of Earth, Oceans and Space, University of New
Hampshire, Morse Hall, Durham, NH 03824
AU: Miller, S T
EM: stm@cisunix.unh.edu
AF: Climate Change Research Center, Institute for the Study of Earth, Oceans and Space, University of New
Hampshire, Morse Hall, Durham, NH 03824
AB:
Hourly ozone mixing ratios have been monitored in Portsmouth, NH since 1978 for the typical "summer" ozone season (April to
October) by the New Hampshire Department of Environmental Services. This 25 year record provides the basis to investigate
seasonal variability in daily summertime ozone levels in Portsmouth NH and evaluate the relationship between ozone mixing
ratios, temperature, precipitation, and the state of El Ni¤o/Southern Oscillation. The overall goal of this research is to
identify significant relationships between high ozone days and a suite of climate variables.
The mean daily ozone mixing ratio in Portsmouth from 1977 through 2002 was 40 ppbv (sd 17 ppbv) with a mean of 6 days per
summer when maxiumum 8 hour ozone levels exceed the 80 ppbv level. The highest ozone levels usually occur during June, July
and August (with a peak in July), but high ozone days also occur May and September. April and October rarely experience high
ozone.
High ozone in coastal New Hampshire (and for most of New England) occurs predominantly on days when maximum temperatures are
above 85 oF, although there are also may hot days when ozone levels do not reach elevated levels. Analysis of the
relationship between number of days per year when 8 hour ozone is greater than 80 ppbv and maximum temperatures are greater
than 85 oF indicates that there is a positive correlation (r = 0.60). Surprisingly, there is not a strong inverse
relationship between ozone days and precipitation. For example, over the last 25 years, 1988 clearly stands out with 20 days
with maximum 8 hour ozone above 80 ppbv. However, 1988 also experienced considerable precipitation in July and August (14.1
inches compared to the climatological mean of 6.7 inches) and relatively few days without precipitation (38 compared to the
climatological mean of 44).
There are differences in temperature, precipitation, and ozone levels in Portsmouth during years that are classified as El
Ni¤o and neutral, compared to La Nina years. However, we have only experienced one strong La Nina year in the past 25 years,
so the results must be viewed with caution. The La Nina year (1988) experience high ozone and more frequent hot days, as
well as double the average precipitation. El Ni¤o years experience slightly warmer, dryer and experience more frequent ozone
days, although they are not significantly different from neutral years.
Our results indicate that hot summers are indeed related to higher than average ozone levels, although there is considerable
variability in this relationship. There does not appear to be a consistent ozone - precipitation relationship. Further
work is needed to define these relationships for a larger number of stations throughout New England and also for comparison
to broader synoptic to hemispheric circulation patterns and sea surface temperatures.
DE: 0345 Pollution--urban and regional (0305)
DE: 0365 Troposphere--composition and chemistry
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting