HR: 1340h
AN: A13B-0911 [Abstracts]
TI: Ozone Production in Global Tropospheric Models: Quantifying Errors due to Grid Resolution
AU: * Wild, O
EM: oliver@jamstec.go.jp
AF: Frontier Research Center for Global Change, JAMSTEC, 3173-25 Showamachi, Kanazawaku, Yokohama, 236-0001
Japan
AU: Prather, M J
EM: mprather@uci.edu
AF: University of California, Irvine, Earth System Science, UCI, Irvine, CA 92697
United States
AB:
Ozone production in global chemical models is dependent on model resolution
because ozone chemistry is inherently nonlinear, the timescales for chemical
production are short, and precursors are artificially distributed over the
spatial scale of the model grid. In this study we examine the sensitivity
of ozone, its precursors, and its production to resolution by running
a global chemical transport model at four different resolutions between T21
(5.6° × 5.6°) and T106 (1.1° × 1.1°) and
by quantifying the errors in regional and global budgets. The sensitivity
to vertical mixing through the parameterization of boundary layer
turbulence is also examined. We find less ozone production in the
boundary layer at higher resolution, consistent with slower chemical
production in polluted emission regions and greater export of precursors.
Agreement with ozonesonde and aircraft measurements made during the NASA
TRACE-P campaign over the Western Pacific in spring 2001 is consistently
better at higher resolution. We demonstrate that the numerical errors in
transport processes at a given resolution converge geometrically for a
tracer at successively higher resolutions. The convergence in ozone
production on progressing from T21 to T42, T63 and T106 resolution is
likewise monotonic but still indicates large errors at 120~km scales,
suggesting that T106 resolution is still too coarse to resolve regional
ozone production. Diagnosing the ozone production and precursor transport
that follow a short pulse of emissions over East Asia in springtime allows
us to quantify the impacts of resolution on both regional and global ozone.
Production close to continental emission regions is overestimated by
27% at T21 resolution, by 13% at T42 resolution, and by 5% at T106
resolution, but subsequent ozone production in the free troposphere
is less significantly affected.
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