Title of article :
3D analysis of high ozone production rates observed during the ESCOMPTE campaign
Author/Authors :
Coll، نويسنده , , Isabelle and Pinceloup، نويسنده , , Stéphanie and Perros، نويسنده , , Pascal E. and Laverdet، نويسنده , , Gérard and Le Bras، نويسنده , , Georges، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
The development of environmental policies to reduce the ozone levels around large agglomerations requires a good understanding of the development of ozone episodes. In particular, it is necessary to know the location and photochemical activity of the plume where ozone is formed. Measurement campaigns make it possible not only to characterize the concentration fields of ozone and its precursors but also to identify the zones of strong ozone production, by means of specific measurements and kinetic calculations. The combination of the observation-based data with numerical simulations allows to better characterize photochemical pollution. This paper presents a study carried out within the ESCOMPTE program and based on the determination of ozone production rates by experimental and numerical methods: ground measurements of peroxy radicals, NOx at a rural site, airborne measurements of NOX and O3, Eulerian modeling. The reported case is of particular interest since it corresponds to an episode with very different photochemical situations. The diurnal variations of the peroxy radical concentration are analyzed in relation to those of ozone and its precursors. Ozone production rates—P(O3)–are studied over one particular day. The results show particularly high concentrations of RO2+HO2 at ground level (up to 200 pptv) under the influence of the urban and industrial plume, but also highlight very high production rates of ozone (60 to 80 ppbv h−1) a few tens of kilometers from the sources. The results show satisfactory agreement between the various approaches. Modeling provides a four-dimensional (4D) description of the plumes, in particular the relation between the ozone precursor concentrations and P(O3) on the ground.
Keywords :
ESCOMPTE , Regional Model , Ozone production , peroxy radicals , Photostationary state
Journal title :
Atmospheric Research
Journal title :
Atmospheric Research