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A Eulerian air pollution model for Europe with nonlinear chemistry
Authors:Z Zlatev  J Christensen  Ø Hov
Institution:(1) Danish Environmental Research Institute, Frederiksborgvej 399, DK-4000 Roskilde, Denmark;(2) Department of Geophysics, University of Bergen, Allegaten 70, N-5007 Bergen, Norway
Abstract:A long-range transport model with nonlinear chemical reactions is described. The model contains 35 pollutants and 70 chemical reactions. This is a Eulerian model defined on a space domain containing the whole of Europe. The spherical space domain (corresponding to the Earth's surface covered by the model) is mapped into a square plane domain and discretized by using a 32×32 grid. The grid increments are equidistant (both along the Ox axis and along the Oy axis). The choice of values of the physical parameters involved in the model and the numerical treatment of the model are shortly discussed. The model is tested with meteorological data for 1985 and 1989. The numerical results are compared with measurements at stations located in different European countries. Extensive comparisons of ozone concentrations for July 1985 with measurements taken at 24 European stations are also carried out. Results concerning three episodes in July 1985 as well as results obtained in the study of the sensitivity of the ozone concentrations to variations of NO x and/or anthropogenic VOC emissions are presented. The advantages and the limitations of such a model are discussed. The model is continuously improved by adding new modules to it. The plans for improvements in the near future are outlined.
Keywords:Air pollution models  advection  diffusion  deposition  chemical reactions  photo-oxidants  emissions  ozone  episodes
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