By Peter J. H. Builtjes (auth.), Sven-Erik Gryning, Francis A. Schiermeier (eds.)
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Additional info for Air Pollution Modeling and Its Application XIV
This is out of the scope of a single team or a single organisation, so pool the 10 to 15 best European institutes, distribute the tasks with respect to the different issues according to each’s proven expertise and manage the developments within a well-defined and systematic way. 3. Do not forget the quality of the input data – as well meteorological as emission data – or the monitoring data needed to validate each of the many nested models in this “European refined model”. Problems also highlighted by M.
J. Dudhia, and D. Stauffer, 1994: A description of the fifth-generation Penn State/NCAR Mesoscale Model (MM5). , S. T. Rao, and I. G. Zurbenko, 1999: Seasonal photochemical modeling over the eastern United States: Model performance on different space and time scales and implications to the use of models in a regulatory setting; Preprints, Symposium on Interdisciplinary Issues in Atmospheric Chemistry, Dallas, TX, Amer. Meteor. Soc, 42 - 49. , S. T. Rao, I. G. Zurbenko and P. S. Porter, 2000a: Interpreting the information in ozone observations and model predictions relevant to regulatory policies in the Eastern United States.
H. Seinfeld, 1974, “Mathematical Modelling of Photochemical Air Pollution - Part II. A Model and Inventory of Pollutant Emissions, Atmos. , Vol. 8, pp. 97-130. , 1986, ‘Atmospheric chemistry and physics of air pollution’, John Wiley & Sons. C. J. Shieh, 1974, A generalized urban air pollution model and its application to the study of SO2distribution in the St. Louis Metropolitan area, J. Appl. Met. 19, 185-204. C. , 1971, A particle-in-cell method for numerical solution of the atmospheric diffusion equation and application to air pollution problems; Systems, Science and Software, Ca-Reg 35R-844, Vol I.
Air Pollution Modeling and Its Application XIV by Peter J. H. Builtjes (auth.), Sven-Erik Gryning, Francis A. Schiermeier (eds.)