Articles | Volume 10, issue 18
https://doi.org/10.5194/acp-10-8983-2010
Special issue:
https://doi.org/10.5194/acp-10-8983-2010
28 Sep 2010
 | 28 Sep 2010

Impact of model resolution on chemical ozone formation in Mexico City: application of the WRF-Chem model

X. Tie, G. Brasseur, and Z. Ying

Related subject area

Subject: Gases | Research Activity: Atmospheric Modelling and Data Analysis | Altitude Range: Troposphere | Science Focus: Chemistry (chemical composition and reactions)
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Cited articles

Brasseur, G., Orlando, J., and Tyndall, G.: Atmospheric Chemistry and Global Change, Oxford University Press, 90–120, 1999.
Cairns M. M. and Corey, J.: An application of the MM5 to modeling high winds in complex terrain: A case study in the eastern Sierra, Western Region Tech. Attachment 98-13, 4 pp., 1998.
Chameides, W. L. and Walker, J.: Time dependent photochemical model for ozone near the ground, J. Geophys. Res., 81, 413–420, 1976.
Colle B. A., Mass, C. F., and Westrick, K. J.: MM5 precipitation verification over the Pacific Northwest during the 1997–99 cool seasons, Weather Forecast., 15, 730–744, 2000.
Crutzen, P. J.: Physical and chemical processes which control the production, destruction, and distribution of ozone and some other chemically active minor constituents, GARP Publications Series, 16, pp. 236–243, 1975.
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