期刊文献+

Simulation of Tropospheric Ozone with MOZART-2:An Evaluation Study over East Asia 被引量:3

Simulation of Tropospheric Ozone with MOZART-2:An Evaluation Study over East Asia
下载PDF
导出
摘要 Climate changes induced by human activities have attracted a great amount of attention. With this, a coupling system of an atmospheric chemistry model and a climate model is greatly needed in China for better understanding the interaction between atmospheric chemical components and the climate. As the first step to realize this coupling goal, the three-dimensional global atmospheric chemistry transport model MOZART-2 (the global Model of Ozone and Related Chemical Tracers, version 2) coupled with CAM2 (the Community Atmosphere Model, version 2) is set up and the model results are compared against observations obtained in East Asia in order to evaluate the model performance. Comparison of simulated ozone mixing ratios with ground level observations at Minamitorishima and Ryori and with ozonesonde data at Naha and Tateno in Japan shows that the observed ozone concentrations can be reproduced reasonably well at Minamitorishima but they tend to be slightly overestimated in winter and autumn while underestimated a little in summer at Ryori. The model also captures the general features of surface CO seasonal variations quite well, while it underestimates CO levels at both Minamitorishima and Ryori. The underestimation is primarily associated with the emission inventory adopted in this study. Compared with the ozonesonde data, the simulated vertical gradient and magnitude of ozone can be reasonably well simulated with a little overestimation in winter, especially in the upper troposphere. The model also generally captures the seasonal, latitudinal and altitudinal variations in ozone concentration. Analysis indicates that the underestimation of tropopause height in February contributes to the overestimation of winter ozone in the upper and middle troposphere at Tateno. Climate changes induced by human activities have attracted a great amount of attention. With this, a coupling system of an atmospheric chemistry model and a climate model is greatly needed in China for better understanding the interaction between atmospheric chemical components and the climate. As the first step to realize this coupling goal, the three-dimensional global atmospheric chemistry transport model MOZART-2 (the global Model of Ozone and Related Chemical Tracers, version 2) coupled with CAM2 (the Community Atmosphere Model, version 2) is set up and the model results are compared against observations obtained in East Asia in order to evaluate the model performance. Comparison of simulated ozone mixing ratios with ground level observations at Minamitorishima and Ryori and with ozonesonde data at Naha and Tateno in Japan shows that the observed ozone concentrations can be reproduced reasonably well at Minamitorishima but they tend to be slightly overestimated in winter and autumn while underestimated a little in summer at Ryori. The model also captures the general features of surface CO seasonal variations quite well, while it underestimates CO levels at both Minamitorishima and Ryori. The underestimation is primarily associated with the emission inventory adopted in this study. Compared with the ozonesonde data, the simulated vertical gradient and magnitude of ozone can be reasonably well simulated with a little overestimation in winter, especially in the upper troposphere. The model also generally captures the seasonal, latitudinal and altitudinal variations in ozone concentration. Analysis indicates that the underestimation of tropopause height in February contributes to the overestimation of winter ozone in the upper and middle troposphere at Tateno.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2005年第4期585-594,共10页 大气科学进展(英文版)
基金 This work was partly supported by the Fund for Innovative Research Groups(Grant No.40221503) the National Natural Science Foundation of China(Grant No.40233031).
关键词 tropospheric ozone global chemical transport model MOZART-2 TROPOPAUSE East Asia tropospheric ozone, global chemical transport model, MOZART-2, tropopause, East Asia
  • 相关文献

参考文献28

  • 1Austin, J. F., and M. J. Follows, 1991: The ozone record at Payerne: An assessment of the cross-tropopause flux. Atmos. Environ., 25, 1873-1880.
  • 2Berntsen, T. K., and I. S. A. Isaksen, 1997: A global threedimensional chemical transport model for the troposphere, 1. Model description and CO and ozone results. J. Geophys. Res., 102, 21239-21280.
  • 3Brasseur, G. P., X. X. Tie, P. J. Rasch, and F. Lefevre,1997: A three-dimensional simulation of the Antarctic ozone hole: Impact of anthropogenic chlorine on the lower stratosphere and upper troposphere. J. Geophys. Res.. 102. 8909-8930.
  • 4Brasseur, G. P., J. T..Kiehl, J.-F. Müiller, T. Schneider,C. Granier, X. Tie, and D. Hauglustaine, 1998a: Past and future changes in global tropospheric ozone: Impact on radiative forcing. Geophys. Res. Lett., 25,3807-3810.
  • 5Brasseur, G. P., D. A. Hauglustaine, S. Walters, P. J. Rash, J.-F. Müller, C. Granier, and X. X. Tie, 1998b: MOZART, a global chemical transport model for ozone and related chemical tracers: 1. Model description. J. Geophys. Res., 103, 28265-28289.
  • 6Collins, W. D., and Coauthors, 2002: Description of the NCAR Community Atmosphere Model (CAM2). [Available from http://www.ccsm.ucar.edu/models/atm-cam/docs/description/].
  • 7Follows, M. J., and J. F. Austin, 1992: A zonal average model of the stratospheric contributions to the tropospheric ozone budget. J. Geophys. Res., 97, 18047-18060.
  • 8Guenther, A. and Coauthors, 1995: A global model of natural volatile organic compound emissions. J. Geophys.Res., 100, 8873-8892.
  • 9Hack, J. J., 1994: Parameterization of moist convection in the NCAR community climate model (CCM2). J.Geophys. Res., 99, 5551-5568.
  • 10Hao, W. M., and M.-H. Liu, 1994: Spatial and temporal distribution of tropical biomass burning. Global Biogeochemical Cycles, 8. 495-503.

同被引文献17

引证文献3

二级引证文献59

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部