Articles | Volume 7, issue 6
https://doi.org/10.5194/gmd-7-2895-2014
https://doi.org/10.5194/gmd-7-2895-2014
Model description paper
 | 
08 Dec 2014
Model description paper |  | 08 Dec 2014

Tropical troposphere to stratosphere transport of carbon monoxide and long-lived trace species in the Chemical Lagrangian Model of the Stratosphere (CLaMS)

R. Pommrich, R. Müller, J.-U. Grooß, P. Konopka, F. Ploeger, B. Vogel, M. Tao, C. M. Hoppe, G. Günther, N. Spelten, L. Hoffmann, H.-C. Pumphrey, S. Viciani, F. D'Amato, C. M. Volk, P. Hoor, H. Schlager, and M. Riese

Viewed

Total article views: 5,675 (including HTML, PDF, and XML)
HTML PDF XML Total BibTeX EndNote
3,965 1,551 159 5,675 199 168
  • HTML: 3,965
  • PDF: 1,551
  • XML: 159
  • Total: 5,675
  • BibTeX: 199
  • EndNote: 168
Views and downloads (calculated since 08 Aug 2014)
Cumulative views and downloads (calculated since 08 Aug 2014)

Cited

Saved (final revised paper)

Latest update: 24 Apr 2024
Download
Short summary
A version of the chemical transport model CLaMS is presented, which features a simplified (numerically inexpensive) chemistry scheme. The model results using this version of CLaMS show a good representation of anomaly fields of CO, CH4, N2O, and CFC-11 in the lower stratosphere. CO measurements of three instruments (COLD, HAGAR, and Falcon-CO) in the lower tropical stratosphere (during the campaign TROCCINOX in 2005) have been compared and show a good agreement within the error bars.