Difference between revisions of "Carbon simulation"

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#Bukosa, B., Fisher, J., Deutscher, N., and Jones, D. <em>A Coupled CH4, CO and CO2 Simulation for Improved Chemical Source Modelling</em>. <u>Atmosphere</u>, 14:764, 2023. [https://doi.org/10.3390/atmos14050764 DOI: 10.3390/atmos14050764]
 
#Bukosa, B., Fisher, J., Deutscher, N., and Jones, D. <em>A Coupled CH4, CO and CO2 Simulation for Improved Chemical Source Modelling</em>. <u>Atmosphere</u>, 14:764, 2023. [https://doi.org/10.3390/atmos14050764 DOI: 10.3390/atmos14050764]
  
'''''[[Aerosol-only mechanism|Previous]] | [[CH4 simulation|Next]] | [[Guide to GEOS-Chem simulations]]'''''
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'''''[[Aerosol-only simulation|Previous]] | [[CH4 simulation|Next]] | [[Guide to GEOS-Chem simulations]]'''''

Revision as of 14:55, 21 May 2024

Previous | Next | Guide to GEOS-Chem simulations

  1. Simulations using KPP-built mechanisms
  2. Aerosol-only simulation
  3. Carbon simulation
  4. CH4 simulation
  5. CO2 simulation
  6. Hg simulation
  7. POPs simulation
  8. Tagged CO simulation
  9. Tagged O3 simulation
  10. TransportTracers simulation


Overview

The carbon simulation combines the chemistry reactions of the CH4, CO2, and CO simulations. It will eventually replace each of these simulations.

To view the mechanism definition, please follow this link.

References

  1. Bukosa, B., Fisher, J., Deutscher, N., and Jones, D. A Coupled CH4, CO and CO2 Simulation for Improved Chemical Source Modelling. Atmosphere, 14:764, 2023. DOI: 10.3390/atmos14050764

Previous | Next | Guide to GEOS-Chem simulations