Aerosol-only simulation: Difference between revisions

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== Assumptions ==
== Assumptions ==
1. OH concentrations are taken from a previously run full chemistry simulation. The default is from a much earlier version of the model, when OH thought to be more realistic. The standard code uses OH from version 5-07-08, with GEOS3 meteorology.<br><br>
1. OH concentrations are taken from a previously run full chemistry simulation. The default is from a much earlier version of the model, when OH thought to be more realistic. The standard code uses OH from version 5-07-08, with GEOS3 meteorology.<br><br>
2. O3, NO3 and total nitrate (HNO3+NIT) concentrations, as well as production rates and photolysis rates for H2O2 are taken from a previously run full chemistry simulation.  The current default fields were produced from a GEOS-4, v7-02-03 simulation.<br><br>
2. O3, NO3 and total nitrate (HNO3+NIT) concentrations, as well as production rates and photolysis rates for H2O2 are taken from a previously run full chemistry simulation.  The current default fields were produced from a GEOS-4, v7-02-03 simulation.  These files are generally located in the sulfate_sim_200508/offline/ directory in your GEOS-Chem data directories.<br><br>


== Standard Tracers ==
== Standard Tracers ==

Revision as of 22:14, 13 October 2009

Description

The aerosol simulation is an offline simulation for aerosol tracers only. It uses archived monthly mean OH, NO3, O3 and total nitrate concentrations archived from a previous full-chemistry simulation (more on that below), as well as production and loss rates for H2O2. This simulation does not provide "tagged" capabilities, but reduces the suite of tracers from full chemistry.

Assumptions

1. OH concentrations are taken from a previously run full chemistry simulation. The default is from a much earlier version of the model, when OH thought to be more realistic. The standard code uses OH from version 5-07-08, with GEOS3 meteorology.

2. O3, NO3 and total nitrate (HNO3+NIT) concentrations, as well as production rates and photolysis rates for H2O2 are taken from a previously run full chemistry simulation. The current default fields were produced from a GEOS-4, v7-02-03 simulation. These files are generally located in the sulfate_sim_200508/offline/ directory in your GEOS-Chem data directories.

Standard Tracers

In a complete aerosol-only simulation there are 29 tracers (see input.geos below). This list can be reduced by turning off any aerosol species (eg. SOA, dust, SS, etc).

Practicalities

Offline aerosol is simulation type 10. For a full set of aerosol tracers, the input.geos should look like this:

Type of simulation      : 10
Number of Tracers       : 29
Tracer Entries -------> : TR#  Name   g/mole Tracer Members; () = emitted 
Tracer #1               : 1    DMS    62.00
Tracer #2               : 2    SO2    64.00
Tracer #3               : 3    SO4    96.00
Tracer #4               : 4    MSA    96.00
Tracer #5               : 5    NH3    17.00
Tracer #6               : 6    NH4    18.00
Tracer #7               : 7    NIT    62.00
Tracer #8               : 8    H2O2   34.00
Tracer #9               : 9    BCPI   12.00
Tracer #10              : 10   OCPI   12.00
Tracer #11              : 11   BCPO   12.00
Tracer #12              : 12   OCPO   12.00
Tracer #13              : 13   ALPH   136.23
Tracer #14              : 14   LIMO   136.23
Tracer #15              : 15   ALCO   142.00
Tracer #16              : 16   SOG1   150.00
Tracer #17              : 17   SOG2   160.00
Tracer #18              : 18   SOG3   220.00
Tracer #19              : 19   SOG4   130.00
Tracer #20              : 20   SOA1   150.00
Tracer #21              : 21   SOA2   160.00
Tracer #22              : 22   SOA3   220.00
Tracer #23              : 23   SOA4   130.00
Tracer #24              : 24   DST1   29.00
Tracer #25              : 25   DST2   29.00
Tracer #26              : 26   DST3   29.00
Tracer #27              : 27   DST4   29.00
Tracer #28              : 28   SALA   36.00
Tracer #29              : 29   SALC   36.00

Recent aerosol-only updates

1.

More Information

For more information, see the GEOS-Chem manual pages about offline aerosols:

http://acmg.seas.harvard.edu/geos/doc/man/chapter_6.html#6.1.6
http://acmg.seas.harvard.edu/geos/doc/man/appendix_1.html#A1.8