variables record: atmosChem.n2o.tavg-u-hm-u.mon.GLB (v1.2.2.2)

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Each Output variable record corresponds to a physical parameter specification.



AttributeValue
branded_variable_namen2o_tavg-u-hm-u
cell_methodshamnm-twm
cmip6_compound_nameAmon.n2oglobal
cmip6_frequencymon
cmip6_tables_identifierAmon (Monthly atmospheric data)
cmip7_compound_nameatmosChem.n2o.tavg-u-hm-u.mon.GLB
cmip7_frequencymon
conditionalTrue
descriptionGlobal mean Nitrous Oxide (N2O)
dimensionstime
flag_-_variable_change_since_cmip6True
modelling_realmAtmospheric Chemistry
nameatmosChem.n2o.tavg-u-hm-u.mon.GLB
physical_parametern2oglobal (Global Mean Mole Fraction of N2O)
primary_modelling_realmAtmospheric Chemistry
processing_noteFor some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry. If N2O is spatially nonuniform, omit this field, but report Mole Fraction of N2O (see the table entry before the previous one). Are these the preferred units or should it be a unitless fraction? Should this field be reported instead on model levels? Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)? CHANGE SINCE CMIP6 in Cell Methods - CMIP6:area: time: mean CMIP7:height: area: time: mean (with all samples weighted by the number of moles of air in the sample),
provenanceAmon ((isd.003))
regionGLB
spatial_shapena-na (Global mean or constant)
temporal_shapetime-intv (Temporal Interval)
titleGlobal Mean Mole Fraction of N2O
typereal
uidatmosChem.n2o.tavg-u-hm-u.mon.GLB

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