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Below is a list of all agreed upon parameters. Participating Centres are expected to produce output fields in GRIB2 data format and with consistent units. All units are defined by the WMO in the GRIB2 manual. For more information please refer to Guide to the WMO Table Driven Code Form.

Image Removed *** revision needed!!For the actual availability of UERRA parameters from each model in MARS refer to the page Parameter availability.

Model level parameters

Output of analyses on (hybrid) model levels are stored up to a height of about 15km every six hours (at 00/06/12/18UTC).

Model level increases with height for MO and decreases for other models.

  • COSMO: 1..40
  • HARMONIE: 1..65
  • MO: 1..63

Pressure level parameters

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● Store analysis output in six hourly intervals intervals (at 00 UTC, /06 UTC, 12 UTC, 18 UTC /12/18UTC) for the Unified Model and Harmonie

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● T+1,2,3,4,5,6 started at 06 UTC and 18 UTC

Height level parameters

Output of forecasts and analyses on pressure levels for defined time steps.

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● Store analysis output in six hourly intervals  (at 00 UTC, /06 UTC, 12 UTC, 18 UTC /12/18UTC) for the Unified Model and Harmonie

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● T+1,2,3,4,5,6 started at 06 UTC and 18 UTC

Surface level parameters 

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● Store analysis output in six hourly intervals intervals (at 00 UTC, /06 UTC, 12 UTC, 18 UTC /12/18UTC) for the Unified Model, Harmonie, MESCAN-SURFEX

● Store precipitation analysis  (24 h accumulation from 06 UTC to 06 UTC of next day) output at 06TC for MESCAN-SURFEX

● Store hourly analysis output for COSMO, MESAN, SURFEX

Forecast:

● Store forecast output at T+1,2,3,4,5,6,9,12,15,18,21,24,27,30 started at 00 UTC and 12 UTC for the Unified Model, COSMO, Harmonie

● Store forecast output at T+1,2,3,4,5,6 started at 06 UTC and 18 UTC for the Unified Model, COSMO, Harmonie

● For Harmonie (started at 00/06/12/18UTC):

      • Store sd, sr, al, rsn, slhf, sshf parameters (derived from ALADIN model driving SURFEX) at T+1,2,3,4,5,6 only
      • Store all other parameters at T+1,2,3,4,5,6,9,12,15,18,21,24,27,30

● For MESCAN-SURFEX (started at 00/06/12/18UTC):

      • Store parameters sp,tp,2r,2t,10si,10wdir, tidirswrf from  forecast output at T+6 only (fields from ALADIN model driving SURFEX)
      • Store all other parameters from forecast output at T+1,2,3,4,5,6


Info
titleStatic fields

Static fields are archived only as of the analysis type. For users' convenience, even they are invariant fields, they should be archived for all analysis output times. In case of ensemble products they should be archived with all ensemble members (again as of the analysis type only).

The surface roughness could be either static or changing parameter depending on model and  should be handled accordingly as a static or a prognostic model field.


NameAbbreviationUnit
original name (temporary) & remarks

Precipitation and humidity



Percolation 
  Drainage *** 
perckg m-2
 
Surface air relative humidity
***

rh
2r%
 
Surface
water
runoff
  ***
 
 

srokg m-2
 
Total column water
***
vapour
tcw
tciwvkg m-2
 
Total precipitation tpkg m-2
 

Accumulated radiation fluxes

  

 


Albedo
a
al%
  Time-integrated surface solar radiation downwards *** ssrd
Evaporationevakg
W
m-2
Time-integrated surface
solar radiation upwards *** ssru
latent heat fluxslhfW m-2 s
 

Direct short-wave radiation flux at the surface ***

Time-integrated surface sensible heat fluxsshf
 
W m-2 s
 
Time-integrated surface
net
clear-sky solar radiation
***
downwardsadswrf_cs
ssr
W m-2 s

Net short-wave radiation flux at the surface

Total short-wave radiation flux at the surface ***

Time-integrated surface clear-sky solar radiation upwards auswrf_cs
 
W m-2 s

Total short-wave radiation flux at the surface

Direct short-wave radiation flux at the surface ***

 

Time-integrated surface direct solar radiation

tidirswrfW m-2 s
 

Clear-sky long-wave downward flux at the surface ***

Time-integrated surface net solar radiation ssr
 
W m-2 s
 
Time-integrated surface
thermal
solar radiation downwards
***
strd
ssrdW m-2 s
 
Time-integrated surface
net
clear-sky thermal radiation
***str
downwardsadlwrf_csW m-2 s

Net long-wave radiation flux at the surface

Evaporation ***e
kg m-2  
Time-integrated surface
latent heat flux ***slhf
net thermal radiation
strW m-2 s
 
Time-integrated surface
sensible heat flux ***sshf
thermal radiation downwards
strdW m-2 s
 

Temperature and wind speed

   10m


10 metre wind speed
10ws
10sim s-1
 10m
10 metre wind direction
10wd
10wdir
deg 10m wind gust in the last 24h ***10fg24
degree true
10 metre wind gust since previous post-processing 
10fgm s-1
 
Surface air maximum temperature
***mx2t6KMaximum [1.5 m | 2 m]
since previous post-processingmx2tK
Surface air minimum temperature since previous post-processingmn2tK
Surface air
minimum
temperature
***
mn2t6Surface temperature ***   
2tK

Minimum [1.5 m | 2 m] temperature since previous post-processing

Skin temperature sktK

Pressure/Height

   


Mean sea level pressuremslPa
 
Surface pressurespPa
 

Cloud properties

   


High cloud cover
***
hcc%
 
Low cloud cover
***
lcc%
 
Medium cloud cover
***
mcc%
 
Total cloud covertcc%
 

Snow

   



Snow density
***
rsnkg m-3
 
Snow depth
***
sh
sdem
 
Snow depth water equivalentsdkg m-2

Water equivalent of accumulated snow depth

Snow fall water equivalentsfkg m-2
Accumulated total snowfall

Soil ***

   

Soil temperature level 1

   Soil temperature level 2   Soil temperature level 3   Soil temperature level 4   Soil heat flux ***   

Soil water index in the root zone (total and liquid)

   

Soil water index for the first cm (total and liquid)

   

Soil water index for 5cm (total and liquid)

   

Volumetric soil water layer 1

   Volumetric soil water layer 2   Volumetric soil water layer 3   Volumetric soil water layer 4   

Static fields

   Land-sea masklsm0-1Land coverOrographyoroggpm Surface roughness ***srm 

 

...

Soil



Soil heat fluxsohf
W m-2

Static fields



Land-sea masklsm(0-1)
Orographyoroggpm
Surface roughnesssrm

Soil level parameters 

Time steps: the same as surface level parameters

Soil levels: parameters should be provided on original model levels or layers

  • COSMO: 8 soil layers
    level borders at 0, 0.01, 0.03, 0.09, 0.27, 0.81, 2.43, 7.29, 21.87 m
  • HARMONIE: 3 soil levels/layers (sot on levels, vsw on layers)
    level depths are grid dependent
  • MESCAN-SURFEX: 14 soil layers (only 6 layers for preliminary shorter re-analysis runs)
    level borders at 0, 0.01, 0.04, 0.1, 0.2, 0.4, 0.6 m 
  • MO: 4 soil layers
    level borders at  0, 0.1, 0.35, 1 and 3 m
Info
titleSoil depth

The soil depth could be either a constant or a grid dependent parameter depending on given model soil scheme.

If constant, the soil depths should be mentioned only in documentation of given model.

If grid dependent it should be archived the same as other static fields for all analysis output times. In case of ensemble products it should be archived with all ensemble members (again as of the analysis type only).


Attached documents to this page which were used for creation of GRIB2 UERRA definitions (they are linked above too):

  • radiation_in_mars.pdf (to understand the radiation fluxes)
  • Parameter_table_20150427.docx (the latest official version of agreed upon UERRA parameters)