Versions Compared

Key

  • This line was added.
  • This line was removed.
  • Formatting was changed.

The availability of UERRA parameters from each of 9 10 model outputs listed below should reflect the real content of UERRA data archived in MARS.

For exact list of archived steps, levels etc for each model and forecast type refer to the Parameter page.

...

UERRA datasets

In the parentheses there are MARS origin, stream and version keywords valid for given dataset.

Please notice that available data in MARS is linked already in the list below and accessible by clicking a dataset name.

(lightbulb) Click the dataset name below to access the data in MARS catalogue (ECMWF account for full access to MARS required).

Show If
special@authenticated
  1. COSMO (edzw, oper, prod)

  2. COSMO/En (edzw, enda, prod)

  3. HARMONIE/V1   (eswi, oper, prod)

  4. HARMONIE/V2 (eswi, enda (number=1), prod)...run limited to 2006-2010 with ALARO physics (archived under enda only due to technical feasibility)

  5. MESAN/V1 (eswi, oper, prod) .. new mars type=oi

  6. MESAN/V2 (eswi, enda (number=1), prod) .. new mars type=oi; (archived under enda only due to technical feasibility)
  7. MESCAN-SURFEX (lfpw, oper, prod)

  8. MESCAN-SURFEX/En (lfpw, enda(number=1..8), prod)  

  9. UM/4DVAR (egrr, oper, prod)

  10. UM/En4DVAR (egrr, enda(number=1..20), prod)

    Temporary datasets:

  11. MESCAN-SURFEX   (lfpw, oper, test) ... partial UERRA parameter sub-sample for limited periods (1981-5, 2005-10)

  12. MESCAN-SURFEX/En   (lfpw, enda, test) ... partial UERRA parameter sub-sample for limited periods (2006-10)

...


Show If
special@anonymous
  1. COSMO (edzw, oper, prod)

  2. COSMO/En (edzw, enda, prod)

  3. HARMONIE/V1   (eswi, oper, prod)

  4. HARMONIE/V2 (eswi, enda (number=1), prod)...run limited to 2006-2010 with ALARO physics (archived under enda only due to technical feasibility)

  5. MESAN/V1 (eswi, oper, prod) .. new mars type=oi

  6. MESAN/V2 (eswi, enda (number=1), prod) .. new mars type=oi; (archived under enda only due to technical feasibility)
  7. MESCAN-SURFEX (lfpw, oper, prod)

  8. MESCAN-SURFEX/En (lfpw, enda(number=1..8), prod)  

  9. UM/4DVAR (egrr, oper, prod)

  10. UM/En4DVAR (egrr, enda(number=1..20), prod)

    Temporary datasets:

  11. MESCAN-SURFEX   (lfpw, oper, test) ... partial UERRA parameter sub-sample for limited periods (1981-5, 2005-10)

  12. MESCAN-SURFEX/En   (lfpw, enda, test) ... partial UERRA parameter sub-sample for limited periods (2006-10)


...

*X~remark (explanation is below the table)   white~not available   grey~not applicable   green ~available in analysis  blue~available in forecast

*X~remark (explanation is below the table)   white~not available   grey~not applicable   green ~available in analysis  blue~available in forecast

 1
COS
(edzw) *9

2
COS/En
(edzw) *6

3
HAR/V1
(eswi)4
HAR/V2
(eswi)5
MES/V1
(eswi)6
MES/V2
(eswi)7
M-S
(lfpw)8
M-S/En
(lfpw)9
UM
(egrr)10
UM/En
(egrr)11
M-S
(lfpw)12
M-S/En
(lfpw) *8 anfcanfcanfcanfcoi oi anfcanfcanfcanfcanfcanfcModel level (*3)
           
 1
COS
(edzw)

2
COS/En
(edzw) *6

3
HAR/V1
(eswi)
4
HAR/V2
(eswi)
5
MES/V1
(eswi)
6
MES/V2
(eswi)
7
M-S
(lfpw)
8
M-S/En
(lfpw)
9
UM
(egrr)
10
UM/En
(egrr)
  an fc anfcanfcanfcoi  oi  anfcanfcanfcanfc
Model level (*3)
             
Cloud cover
       
Cloud cover                   
Pressure
   
 
Pressure                    
Specific cloud liquid water content                    
     
Specific cloud ice water content                    
Specific humidity    
Specific humidity   
                
     
Temperature                    
    
U-velocity
   
                    
 
V-velocity                    
    

Pressure level

*1*1*1*1
    
                
Cloud cover
 
                    
   
Geopotential                    
    
Specific cloud liquid water content                    
Specific cloud ice water content    
Specific cloud ice water content
                
Relative humidity           
Relative humidity
          
Temperature               
Temperature
     
U-velocity                    
U
V-velocity                    

Height level

    
V-velocity
                
 
Cloud cover        

Height level

            
 
Pressure           
Cloud cover
         
 
Specific cloud liquid water content              
Pressure
      
 
Specific cloud ice water content                 
Specific cloud liquid water content
   
Relative humidity                       
Specific cloud ice water content
Temperature                    
Wind speed    
Relative humidity
                
Wind direction         
Temperature
           
Surface level              
Wind speed
      
 

Precipitation and humidity

                 
Wind direction
   
Percolation  
                    
Surface
level
air relative humidity
                    
Surface runoff  
   

Precipitation and humidity

                 
 
Total column water vapour      
Percolation
              
 
Total precipitation           
Surface air relative humidity
   *2 
 
  *2     
 

Accumulated radiation fluxes

             
Surface runoff
       
 
Albedo     
 
*5   *5         
Total column water vapour
   
 
Evaporation                    
Total precipitation
Time-integrated surface latent heat flux     
 
*5   *5            
*2
Time-integrated surface sensible heat flux   

Accumulated radiation fluxes

  
 
*5  *5            
 
Time-integrated surface clear-sky solar radiation downwards      
Albedo
              
 
Time-integrated surface clear-sky solar radiation upwards         
Evaporation
           

Time-integrated surface direct solar radiation

             
Time-integrated surface latent heat flux
       
 
Time-integrated surface net solar radiation                  
Time-integrated surface sensible heat flux
   
 
Time-integrated surface solar radiation downwards                     
Time-integrated surface clear-sky
solar
thermal radiation downwards
 
                    
   
Time-integrated surface
clear-sky solar radiation upwards
net thermal radiation
                    
    
Time-integrated surface
direct solar
thermal radiation downwards
                    

Temperature and wind speed

    
Time-integrated surface net solar radiation
                
10 metre wind speed         
Time-integrated surface solar radiation downwards
           
10 metre wind direction              
Time-integrated surface clear-sky thermal radiation downwards
      
10 metre wind gust since previous post-processing 
                 
Time-integrated surface net thermal radiation
   
 
Surface air maximum temperature since previous post-processing                    
Time-integrated surface thermal radiation downwards
Surface air minimum temperature since previous post-processing                     
Surface air temperature    
Temperature and wind speed
                
Skin temperature          
10 metre wind speed
           
 

Pressure/Height

             
10 metre wind direction
       
 
Mean sea level pressure                
10 metre wind gust since previous post-processing
    
 
Surface pressure                    
Surface air maximum temperature since previous post-processing

Cloud properties

                    
High cloud cover    
Surface air minimum temperature since previous post-processing
                
Low cloud cover         
Surface air temperature
           
Medium cloud cover              
Skin temperature
      
 
Total cloud cover                 

Pressure/Height

   
 

Snow

                    
Mean sea level pressure
Snow density     *5 
 
*5            
 
Snow depth    
Surface pressure
                
 
Snow depth water equivalent     
 
*5  
Cloud properties
*5             
 
Snow fall water equivalent           
High cloud cover
         
 
Soil              
Low cloud cover
      
 
Soil heat flux                 
Medium cloud cover
   
 

Static fields

                    
Total cloud cover
Land-sea mask                    
Orography    

Snow

                
 
Surface roughness      *5 
Snow density
*5             

Soil level (*4)

    



        
Snow depth
    
 
Liquid non-frozen volumetric soil water                    
Snow

Soil depth

water equivalent

                    
 

Soil temperature

   
Snow fall water equivalent
  
 
*5 
 
*5            
 
Volumetric field capacity      
Soil
              
 
Volumetric soil water     
 
*5  
 
*5 
Soil heat flux
           
 
Volumetric wilting point            

Static fields

        
                Land-sea mask                     *7 *7Orography                     *7 *7Surface roughness                        

Soil level (*4)

    *5*5*5*5                Liquid non-frozen volumetric soil water                        

Soil depth

                        

Soil temperature

                        Volumetric field capacity                         Volumetric soil water                         Volumetric wilting point                        

*remarks:

*remarks:

  • 1: In COSMO model the levels above 100hPa are not available.
  • 2: It is an analysis
  • 1: In COSMO model the levels above 100hPa are not available.
  • 2: It is an analysis of total precipitation accumulated between 6h of the previous day and 6h of the day encoded in the GRIB2. The information about the accumulation period cannot be encoded in such GRIB2 files of "an" type!
  • 3: Model level increases with height for MO and decreases for other models. Model level number differs among models.
  • 4: Soil levels differ among models.
  • 5: In HARMONIE only steps up to +6h are available for soil level parameters
  • 6: step 0 is not available at COSMO forecasts ("fc") because of nudging assimilation technique
  • 7: should be archived as type=an!
  • 8: AN eps data generated by MESCAN has a different scanning mode (=64) encoded than FC eps data generated by SURFEX (scanning mode is 0). This should be fixed because of potential implications for users.
  • are available for parameters derived from ALADIN model driving SURFEX
  • 6: step 0 is not available at COSMO forecasts ("fc") because of nudging assimilation technique9: COSMO, deterministic data will be not archived in UERRA scope but probably in 2018 after the project end