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  Forcing for HD Model from HydroPy and subsequent HD Model river runoff over Europe based on EOBS22 and ERA5 data

This experiment comprises data that have been used in Hagemann et al. (submitted). It comprises daily data of surface runoff and subsurface runoff from HydroPy and simulated daily discharges (river runoff) of the HD model. The discharge data close the water cycle at the land-ocean interface so that the discharges can be used as lateral freshwater input for ocean models applied in the European region.

a) HD5-ERA5

ERA5 is the fifth generation of atmospheric reanalysis (Hersbach et al., 2020) produced by the European Centre for Medium-Range Weather Forecasts (ECMWF). It provides hourly data on many atmospheric, land-surface, and sea-state parameters at about 31 km resolution.

The global hydrology model HydroPy (Stacke and Hagemann, 2021) was driven by daily ERA5 forcing data from 1979-2018 to generate daily input fields of surface and subsurface runoff at the ERA5 resolution. It uses precipitation and 2m temperature directly from the ERA5 dataset. Furthermore, potential evapotranspiration (PET) was calculated from ERA5 data in a pre-processing step and used as an additional forcing for HydroPy. Here, we applied the Penman-Monteith equation to calculate a reference evapotranspiration following (Allen et al., 1998) that was improved by replacing the constant value for albedo with a distributed field from the LSP2 dataset (Hagemann, 2002). In order to initialize the storages in the HydroPy model and to avoid any drift during the actual simulation period, we conducted a 50-years spin-up simulation by repeatedly using year 1979 of the ERA5 dataset as forcing.

To generate river runoff, the Hydrological discharge (HD) model (Hagemann et al., 2020; Hagemann and Ho-Hagemann, 2021) was used that was operated at 5 arc minutes horizontal resolution. The HD model was set up over the European domain covering the land areas between -11°W to 69°E and 27°N to 72°N. First, the forcing data of surface and sub-surface runoff simulated by HydroPy were interpolated to the HD model grid. Then, daily discharges were simulated with the HD model.

b) HD5-EOBS

The E-OBS dataset (Cornes et al., 2018) comprises several daily gridded surface variables at 0.1° and 0.25° resolution over Europe covering the area 25°N-71.5°N x 25°W-45°E. The dataset has been derived from station data collated by the ECA&D (European Climate Assessment & Dataset) initiative (Klein Tank et al., 2002; Klok and Klein Tank, 2009). In the present study, we use the best-guess fields of precipitation and 2m temperature of vs. 22 (EOBS22) at 0.1° resolution for the years 1950-2018.

HydroPy was driven by daily EOBS22 data of temperature and precipitation at 0.1° resolution from 1950-2019. The potential evapotranspiration (PET) was calculated following the approach proposed by (Thornthwaite, 1948) including an average day length at a given location.

As for HD5-ERA5, the forcing data of surface and sub-surface runoff simulated by HydroPy were first interpolated to the HD model grid. Then, daily discharges were simulated with the HD model.

Main reference:

Hagemann, S., Stacke, T. Complementing ERA5 and E-OBS with high-resolution river discharge over Europe. Oceanologia. Submitted.

 
Citation proposal
Dr. Stefan Hagemann (Helmholtz-Zentrum Hereon) - Dr. Tobias Stacke (Helmholtz-Zentrum Hereon). Forcing for HD Model from HydroPy and subsequent HD Model river runoff over Europe based on EOBS22 and ERA5 data. https://gdk.gdi-de.org/geonetwork/srv/api/records/de.dkrz.wdcc.iso3889897
 
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  • Distribution
  • Quality
  • Spatial rep.
  • Ref. system
  • Content
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  • Metadata
  • Md. constraints
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Identification

Data identification

Citation

Alternate title
Forcing for HD Model from HydroPy and subsequent HD Model river runoff over Europe based on EOBS22 and ERA5 data
Date ( Creation )
2021-08-05
Identifier
None
Identifier
doi:10.26050/WDCC/EOBS_ERA5-River_Runoff / Forcing for HD Model from HydroPy and subsequent HD Model river runoff over Europe based on EOBS22 and ERA5 data

  Originator

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Website
www.hereon.de  
Other citation details
doi:10.26050/WDCC/EOBS_ERA5-River_Runoff

  Author

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Website
www.hereon.de  

  Author

Helmholtz-Zentrum Hereon - Dr. Tobias Stacke  
Website
www.hereon.de  

  Point of contact

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Website
www.hereon.de  
Keywords ( Theme )
  • river runoff
Keywords ( Theme )
  • Surface runoff
Keywords ( Theme )
  • Subsurface runoff
Keywords ( Theme )
  • Discharge
Metadata language
eng English

Extent

N
S
E
W


Begin date
1950-01-01
End date
2019-12-31
Begin date
1979-01-01
End date
2018-12-31
 

Distribution

Distribution

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  • NetCDF (network Common Data Format )

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  Distributor

 

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Units of distribution
Mb
Transfer size
54960
OnLine resource
http://doi.org/doi:10.26050/WDCC/EOBS_ERA5-River_Runoff  
 

Quality

Hierarchy level
series Series
 

Content

Coverage Description

Attribute description
subsurface_runoff_flux
Content type
modelResult modelResult
Descriptor
not filled

Coverage Description

Attribute description
subsurface_runoff_flux
Content type
modelResult modelResult
Descriptor
not filled

Coverage Description

Attribute description
surface_runoff_flux
Content type
modelResult modelResult
Descriptor
not filled

Coverage Description

Attribute description
surface_runoff_flux
Content type
modelResult modelResult
Descriptor
not filled

Coverage Description

Attribute description
water_volume_transport_in_river_channel
Content type
modelResult modelResult
Descriptor
not filled

Coverage Description

Attribute description
water_volume_transport_in_river_channel
Content type
modelResult modelResult
Descriptor
not filled
 

Metadata

Metadata

File identifier
de.dkrz.wdcc.iso3889897   XML
Hierarchy level
series Series
Hierarchy level name
EOBS_ERA5-River_Runoff
Date stamp
2021-09-04T04:25:23
Metadata standard name
ISO 19115
Metadata standard version
ISO 19139 / DKRZ ISO Simple Profile V1.0

  Author

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Website
www.hereon.de  

  Author

Helmholtz-Zentrum Hereon - Dr. Tobias Stacke  
Website
www.hereon.de  

  Point of contact

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Website
www.hereon.de  

  Originator

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Website
www.hereon.de  
Dataset URI
http://doi.org/doi:10.26050/WDCC/EOBS_ERA5-River_Runoff
 
 

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