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  Forcing for HD Model (JSBACH, MPI-HM) and HD Model discharge from Hagemann et al. (2020)

The data of this experiment have been used in (Hagemann et al., 2020). It comprise daily data of surface runoff and subsurface runoff (drainage) from JSBACH and MPI-HM and simulated daily discharges (river runoff). 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. Different to the published version of HD model parameters (5.0) on Zenodo, an earlier version (4.0) of flow directions and model parameters has been used that is provided as an auxiliary data file. 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 respective forcing data of surface and sub-surface runoff were interpolated to the HD model domain using conservative remapping. Then, daily discharges were simulated with the HD model for the period 1979-2009 (1999-2009 for HD5-MESCAN). In addition, daily discharges were analogously simulated using only JSBACH forcing with the global 0.5° version 1.10 of the HD model. The associated flow directions and model parameters of vs. 1.10 are provided as an auxiliary data file. The HD forcing data are:

a) HD5-JSBACH

In order to generate daily input fields of surface runoff and drainage, the land surface scheme JSBACH (vs. 3 + frozen soil physics; (Ekici et al., 2014)) was forced globally at 0.5° with daily atmospheric forcing data based on the Interim Re-Analysis of the European Centre for Medium-Range Weather Forecast (ERA-Interim; (Dee et al., 2011)). These forcing data are bias-corrected (see (Beer et al., 2014)) towards the so-called WATCH forcing data (WFD; (Weedon et al., 2011)) that have been generated in the EU project WATCH.

b) HD5-MPIHM

The MPI-M hydrology model MPI-HM (Stacke and Hagemann, 2012) was driven by daily WATCH forcing data based on ERA-Interim (WFDEI; (Weedon et al., 2014)) from 1979-2009 to generate daily input fields of surface runoff and drainage at global 0.5° resolution.

c) HD5-MESCAN

Six hourly data of surface runoff and drainage (variable name: percolation) were retrieved from the MESCAN-SURFEX regional surface reanalysis (Bazile et al., 2017) created in the EU project UERRA (Uncertainties in Ensembles of Regional ReAnalysis; www.uerra.eu). SURFEX (Masson et al., 2013) is a land surface platform that was driven by atmospheric forcing at 5.5 km. The forcing comprises 24h-precipitation, near-surface temperature and relative humidity analyzed by the MESCAN surface analysis system as well as radiative fluxes and wind downscaled at 5.5 km from the 3DVar re-analysis conducted with the HARMONIE system at 11 km (Ridal et al., 2017). The latter has been generated using six-hourly fields of the ERA-Interim reanalysis as boundary conditions and covers a domain comprising Europe and parts of the Atlantic, which is similar to the European domain of the Coordinated Downscaling Experiment (CORDEX) at 11 km.

 
Citation proposal
(2021) . Forcing for HD Model (JSBACH, MPI-HM) and HD Model discharge from Hagemann et al. (2020). https://gdk.gdi-de.org/geonetwork/srv/api/records/wdc-climate.de:3889895
 
  • Identification
  • Distribution
  • Quality
  • Spatial rep.
  • Ref. system
  • Content
  • Portrayal
  • Metadata
  • Md. constraints
  • Md. maintenance
  • Schema info

Identification

Data identification

Citation

Date ( Publication )
2021-09-03
Edition
1
Identifier
Hagemannetal2020
Identifier
doi:10.26050/WDCC/Hagemannetal2020

  Principal investigator

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Contact instructions
Email: stefan.hagemann@hereon.de
Website
www.hereon.de  

  Author

Helmholtz-Zentrum Hereon - Dr. Stefan Hagemann  
Contact instructions
Email: stefan.hagemann@hereon.de
Website
www.hereon.de  

  Author

Helmholtz-Zentrum Hereon - Dr. Tobias Stacke  
Contact instructions
Email: tobias.stacke@mpimt.mpg.de
Website
www.hereon.de  

  Publisher

WDC Climate at DKRZ  

  Point of contact

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

Format

Name
NetCDF
Keywords
  • Discharge
Keywords
  • Subsurface runoff
Keywords
  • Surface runoff
Keywords
  • river runoff
Use limitation
CC BY 4.0: Creative Commons Attribution 4.0 International (CC BY 4.0) https://creativecommons.org/licenses/by/4.0/
Metadata language
eng; USA
N
S
E
W


 

Distribution

Distribution

Distribution format
  • NetCDF ()

Digital transfer options

Transfer size
32149
OnLine resource
https://www.wdc-climate.de/ui/entry?acronym=Hagemannetal2020  
 

Quality

Data quality

Hierarchy level
collection collection

Non quantitative attribute accuracy

Name of measure
n/a
Measure description
None
 

Content

Coverage Description

Attribute description
water_volume_transport_in_river_channel
Dimension
  •   temporal_extent_19990101_20091231

Coverage Description

Attribute description
surface_runoff_flux
Dimension
  •   temporal_extent_19790101_20091231

Coverage Description

Attribute description
water_volume_transport_in_river_channel
Dimension
  •   temporal_extent_19790101_20091231

Coverage Description

Attribute description
subsurface_runoff_flux
Dimension
  •   temporal_extent_19790101_20091231
 

Metadata

Metadata

File identifier
wdc-climate.de:3889895   XML
Metadata language
eng; USA
Hierarchy level
collection collection
Hierarchy level name
Hagemannetal2020
Date stamp
2021-08-05T17:40:18
Metadata standard name
ISO 19115
Metadata standard version
ISO 19115-2:2009

  Point of contact

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

  Point of contact

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

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wdc-climate.de:3889895   Access to the portal Read here the full details and access to the data.

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