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  RRA WRF simulations of the mid-Pliocene and present-day conditions over High Mountain Asia

The data was produced employing the Advanced Research Weather Research and Forecasting model (WRF) version 4.1.2 (Skamarock et al., 2019) for the dynamical downscaling of GCM data. WRF is a fully compressible non-hydrostatic atmospheric simulation system. Two sensitivity simulations were conducted using 15-year time slices for the present day and the mid-Pliocene simulated by ECHAM5 as initial and boundary conditions (Mutz et al., 2018; Botsyun et al., 2020). Except for the atmospheric forcing data, other parameters were the same in both simulations.

The model domain has a grid spacing of 30 km. In the vertical direction, 28 terrain-following eta-levels were used. The model time steps are 120 seconds with a 6 hourly data output and are aggregated to daily values in post processing. The boundary conditions were updated every 6 h. The daily re-initialization strategy from Maussion et al. (2011) and Maussion et al. (2014) were employed: each simulation starts at 12 UTC and contains 36 h, with the first 12 h as the spin-up time. This strategy kept the large-scale circulation patterns simulated by WRF closely constrained by the forcing data, while concurrently allowing WRF to develop the mesoscale atmospheric features. Physical parameterization schemes were consistent with the ones used for high-resolution dynamical downscaling in High Mountain Asia in Wang et al. (2021). The data format follows the guidelines of the [UC]² Data Standard (http://www.uc2-program.org/uc2_data_standard.pdf).

 
Citation proposal
Xun Wang (Technische Universität Berlin) - Benjamin Schmidt (Technische Universität Berlin) - Prof. Dr. Dieter Scherer (Technische Universität Berlin) - Dr. Marco Otto (Technische Universität Berlin). RRA WRF simulations of the mid-Pliocene and present-day conditions over High Mountain Asia. https://gdk.gdi-de.org/geonetwork/srv/api/records/de.dkrz.wdcc.iso3889342
 

Simple

Alternate title
RRA WRF simulations of the mid-Pliocene and present-day conditions over High Mountain Asia
Date ( Creation )
2021-06-28
Identifier
None
Identifier
doi:10.26050/WDCC/RRA_WRF_simulations / WRF dynamical downscaling of present-day and mid-Pliocene atmospheric conditions over High Mountain Asia

  Originator

Technische Universität Berlin - Prof. Dr. Dieter Scherer  
Website
https://www.klima.tu-berlin.de/  
Other citation details
doi:10.26050/WDCC/RRA_WRF_simulations

  Author

Technische Universität Berlin - Xun Wang  
Website
https://www.klima.tu-berlin.de/  

  Author

Technische Universität Berlin - Benjamin Schmidt  
Website
https://www.klima.tu-berlin.de/  

  Author

Technische Universität Berlin - Prof. Dr. Dieter Scherer  
Website
https://www.klima.tu-berlin.de/  

  Author

Technische Universität Berlin - Dr. Marco Otto  
Website
https://www.klima.tu-berlin.de/  

  Point of contact

Technische Universität Berlin - Dr. Marco Otto  
Website
https://www.klima.tu-berlin.de/  
Keywords ( Theme )
  • WRF
Keywords ( Theme )
  • model data
Keywords ( Theme )
  • dynamical downscaling
Keywords ( Theme )
  • refined analysis
Keywords ( Theme )
  • regional climate modeling
Metadata language
eng English
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W


Begin date
1903-01-01
End date
1917-12-31
Begin date
2000-01-01
End date
2014-12-31
Distribution format
  • NetCDF (network Common Data Format )

Distributor

  Distributor

 
OnLine resource
http://doi.org/doi:10.26050/WDCC/RRA_WRF_simulations  
Hierarchy level
series Series

gmd:MD_Metadata

File identifier
de.dkrz.wdcc.iso3889342   XML
Hierarchy level
series Series
Hierarchy level name
RRA_WRF_simulations
Date stamp
2021-07-14T04:25:20
Metadata standard name
ISO 19115
Metadata standard version
ISO 19139 / DKRZ ISO Simple Profile V1.0

  Author

Technische Universität Berlin - Xun Wang  
Website
https://www.klima.tu-berlin.de/  

  Author

Technische Universität Berlin - Benjamin Schmidt  
Website
https://www.klima.tu-berlin.de/  

  Author

Technische Universität Berlin - Prof. Dr. Dieter Scherer  
Website
https://www.klima.tu-berlin.de/  

  Author

Technische Universität Berlin - Dr. Marco Otto  
Website
https://www.klima.tu-berlin.de/  

  Point of contact

Technische Universität Berlin - Dr. Marco Otto  
Website
https://www.klima.tu-berlin.de/  

  Originator

Technische Universität Berlin - Prof. Dr. Dieter Scherer  
Website
https://www.klima.tu-berlin.de/  
Dataset URI
http://doi.org/doi:10.26050/WDCC/RRA_WRF_simulations
 
 

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