Published March 13, 2023
| Version
v0
Dataset
Open
Yearly high flow (maximum discharge) of Southern German catchments
- 1. Finnish Meteorological Institute
Contributors
Description
Yearly block maxima of daily discharge (1962-2099).
Discharge simulations were performed with WaSiM in the scope of the ClimEx project (meteorological drivers: downscaled and bias-adjusted CRCM5-LE output, using RCP8.5 scenario conditions from 2006 onwards). The simulation domain includes the German provinces of Bavaria (full) and Baden-Wurttemberg (parts) as well as parts of Austria and Switzerland. Relevant project references: Leduc et al. 2019, Willkofer et al. 2020, Poschlod et al., 2020.
Files
Altmuehl-Beilngries_annual-maxflow_1962-2099.txt
Files
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Additional details
Identifiers
- URL
- https://etsin.fairdata.fi/dataset/cd876bdc-667b-44e2-9e5a-a471531af86a
- b2rec
- a02cfe6e13da458f9dec96c043a4c12a
Funding
- Bavarian State Ministry for Environment and Consumer Protection
Instruments
- CRCM5 (regional climate model), WaSiM (hydrological model) undefined (Other)
FMI metadata
- Process step
- Conversion of 3-hourly simulated discharge values to daily values. Derivation of annual maximum values.
- Source data
- Climate input to hydrological model: CRCM5-LE data (available at https://www.climex-project.org/en/data-access/)
- Lineage
- Bias-adjustments of temperature, precipitation, wind speed, shortwave radiation and relative humidity data of 50 members by using a reference data set with respect to observed climatology in southern Germany. Statistical downscaling of bias-adjusted meteorological data to 500 m – model scale. Holistic calibration of WaSiM (i.e., all catchments using same parameter sets) with respect to observed climatology. Simulation of 50 discharge realizations in WaSiM using the bias-adjusted and downscaled meteorological data. Process steps are summarized in Willkofer et al., 2020.
- Platforms
- -
- Model
- WaSiM implementation using Penman-Monteith approach for Evapotranspiration, an enhanced energy balance with snow redistribution by wind and gravitation for snowmelt, Richards equation for soil water movement, Darcy equation for groundwater movements and Van Genuchten parameters for soil parameterization (Willkofer et al. 2020)
- Parameter
-
- Parameter name: Discharge
- Parameter unit: [m³/s]
- Data levels (meter, hectoPascal, degree, sigma pressure levels, other) in vertical direction(+/-) for example 1500 m or 850 hPa
-
- Level: surface
- Resolution
- 500
- Supplemental information
- For educational purposes in the scope of the "Living with changing climate" course only.
- Topic category
- climatologyMeteorologyAtmosphere
Temporal Coverage
Ranges:
Start date: 1961-12-31
End date: 2099-12-30
End date: 2099-12-30