• www.geodatenkatalog.de (S3F)
  •  
  •  
  •  

  Modelled non-stationary kilometer-scale hourly precipitation extremes of a 100-year event under 2 GWL scenarios for Germany

Given the importance of sub-daily extreme precipitation events for the occurrence of pluvial floods, it is a key component in climate change adaptation to quantify the likelihood of such extreme events under current and future climate conditions. Such assessments are usually limited by a lack of sufficiently dense and sub-daily precipitation observations, (ii) high-resolution convection-permitting regional climate model (CPM) simulations that realistically represent sub-daily precipitation extremes, and (iii) statistical methods that allow us to extrapolate extreme precipitation return levels under limited data availability and non-stationary conditions (i.e., climate change) based on the main governing physical processes.

We overcome these constraints through the utilization of kilometer-scale hourly radar precipitation estimates (RADKLIM) and spatially disaggregated observed daily temperature data (HYRAS-DE-TAS), and the implementation of a novel CPM ensemble covering the entirety of Germany, obtained from the NUKLEUS project within the BMBF-funded RegIKlim (Regionale Information zum Klimahandeln) initiative. Additionally, we introduce the Temperature-dependent Non-Asymptotic statistical model for eXtreme return levels (TENAX) model, a new approach that integrates daily temperature as a covariate, aligning with observed Clausius-Clapeyron scaling rates. This innovation results in a groundbreaking dataset of hourly extreme precipitation for Germany, marking the first instance of accounting for non-stationary climate conditions, i.e., in a +2K and +3K warmer world. The new dataset contains kilometer-scale hourly precipitation extremes for the return level of a 100-year event. Due to the inherent biases of radar-based estimates compared to ground observations, the

precipitation extremes have been bias-adjusted on return level basis using KOSTRA.

 
Citation proposal
(2024) . Modelled non-stationary kilometer-scale hourly precipitation extremes of a 100-year event under 2 GWL scenarios for Germany. https://gdk.gdi-de.org/geonetwork/srv/api/records/wdc-climate.de:5275119
 
  • Identification
  • Distribution
  • Quality
  • Spatial rep.
  • Ref. system
  • Content
  • Portrayal
  • Metadata
  • Md. constraints
  • Md. maintenance
  • Schema info

Identification

Data identification

Citation

Date ( Publication )
2024-03-19
Edition
1
Identifier
PrecExtr100yr
Identifier
doi:10.26050/WDCC/PrecExtr100yr

  Principal investigator

Karlsruhe Institute of Technology - Dr. Patrick Laux  
Contact instructions
Email: patrick.laux@kit.edu
Website
not filled  

  Author

Karlsruhe Institute of Technology - Dr. Patrick Laux  
Contact instructions
Email: patrick.laux@kit.edu
Website
not filled  

  Publisher

WDCC  

  Point of contact

Karlsruhe Institute of Technology - Dr. Patrick Laux  
Website
not filled  

Format

Name
NetCDF
Keywords
  • KARE
Keywords
  • climate impact
Keywords
  • extreme events
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


Supplemental Information
info:eu-repo/grantAgreement/BMBF//01LR2006D/DE//RegIKLIM - KARE (Regional Information on Climate Action)
 

Distribution

Distribution

Distribution format
  • NetCDF ()

Digital transfer options

Transfer size
6
OnLine resource
https://www.wdc-climate.de/ui/entry?acronym=PrecExtr100yr  
 

Quality

Hierarchy level
collection collection
 

Content

Coverage Description

Attribute description
precipitation_amount
Dimension
  •   temporal_extent_00000000_00000000
 

Metadata

Metadata

File identifier
wdc-climate.de:5275119   XML
Metadata language
eng; USA
Hierarchy level
collection collection
Hierarchy level name
PrecExtr100yr
Date stamp
2024-03-14T11:26:00
Metadata standard name
ISO 19115
Metadata standard version
ISO 19115-2:2009

  Point of contact

Karlsruhe Institute of Technology - Dr. Patrick Laux  
Website
not filled  
 
 

  Overviews

  Provided by

  Views

  • INSPIRE
  • Simple
  • Full
  • XML
wdc-climate.de:5275119   Access to the portal Read here the full details and access to the data.

  Associated resources

Not available


  •  
  •