Published December 5, 2019 | Version v1
Journal article Open

A regional atmosphere–ocean climate system model (CCLMv5.0clm7-NEMOv3.3-NEMOv3.6) over Europe including three marginal seas: on its stability and performance

  • 1. Institute for Atmospheric and Environmental Sciences, Goethe University, Frankfurt am Main, Germany
  • 2. Institute of Meteorology and Climate Research, Karlsruhe Institute of Technology, Karlsruhe, Germany
  • 3. Institute of Coastal Research, Helmholtz-Zentrum Geesthacht, Geesthacht, Germany

Description

The frequency of extreme events has changed, having a direct impact on human lives. Regional climate models help us to predict these regional climate changes. This work presents an atmosphere–ocean coupled regional climate system model (RCSM; with the atmospheric com- ponent COSMO-CLM and the ocean component NEMO) over the European domain, including three marginal seas: the Mediterranean, North, and Baltic Sea. To test the model, we evaluate a simulation of more than 100 years (1900–2009) with a spatial grid resolution of about 25 km. The simula- tion was nested into a coupled global simulation with the model MPI-ESM in a low-resolution configuration, whose ocean temperature and salinity were nudged to the ocean– ice component of the MPI-ESM forced with the NOAA 20th Century Reanalysis (20CR). The evaluation shows the ro- bustness of the RCSM and discusses the added value by the coupled marginal seas over an atmosphere-only simulation. The coupled system is stable for the complete 20th century and provides a better representation of extreme temperatures compared to the atmosphere-only model. The produced long- term dataset will help us to better understand the processes leading to meteorological and climate extremes.

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Funding

European Commission
SOCLIMPACT - DownScaling CLImate imPACTs and decarbonisation pathways in EU islands, and enhancing socioeconomic and non-market evaluation of Climate Change for Europe, for 2050 and beyond. 776661