• Evaluation of FESOM2.0 Coupled to ECHAM6.3: Preindustrial and HighResMIP Simulations 

      Sidorenko, D.ORCIDiD; Goessling, H.F.ORCIDiD; Koldunov, N.V.ORCIDiD; Scholz, P.; Danilov, S.ORCIDiD; Barbi, D.; Cabos, W.; Gurses, O.ORCIDiD; Harig, S.; Hinrichs, C.ORCIDiD; Juricke, S.ORCIDiD; Lohmann, G.ORCIDiD; Losch, M.ORCIDiD; Mu, L.ORCIDiD; Rackow, T.ORCIDiD; Rakowsky, N.; Sein, D.ORCIDiD; Semmler, T.ORCIDiD; Shi, X.ORCIDiD; Stepanek, C.ORCIDiD; Streffing, J.; Wang, Q.ORCIDiD; Wekerle, C.ORCIDiD; Yang, H.; Jung, T.ORCIDiD (Journal of Advances in Modeling Earth Systems, 2019)
      A new global climate model setup using FESOM2.0 for the sea ice-ocean component and ECHAM6.3 for the atmosphere and land surface has been developed. Replacing FESOM1.4 by FESOM2.0 promises a higher efficiency of the new ...
    • Impact of Sea‐Ice Model Complexity on the Performance of an Unstructured‐Mesh Sea‐Ice/Ocean Model under Different Atmospheric Forcings 

      Zampieri, LorenzoORCIDiD; Kauker, FrankORCIDiD; Fröhle, JörgORCIDiD; Sumata, HiroshiORCIDiD; Hunke, Elizabeth C.ORCIDiD; Goessling, Helge F.ORCIDiD (Journal of Advances in Modeling Earth Systems, 2021-04-27)
      We have equipped the unstructured‐mesh global sea‐ice and ocean model FESOM2 with a set of physical parameterizations derived from the single‐column sea‐ice model Icepack. The update has substantially broadened the range ...