• Fast EVP Solutions in a High-Resolution Sea Ice Model 

      Koldunov, Nikolay V.ORCIDiD; Danilov, SergeyORCIDiD; Sidorenko, DmitryORCIDiD; Hutter, NilsORCIDiD; Losch, MartinORCIDiD; Goessling, HelgeORCIDiD; Rakowsky, NataljaORCIDiD; Scholz, PatrickORCIDiD; Sein, DmitryORCIDiD; Wang, QiangORCIDiD; Jung, ThomasORCIDiD (Journal of Advances in Modeling Earth Systems, 2019)
      Sea ice dynamics determine the drift and deformation of sea ice. Nonlinear physics, usually expressed in a viscous-plastic rheology, makes the sea ice momentum equations notoriously difficult to solve. At increasing sea ...
    • Sea Ice Rheology Experiment (SIREx): 2. Evaluating Linear Kinematic Features in High‐Resolution Sea Ice Simulations 

      Hutter, NilsORCIDiD; Bouchat, AmélieORCIDiD; Dupont, FrédéricORCIDiD; Dukhovskoy, DmitryORCIDiD; Koldunov, NikolayORCIDiD; Lee, Younjoo J.ORCIDiD; Lemieux, Jean‐FrançoisORCIDiD; Lique, CamilleORCIDiD; Losch, MartinORCIDiD; Maslowski, WieslawORCIDiD; Myers, Paul G.ORCIDiD; Ólason, EinarORCIDiD; Rampal, Pierre; Rasmussen, TillORCIDiD; Talandier, Claude; Tremblay, BrunoORCIDiD; Wang, QiangORCIDiD (Journal of Geophysical Research: Oceans, 2022-04-23)
      Simulating sea ice drift and deformation in the Arctic Ocean is still a challenge because of the multiscale interaction of sea ice floes that compose the Arctic Sea ice cover. The Sea Ice Rheology Experiment (SIREx) is a ...