All Stories

  1. Internal-wave-induced dissipation rates in the Weddell Sea Bottom Water gravity current
  2. Anisotropic internal tide forcing in the consistent internal wave mixing scheme IDEMIX
  3. Internal tide generation from linear theory: Supercritical slopes, directionality, and ocean mixing implications
  4. Modelling the Ocean Circulation during the mid-Cretaceous using an Energetically Consistent Internal Wave Model in the Community Earth System Model
  5. Parameterized internal wave mixing in three ocean general circulation models
  6. Towards Parameterizing Eddy-Mediated Transport of Circumpolar Deep Water across Antarctic Continental Slopes
  7. Tidal Conversion into Vertical Normal Modes by Near-Critical Topography
  8. Interacting internal waves explain global patterns of interior ocean mixing
  9. Internal-wave-induced dissipation rates in the Weddell Sea Bottom Water gravity current
  10. Toward Parameterizing Eddy-Mediated Transport of Warm Deep Water across the Weddell Sea Continental Slope
  11. Parameterized Internal Wave Mixing in Three Ocean General Circulation Models
  12. A Model of Energy and Spectral Shape for the Internal Gravity Wave Field in the Deep Sea: The Parametric IDEMIX Model
  13. Resolving the Horizontal Direction of Internal Tide Generation: Global Application for the M2 Tide’s First Mode
  14. Parameterized internal wave mixing in three ocean general circulation models
  15. Global characterization of the ocean’s internal wave spectrum
  16. Towards a Global Spectral Energy Budget for Internal Gravity Waves in the Ocean
  17. Numerical Evaluation of Energy Transfers in Internal Gravity Wave Spectra of the Ocean
  18. On PSI Interactions in Internal Gravity Wave Fields and the Decay of Baroclinic Tides
  19. Resolving the horizontal direction of internal tide generation
  20. The IDEMIX Model: Parameterization of Internal Gravity Waves for Circulation Models of Ocean and Atmosphere
  21. Evaluating the Global Internal Wave Model IDEMIX Using Finestructure Methods
  22. Stability of the thermohaline circulation examined with a one-dimensional fluid loop
  23. Effects of the Asymmetry between Surface and Interior Flow on the Dynamics of a Thermohaline Loop