Open-ocean response and normal mode excitation in an eddy-resolving general circulation model
- 1 January 1987
- journal article
- research article
- Published by Taylor & Francis in Geophysical & Astrophysical Fluid Dynamics
- Vol. 37 (4) , 253-278
- https://doi.org/10.1080/03091928708210099
Abstract
Analysis of a two-layer, flat-bottom, steady-wind driven, eddy-resolving general circulation model reveals a distinct separation in frequency of baroclinic and barotropic motion in the region distant from the model Gulf Stream. The far-field motions at periods less (greater) than about 100 days are predominantly barotropic (baroclinic), unlike the near-field, eddy-generating, free-jet region which contains barotropic and baroclinic energy throughout the modei frequency range. The far-field barotropic energy produces a peak in the model sea-level spectra between 25 and 50 days with a magnitude comparable to energy levels observed in spectra of sea level from oceanic island tide gauges. The far-field barotropic motion is clearly composed of large-scale, resonant, barotropic normal modes drive by mesoscale activity of the turbulent, free-jet region. Oceanic mesoscale turbulence may therefore provide for planetary normal modes an excitation mechanism distinct from atmospheric forcing. The open-ocean, barotropic, model response is very similar to that of a fluctuating-wind driven model, which suggests that atmospheric and intrinsic forcing of mid-ocean eddies may be of comparable importance.Keywords
This publication has 36 references indexed in Scilit:
- Waves and circulation driven by oscillatory winds in an idealized ocean basinGeophysical & Astrophysical Fluid Dynamics, 1983
- Regional Eddy Vorticity Transport and the Equilibrium Vorticity Budgets of a Numerical Model Ocean CirculationJournal of Physical Oceanography, 1981
- A parameter study of the mixed instability of idealized ocean currentsDynamics of Atmospheres and Oceans, 1980
- Boundary-Forced Planetary Waves: A Simple Model Mid-Ocean Response to Strong Current VariabilityJournal of Physical Oceanography, 1979
- On the equilibrium linear basin response to fluctuating winds and mesoscale motions in the OceanJournal of Geophysical Research: Oceans, 1979
- Energy analysis of open regions of turbulent flows — mean eddy energetics of a numerical ocean circulation experimentDynamics of Atmospheres and Oceans, 1978
- The Stability of Ocean Currents in Eddy-Resolving General Circulation ModelsJournal of Physical Oceanography, 1978
- The Role of Mesoscale Eddies in the General Circulation of the Ocean—Numerical Experiments Using a Wind-Driven Quasi-Geostrophic ModelJournal of Physical Oceanography, 1978
- Spin-up of a stratified ocean, with topographyDeep Sea Research, 1977
- The Application of Linear Quasigeostrophic Dynamics to Gulf Stream RingsJournal of Physical Oceanography, 1977