The Role of Rough Topography in Mediating Impacts of Bottom Drag in Eddying Ocean Circulation Models

Author:

Trossman David S.123,Arbic Brian K.3,Straub David N.4,Richman James G.5,Chassignet Eric P.5,Wallcraft Alan J.6,Xu Xiaobiao5

Affiliation:

1. a Goddard Earth Sciences Technology and Research, Greenbelt, Maryland

2. b Department of Earth and Planetary Sciences, The Johns Hopkins University, Baltimore, Maryland

3. c Department of Earth and Environmental Sciences, University of Michigan, Ann Arbor, Michigan

4. d Department of Atmospheric and Oceanic Sciences, McGill University, Montreal, Quebec, Canada

5. e Center for Ocean–Atmospheric Prediction Studies, Florida State University, Tallahassee, Florida

6. f Oceanography Division, Naval Research Laboratory, Stennis Space Center, Mississippi

Abstract

AbstractMotivated by the substantial sensitivity of eddies in two-layer quasigeostrophic (QG) turbulence models to the strength of bottom drag, this study explores the sensitivity of eddies in more realistic ocean general circulation model (OGCM) simulations to bottom drag strength. The OGCM results are interpreted using previous results from horizontally homogeneous, two-layer, flat-bottom, f-plane, doubly periodic QG turbulence simulations and new results from two-layer, β-plane QG turbulence simulations run in a basin geometry with both flat and rough bottoms. Baroclinicity in all of the simulations varies greatly with drag strength, with weak drag corresponding to more barotropic flow and strong drag corresponding to more baroclinic flow. The sensitivity of the baroclinicity in the QG basin simulations to bottom drag is considerably reduced, however, when rough topography is used in lieu of a flat bottom. Rough topography reduces the sensitivity of the eddy kinetic energy amplitude and horizontal length scales in the QG basin simulations to bottom drag to an even greater degree. The OGCM simulation behavior is qualitatively similar to that in the QG rough-bottom basin simulations, in that baroclinicity is more sensitive to bottom drag strength than are eddy amplitudes or horizontal length scales. Rough topography therefore appears to mediate the sensitivity of eddies in models to the strength of bottom drag. The sensitivity of eddies to parameterized topographic internal lee wave drag, which has recently been introduced into some OGCMs, is also briefly discussed. Wave drag acts like a strong bottom drag in that it increases the baroclinicity of the flow, without strongly affecting eddy horizontal length scales.

Funder

National Science Foundation

Office of Naval Research

Publisher

American Meteorological Society

Subject

Oceanography

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