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Quasi-two-dimensional flow on the polar β-plane: Laboratory experiments
Authors:S Espa  A Cenedese  M Mariani  GF Carnevale
Institution:aDipartimento di Idraulica Trasporti e Strade, Sapienza Università di Roma, via Eudossiana 18, 00184 Roma, Italy;bScripps Institution of Oceanography, University of California, San Diego, La Jolla, CA 92093, USA
Abstract:Geophysical turbulence is strongly affected by the variation of the Coriolis parameter with latitude. This variation results in the so-called β-effect, which forces energy from small-scales to be transferred preferentially into zonal motions. This effect results in the formation of narrow jet-like zonal flows that dominate the dynamics and act as transport barriers. Here, laboratory experiments are used to reproduce this effect in decaying turbulent flows. An electromagnetic cell is used to generate an initial field of vorticity in a rotating tank. Under conditions of quasi-geostrophic flow, the β-effect is produced by depth variation of the flow instead of variation of the Coriolis parameter. The effects of changing the container geometry and the overall fluid depth on the production of jets are investigated. The results suggest that this laboratory configuration can be used to model jet formation in the oceans and that increasing fluid depth is a practical way to decrease viscous effects.
Keywords:Beta-plane  Vortices  Topography  Turbulence
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