Vertical structure and energetic constraints for a backscatter parameterization of ocean mesoscale eddies

Mesoscale eddies modulate the stratification, mixing, tracer transport, and dissipation pathways of oceanic flows over a wide range of spatiotemporal scales. The parameterization of buoyancy and momentum fluxes associated with mesoscale eddies thus presents an evolving challenge for ocean modelers, particularly as modern climate models approach eddy-permitting resolutions. Here we present a parameterization targeting such resolutions through the use of a subgrid mesoscale eddy kinetic energy budget (MEKE) framework. Our study presents two novel insights: (a) both the potential and kinetic energy effects of eddies may be parameterized via a kinetic energy backscatter, with no Gent-McWilliams along-isopycnal transport; (b) a dominant factor in ensuring a physically-accurate backscatter is the vertical structure of the parameterized momentum fluxes. We present simulations of 1/2 degrees and 1/4 degrees resolution idealized models with backscatter applied to the equivalent barotropic mode. Remarkably, the global kinetic and potential energies, isopycnal structure, and vertical energy partitioning show significantly improved agreement with a 1/32 degrees reference solution. Our work provides guidance on how to parameterize mesoscale eddy effects in the challenging eddy-permitting regime.

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Related Dataset #1 : NeverWorld2

Related Software #1 : ocean-eddy-cpt/NeverWorld2: NeverWorld2-description-paper

Related Workflow #1 : Backscatter parameterization manuscript: analysis notebooks and 1/2 degree simulation data

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Author Yankovsky, E.
Bachman, Scott
Smith, K. S.
Zanna, L.
Publisher UCAR/NCAR - Library
Publication Date 2024-07-01T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2025-07-10T20:00:33.892014
Metadata Record Identifier edu.ucar.opensky::articles:27342
Metadata Language eng; USA
Suggested Citation Yankovsky, E., Bachman, Scott, Smith, K. S., Zanna, L.. (2024). Vertical structure and energetic constraints for a backscatter parameterization of ocean mesoscale eddies. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d71n85bk. Accessed 05 August 2025.

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