NeverWorld2: an idealized model hierarchy to investigate ocean mesoscale eddies across resolutions
NeverWorld2: an idealized model hierarchy to investigate ocean mesoscale eddies across resolutions
Date
2022-09-01
Authors
Marques, Gustavo
Loose, Nora
Yankovsky, Elizabeth
Steinberg, Jacob M.
Chang, Chiung-Yin
Bhamidipati, Neeraja
Adcroft, Alistair
Fox-Kemper, Baylor
Griffies, Stephen M.
Hallberg, Robert
Jansen, Malte F.
Khatri, Hemant
Zanna, Laure
Loose, Nora
Yankovsky, Elizabeth
Steinberg, Jacob M.
Chang, Chiung-Yin
Bhamidipati, Neeraja
Adcroft, Alistair
Fox-Kemper, Baylor
Griffies, Stephen M.
Hallberg, Robert
Jansen, Malte F.
Khatri, Hemant
Zanna, Laure
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DOI
10.5194/gmd-15-6567-2022
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Abstract
We describe an idealized primitive-equation model for studying mesoscale turbulence and leverage a hierarchy of grid resolutions to make eddy-resolving calculations on the finest grids more affordable. The model has intermediate complexity, incorporating basin-scale geometry with idealized Atlantic and Southern oceans and with non-uniform ocean depth to allow for mesoscale eddy interactions with topography. The model is perfectly adiabatic and spans the Equator and thus fills a gap between quasi-geostrophic models, which cannot span two hemispheres, and idealized general circulation models, which generally include diabatic processes and buoyancy forcing. We show that the model solution is approaching convergence in mean kinetic energy for the ocean mesoscale processes of interest and has a rich range of dynamics with circulation features that emerge only due to resolving mesoscale turbulence.
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© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Marques, G. M., Loose, N., Yankovsky, E., Steinberg, J. M., Chang, C.-Y., Bhamidipati, N., Adcroft, A., Fox-Kemper, B., Griffies, S. M., Hallberg, R. W., Jansen, M. F., Khatri, H., & Zanna, L. NeverWorld2: an idealized model hierarchy to investigate ocean mesoscale eddies across resolutions. Geoscientific Model Development, 15(17), (2022): 6567–6579, https://doi.org/10.5194/gmd-15-6567-2022.
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Marques, G. M., Loose, N., Yankovsky, E., Steinberg, J. M., Chang, C.-Y., Bhamidipati, N., Adcroft, A., Fox-Kemper, B., Griffies, S. M., Hallberg, R. W., Jansen, M. F., Khatri, H., & Zanna, L. (2022). NeverWorld2: an idealized model hierarchy to investigate ocean mesoscale eddies across resolutions. Geoscientific Model Development, 15(17), 6567–6579.