The mixed-layer depth in the Ocean Model Intercomparison Project (OMIP): Impact of resolving mesoscale eddies

The ocean mixed layer is the interface between the ocean interior and the atmosphere or sea ice and plays a key role in climate variability. It is thus critical that numerical models used in climate studies are capable of a good representation of the mixed layer, especially its depth. Here we evaluate the mixed-layer depth (MLD) in six pairs of non eddying (1 degrees grid spacing) and eddy-rich (up to 1/16 degrees) models from the Ocean Model Intercomparison Project (OMIP), forced by a common atmospheric state. For model evaluation, we use an updated MLD dataset computed from observations using the OMIP protocol (a constant density threshold). In winter, low-resolution models exhibit large biases in the deep-water formation regions. These biases are reduced in eddy-rich models but not uniformly across models and regions. The improvement is most noticeable in the mode water formation regions of the Northern Hemisphere. Results in the Southern Ocean are more contrasted, with biases of either sign remaining at high resolution. In eddy-rich models, mesoscale eddies control the spatial variability in MLD in winter. Contrary to a hypothesis that the deepening of the mixed layer in anticyclones would make the MLD larger globally, eddy-rich models tend to have a shallower mixed layer at most latitudes than coarser models do. In addition, our study highlights the sensitivity of the MLD computation to the choice of a reference level and the spatio-temporal sampling, which motivates new recommendations for MLD computation in future model intercomparison projects.

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Related Dataset #1 : Mixed layer depth climatology computed with a density threshold criterion of 0.03kg/m3 from 10 m depth value

Related Dataset #2 : CMCC CMCC-CM2-SR5 model output prepared for CMIP6 OMIP omip1

Related Dataset #3 : CAS FGOALS-f3-H model output prepared for CMIP6 OMIP omip2

Related Dataset #4 : CSIRO-COSIMA ACCESS-OM2 model output prepared for CMIP6 OMIP omip2

Related Dataset #5 : CAS FGOALS-f3-L model output prepared for CMIP6 OMIP omip1

Related Dataset #6 : NCAR CESM2 model output prepared for CMIP6 OMIP omip1

Related Dataset #7 : ACCESS-OM2 0.1 degree global model output (Interannual forcing simulation)

Related Dataset #8 : The Mixed Layer Depth in the Ocean Model Intercomparison Project (OMIP): Impact of Resolving Mesoscale Eddies: supporting data

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Author Treguier, A. M.
de Boyer Montégut, C.
Bozec, A.
Chassignet, E. P.
Fox-Kemper, B.
McC. Hogg, A.
Iovino, D.
Kiss, A. E.
Le Sommer, J.
Li, Y.
Lin, P.
Lique, C.
Liu, H.
Serazin, G.
Sidorenko, D.
Wang, Q.
Xu, X.
Yeager, Stephen
Publisher UCAR/NCAR - Library
Publication Date 2023-07-12T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2025-07-11T15:16:20.392208
Metadata Record Identifier edu.ucar.opensky::articles:26647
Metadata Language eng; USA
Suggested Citation Treguier, A. M., de Boyer Montégut, C., Bozec, A., Chassignet, E. P., Fox-Kemper, B., McC. Hogg, A., Iovino, D., Kiss, A. E., Le Sommer, J., Li, Y., Lin, P., Lique, C., Liu, H., Serazin, G., Sidorenko, D., Wang, Q., Xu, X., Yeager, Stephen. (2023). The mixed-layer depth in the Ocean Model Intercomparison Project (OMIP): Impact of resolving mesoscale eddies. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d70r9tgb. Accessed 11 August 2025.

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