Effects of High Resolution and Spinup Time on Modeled North Atlantic Circulation


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christopher.danek [ at ] awi.de

Abstract

<jats:title>Abstract</jats:title><jats:p>The influence of a high horizontal resolution (5–15 km) on the general circulation and hydrography in the North Atlantic is investigated using the Finite Element Sea Ice–Ocean Model (FESOM). We find a stronger shift of the upper-ocean circulation and water mass properties during the model spinup in the high-resolution model version compared to the low-resolution (~1°) control run. In quasi equilibrium, the high-resolution model is able to reduce typical low-resolution model biases. Especially, it exhibits a weaker salinification of the North Atlantic subpolar gyre and a reduced mixed layer depth in the Labrador Sea. However, during the spinup adjustment, we see that initially improved high-resolution features partially reduce over time: the strength of the Atlantic overturning and the path of the North Atlantic Current are not maintained, and hence hydrographic biases known from low-resolution ocean models return in the high-resolution quasi-equilibrium state. We identify long baroclinic Rossby waves as a potential cause for the strong upper-ocean adjustment of the high-resolution model and conclude that a high horizontal resolution improves the state of the modeled ocean but the model integration length should be chosen carefully.</jats:p>



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Eprint ID
49675
DOI https://www.doi.org/10.1175/jpo-d-18-0141.1

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Danek, C. , Scholz, P. and Lohmann, G. (2019): Effects of High Resolution and Spinup Time on Modeled North Atlantic Circulation , Journal of Physical Oceanography, 49 (5), pp. 1159-1181 . doi: https://www.doi.org/10.1175/jpo-d-18-0141.1


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