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Universität Heidelberg

On the Impact of Submesoscale Fronts on Mesoscale Eddies and Biological Productivity in the California Current System

Abstract

dc:description.abstract

Submesoscale motions are often not resolved in numerical models, although recent studies suggest that they interact with mesoscale processes. This might be particularly relevant for regions like the California Current System (CCS) where mesoscale processes redistribute nutrients and organic matter to offshore regions. In this study, the impact of submesoscale fronts on mesoscale eddies and biological productivity is examined by comparing two models of the CCS with different horizontal resolutions: a conventional (7.0 km) and a front-permitting resolution (2.8 km). A novel detection algorithm was developed which allows quantifying the area covered by submesoscale fronts. The algorithm reveals that fronts occur more often in anticyclones than in cyclones. This results in a weakening of the density anomaly associated with anticyclones by 40% during winter for the increased resolution. Further, the energy cascade of mesoscale eddies is better resolved contributing to the seasonal evolution of eddy kinetic energy. Finally, the biological productive band at the coast broadens, presumably driven by enhanced lateral transport of nutrients. The results demonstrate that submesoscale and mesoscale motions are inextricably linked and that regional numerical models should aim to resolve submesoscale fronts for future studies.

Degree

thesis:*
Level thesis:degree_level
master
Grantor dc:publisher
Universität Heidelberg
Year
2020

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Simon, Max
Contributors dc:contributor
  • Frank, Norbert

Identifiers

dc:identifier.*
Repository record source_url
http://www.ub.uni-heidelberg.de/archiv/29351
OAI identifier oai:identifier
oai:archiv.ub.uni-heidelberg.de:29351

Chain of custody

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Universität Heidelberg ; Thes
Base URL
archiv.ub.uni-heidelberg.de/volltextserver/cgi/oai2
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Simon, Max. On the Impact of Submesoscale Fronts on Mesoscale Eddies and Biological Productivity in the California Current System. master thesis, Universität Heidelberg, 2020. http://www.ub.uni-heidelberg.de/archiv/29351