Articles | Volume 8, issue 7
https://doi.org/10.5194/gmd-8-2187-2015
https://doi.org/10.5194/gmd-8-2187-2015
Development and technical paper
 | 
20 Jul 2015
Development and technical paper |  | 20 Jul 2015

Tuning and assessment of the HYCOM-NORWECOM V2.1 biogeochemical modeling system for the North Atlantic and Arctic oceans

A. Samuelsen, C. Hansen, and H. Wehde

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Cited articles

Aagaard, K., Swift, J. H., and Carmack, E. C.: Thermohaline circulation in the Arctic Mediterranean Seas, J. Geophys. Res., 90, 4833, https://doi.org/10.1029/JC090iC03p04833, 1985.
Aksnes, D. L., Ulvestad, K. B., Balino, B. M., Berntsen, J., Egee, J. K., and Svendsen, E.: Ecological modeling in coastal waters – towards predictive physical-chemical-biological simulation-models, Ophelia, 41, 5–36, 1995.
Allen, J. I., Holt, J. T., Blackford, J., and Proctor, R.: Error quantification of a high-resolution coupled hydrodynamic-ecosystem coastal-ocean model: Part 2. Chlorophyll-a, nutrients and SPM, J. Mar. Syst., 68, 381–404, 2007.
Backhaus, J. O., Wehde, H., Hegseth, E. N., Kampf, J., and Wehdel, H.: "Phyto-convection": the role of oceanic convection in primary production, Mar. Ecol. Ser., 189, 77–92, 1999.
Backhaus, J. O., Hegseth, E. N., Wehde, H., Irigoien, X., Hatten, K., and Logemann, K.: Convection and primary production in winter, Mar. Ecol. Prog. Ser., 251, 1–14, https://doi.org/10.3354/meps251001, 2003.
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Short summary
Biogeochemical models are increasingly used in forecasting systems. They provide parameter fields such as nutrients, chlorophyll and oxygen for scientific use and for marine management. This paper describes a model currently used for forecasting the North Atlantic and Arctic oceans on a weekly basis and the evaluation of this model against observations. The model provides reliable fields of nutrients, while the predicted phytoplankton fields are still connected with large uncertainties.