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Preformed and regenerated phosphate in ocean general circulation models: Can right total concentrations be wrong?

  • O. Duteil
  • , W. Koeve
  • , A. Oschlies
  • , O. Aumont
  • , D. Bianchi
  • , L. Bopp
  • , E. Galbraith
  • , R. Matear
  • , J. K. Moore
  • , J. L. Sarmiento
  • , J. Segschneider
  • GEOMAR Helmholtz Centre for Ocean Research Kiel
  • Centre IRD de Bretagne
  • Princeton University
  • UVSQ
  • McGill University
  • Commonwealth Scientific and Industrial Research Organization
  • Long Beach VA and University of California
  • Max Planck Institute for Meteorology

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Phosphate distributions simulated by seven state-of-the-art biogeochemical ocean circulation models are evaluated against observations of global ocean nutrient distributions. The biogeochemical models exhibit different structural complexities, ranging from simple nutrient-restoring to multi-nutrient NPZD type models. We evaluate the simulations using the observed volume distribution of phosphate. The errors in these simulated volume class distributions are significantly larger when preformed phosphate (or regenerated phosphate) rather than total phosphate is considered. Our analysis reveals that models can achieve similarly good fits to observed total phosphate distributions for a∼very different partitioning into preformed and regenerated nutrient components. This has implications for the strength and potential climate sensitivity of the simulated biological carbon pump. We suggest complementing the use of total nutrient distributions for assessing model skill by an evaluation of the respective preformed and regenerated nutrient components.

langue originaleAnglais
Pages (de - à)1797-1807
Nombre de pages11
journalBiogeosciences
Volume9
Numéro de publication5
Les DOIs
étatPublié - 4 juin 2012
Modification externeOui

SDG des Nations Unies

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  1. SDG 13 - Action climatique
    SDG 13 Action climatique

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