• LOGIN
    Login with username and password
Repository logo

BORIS Portal

Bern Open Repository and Information System

  • Publications
  • Theses
  • Research Data
  • Projects
  • Organizations
  • Researchers
  • More
  • Collections
  • Statistics
  • LOGIN
    Login with username and password
Repository logo
Unibern.ch
  1. Home
  2. Publications
  3. Climate-induced interannual variability of marine primary and export production in three global coupled climate carbon cycle models

Climate-induced interannual variability of marine primary and export production in three global coupled climate carbon cycle models

Details
Files
DOI
10.7892/boris.37318
Publisher DOI
10.5194/bg-5-597-2008
Abstract
Fully coupled climate carbon cycle models are sophisticated tools that are used to predict future climate change and its impact on the land and ocean carbon cycles. These models should be able to adequately represent natural variability, requiring model validation by observations. The present study focuses on the ocean carbon cycle component, in particular the spatial and temporal variability in net primary productivity (PP) and export production (EP) of particulate organic carbon (POC). Results from three coupled climate carbon cycle models (IPSL, MPIM, NCAR) are compared with observation-based estimates derived from satellite measurements of ocean colour and results from inverse modelling (data assimilation). Satellite observations of ocean colour have shown that temporal variability of PP on the global scale is largely dominated by the permanently stratified, low-latitude ocean (Behrenfeld et al., 2006) with stronger stratification (higher sea surface temperature; SST) being associated with negative PP anomalies. Results from all three coupled models confirm the role of the low-latitude, permanently stratified ocean for anomalies in globally integrated PP, but only one model (IPSL) also reproduces the inverse relationship between stratification (SST) and PP. An adequate representation of iron and macronutrient co-limitation of phytoplankton growth in the tropical ocean has shown to be the crucial mechanism determining the capability of the models to reproduce observed interactions between climate and PP.
Date Issued
2008
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Language(s)
en
Author(s)
Schneider, B.
Bopp, L.
Gehlen, M.
Segschneider, J.
Fröhlicher, T. L.
Cadule, P.
Friedlingstein, P.
Doney, S. C.
Behrenfeld, M. J.
Joos, Fortunat  orcid-logo
Physikalisches Institut, Klima- und Umweltphysik (KUP)  
Additional Credits
Physikalisches Institut, Klima- und Umweltphysik (KUP)  
Journal
Biogeosciences
Publisher
Copernicus Publications
ISSN
1726-4170
Access(Rights)
open.access
Show full item
BORIS Portal
Bern Open Repository and Information System
Build: 24f0a9 [ 4.09. 8:55]
Explore
  • Projects
  • Funding
  • Publications
  • Research Data
  • Organizations
  • Researchers
  • Audiovisual Material
  • Software & other digital items
  • Events
More
  • About BORIS Portal
  • BORIS Portal & Open Science
  • Send Feedback
  • Cookie settings
  • Service Policy
Follow us on
  • Mastodon
  • YouTube
  • LinkedIn
UniBe logo
Repository logo COAR Notify