Published April 2003 | Version v1
Journal article

Inter-annual variability of the atmospheric carbon dioxide concentrations as simulated with global terrestrial biosphere models and an atmospheric transport model

  • 1. Tohoku Univ., Sendai (Japan). Center for Atmospheric and Oceanic Studies
  • 2. Inst. for Global Change Research, Yokohama (Japan). Frontier Research System for Global Change
  • 3. National Center for Atmospheric Research, Boulder, CO (United States). Climate and Global Dynamics Div.

Description

Seasonal and inter-annual variations of atmospheric CO2 for the period from 1961 to 1997 have been simulated using a global tracer transport model driven by a new version of the Biome BioGeochemical Cycle model (Biome-BGC). Biome-BGC was forced by daily temperature and precipitation from the NCEP reanalysis dataset, and the calculated monthly-averaged CO2 fluxes were used as input to the global transport model. Results from an inter-comparison with the Carnegie-Ames-Stanford Approach model (CASA) and the Simulation model of Carbon CYCLE in Land Ecosystems (Sim-CYCLE) model are also reported. The phase of the seasonal cycle in the Northern Hemisphere was reproduced generally well by Biome-BGC, although the amplitude was smaller compared to the observations and to the other biosphere models. The CO2 time series simulated by Biome-BGC were compared to the global CO2 concentration anomalies from the observations at Mauna Loa and the South Pole. The modeled concentration anomalies matched the phase of the inter-annual variations in the atmospheric CO2 observations; however, the modeled amplitude was lower than the observed value in several cases. The result suggests that a significant part of the inter-annual variability in the global carbon cycle can be accounted for by the terrestrial biosphere models. Simulations performed with another climate-based model, Sim-CYCLE, produced a larger amplitude of inter-annual variability in atmospheric CO2, making the amplitude closer to the observed range, but with a more visible phase mismatch in a number of time periods. This may indicate the need to increase the Biome-BGC model sensitivity to seasonal and inter-annual changes in temperature and precipitation

Additional details

Publishing Information

Journal Title
Tellus, Series B: Chemical and Physical Meteorology
Journal Volume
55B
Journal Issue
2
Journal Page Range
p. 530-546
ISSN
0280-6509
CODEN
TSBMD7

INIS

Country of Publication
Sweden
Country of Input or Organization
Sweden
INIS RN
34041318
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
ABUNDANCE; AIR-BIOSPHERE INTERACTIONS; ANNUAL VARIATIONS; ATMOSPHERIC CHEMISTRY; ATMOSPHERIC CIRCULATION; CARBON DIOXIDE
Descriptors DEC
CARBON COMPOUNDS; CARBON OXIDES; CHALCOGENIDES; CHEMISTRY; OXIDES; OXYGEN COMPOUNDS; VARIATIONS

Optional Information

Notes
58 refs, 5 figs, 7 tabs