Published April 2003 | Version v1
Journal article

Sensitivity of optimal extension of CO2 observation networks to model transport

  • 1. Frontier Research System for Global Change, Yokohama (Japan)
  • 2. TRANSCOM-3 Modelers (United States)

Description

Optimal extensions of the surface CO2 observation network have been determined using 15 global transport models and a time-independent inverse model. The regional average CO2 flux estimate uncertainty is minimized based on the TransCom-3 (level 1) framework. An ensemble model calculation shows that the regional average CO2 flux uncertainties could be reduced to about 0.36, 0.32, 0.28 or 0.26 Gt C/yr per region, from about 0.53 Gt C/yr per region corresponding to the basic network, after adding 5, 10, 15 or 20 optimally located stations, respectively. The additional station locations are mostly found in continental South America and Africa. The distribution of the efficiency in estimation of flux uncertainty reduction per station tends to become more uniform with the extension of the network. We show that the multimodel approach to network design converges if a large enough extension is considered; about 20 stations in this inverse model framework. The reduction in the flux uncertainty for the first few stations depends on the model of atmospheric transport, and is nearly proportional to the simulated signal from local emissions in the surface layer. In addition, it is seen that the simulated spatial and temporal variability of CO2 concentration has significant influence on the distribution of the additional stations as well as determining the regional flux estimate uncertainty

Additional details

Publishing Information

Journal Title
Tellus, Series B: Chemical and Physical Meteorology
Journal Volume
55B
Journal Issue
2
Journal Page Range
p. 498-511
ISSN
0280-6509
CODEN
TSBMD7

INIS

Country of Publication
Sweden
Country of Input or Organization
Sweden
INIS RN
34041315
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
ABUNDANCE; ATMOSPHERIC CHEMISTRY; ATMOSPHERIC CIRCULATION; CARBON CYCLE; CARBON DIOXIDE; MATHEMATICAL MODELS
Descriptors DEC
CARBON COMPOUNDS; CARBON OXIDES; CHALCOGENIDES; CHEMISTRY; OXIDES; OXYGEN COMPOUNDS

Optional Information

Notes
23 refs, 8 figs, 2 tabs