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  TransCom 3 CO2 inversion intercomparison: 2. Sensitivity of annual mean results to data choices

Law, R. M., Chen, Y.-H., Gurney, K. R., Baker, D., Bousquet, P., Bruhwiler, L., et al. (2003). TransCom 3 CO2 inversion intercomparison: 2. Sensitivity of annual mean results to data choices. Tellus, Series B - Chemical and Physical Meteorology, 55(2), 580-595.

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 Creators:
Law, R. M., Author
Chen, Y.-H., Author
Gurney, K. R., Author
Baker, D., Author
Bousquet, P., Author
Bruhwiler, L., Author
Ciais, P., Author
Denning, A. S., Author
Fan, S., Author
Fung, I. Y., Author
Gloor, M.1, Author           
Heimann, M.2, Author           
Higuchi, K., Author
John, J., Author
Maki, T., Author
Maksyutov, S., Author
Pak, B., Author
Peylin, P., Author
Prather, M., Author
Rayner, N., Author
Sarmiento, J., AuthorTaguchi, S., AuthorTakahashi, T., AuthorYuen, C.-W., Author more..
Affiliations:
1Tall Tower Atmospheric Gas Measurements, Dr. J. Lavrič, Department Biogeochemical Systems, Prof. M. Heimann, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497786              
2Department Biogeochemical Systems, Prof. M. Heimann, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497755              

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Free keywords: atmospheric transport models; carbon-dioxide data; sink
 Abstract: TransCom 3 is an intercomparison project for CO2 source inversions. Annual mean CO2 concentration data are used to estimate CO2 sources using 16 different atmospheric transport models. Here we test the sensitivity of the inversion to the concentration data. We examine data network choice, time period of data, baseline data selection and the choice of data uncertainty used. We find that in most cases regional source estimates lie within the source uncertainty range of the control inversion. This indicates that the estimated sources are relatively insensitive to the changes in data that were tested. In the data network tests, only the Australian region source estimates varied over a much larger range than that given by the control case uncertainty estimate. For the other regions, the sensitivity to data network was within or close to the uncertainty range. Most of the sensitivity was found to be associated with a small number of sites (e.g. Darwin, Easter Island). These sites are often identified by the inability of the inversion to fit the data at these locations. The model-mean inversion values are mostly insensitive to the time period of data used, with the exception of temperate North America and the tropical Indian ocean. Data selection has a small impact on source estimates for the mean across models, but individual model sensitivity can be large. The magnitude of data uncertainties controls the relative magnitude of the estimated source uncertainty and the spread in model source estimates. Smaller data uncertainties lead to larger differences in source estimates between models. Overall, the data sensitivity tests performed here support the robustness of the control inversion source estimates presented in Gurney et al. (2003. Tellus 55B, this issue). The test results also provide guidance in setting up and interpreting other inversions.

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 Dates: 2003
 Publication Status: Issued
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 Identifiers: ISI: ://000182698400043
Other: BGC0653
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Title: Tellus, Series B - Chemical and Physical Meteorology
Source Genre: Journal
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Publ. Info: Copenhagen : Swedish Geophysical Society :
Pages: - Volume / Issue: 55 (2) Sequence Number: - Start / End Page: 580 - 595 Identifier: CoNE: https://pure.mpg.de/cone/journals/resource/954925506308
ISSN: 0280-6509