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  Linking flux network measurements to continental scale simulations: ecosystem carbon dioxide exchange capacity under non-water-stressed conditions

Owen, K. E., Tenhunen, J., Reichstein, M., Wang, Q., Falge, E., Geyer, R., et al. (2007). Linking flux network measurements to continental scale simulations: ecosystem carbon dioxide exchange capacity under non-water-stressed conditions. Global Change Biology, 13(4), 734-760. doi:10.1111/j.1365-2486.2007.01326.x.

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Owen, K. E., Author
Tenhunen, J., Author
Reichstein, M.1, Author           
Wang, Q., Author
Falge, E., Author
Geyer, R., Author
Xiao, X. M., Author
Stoy, P., Author
Ammann, C., Author
Arain, A., Author
Aubinet, M., Author
Aurela, M., Author
Bernhofer, C., Author
Chojnicki, B. H., Author
Granier, A., Author
Gruenwald, T., Author
Hadley, J., Author
Heinesch, B., Author
Hollinger, D., Author
Knohl, A.2, Author           
Kutsch, W. L.2, Author           Lohila, A., AuthorMeyers, T., AuthorMoors, E., AuthorMoureaux, C., AuthorPilegaard, K., AuthorSaigusa, N., AuthorVerma, S., AuthorVesala, T., AuthorVogel, C., Author more..
Affiliations:
1Research Group Biogeochemical Model-data Integration, Dr. M. Reichstein, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497760              
2Department Biogeochemical Processes, Prof. E.-D. Schulze, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497751              

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Free keywords: carbon dioxide exchange; crops; eddy covariance; forest; grassland; gross primary production; model inversion; net ecosystem exchange; up-scaling; wetland NORTHERN TEMPERATE GRASSLAND; GROSS PRIMARY PRODUCTION; ATMOSPHERE CO2 EXCHANGE; EDDY-COVARIANCE MEASUREMENTS; DAILY CANOPY PHOTOSYNTHESIS; DANISH BEECH FOREST; LEAF-AREA INDEX; RAIN-FED MAIZE; LONG-TERM; PROCESS MODEL
 Abstract: This paper examines long-term eddy covariance data from 18 European and 17 North American and Asian forest, wetland, tundra, grassland, and cropland sites under non-water-stressed conditions with an empirical rectangular hyperbolic light response model and a single layer two light-class carboxylase-based model. Relationships according to ecosystem functional type are demonstrated between empirical and physiological parameters, suggesting linkages between easily estimated parameters and those with greater potential for process interpretation. Relatively sparse documentation of leaf area index dynamics at flux tower sites is found to be a major difficulty in model inversion and flux interpretation. Therefore, a simplification of the physiological model is carried out for a subset of European network sites with extensive ancillary data. The results from these selected sites are used to derive a new parameter and means for comparing empirical and physiologically based methods across all sites, regardless of ancillary data. The results from the European analysis are then compared with results from the other Northern Hemisphere sites and similar relationships for the simplified process-based parameter were found to hold for European, North American, and Asian temperate and boreal climate zones. This parameter is useful for bridging between flux network observations and continental scale spatial simulations of vegetation/atmosphere carbon dioxide exchange.

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Language(s): eng - English
 Dates: 2007
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1111/j.1365-2486.2007.01326.x
ISI: ://000245940800002
Other: BGC0985
 Degree: -

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Title: Global Change Biology
Source Genre: Journal
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Publ. Info: Oxford, UK : Blackwell Science
Pages: - Volume / Issue: 13 (4) Sequence Number: - Start / End Page: 734 - 760 Identifier: CoNE: https://pure.mpg.de/cone/journals/resource/954925618107
ISSN: 1354-1013