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

KATHERINE E. OWEN; JOHN TENHUNEN; MARKUS REICHSTEIN; QUAN WANG; EVA FALGE; RALF GEYER; XIANGMING XIAO; PAUL STOY; CHRISTOF AMMANN; ALTAF ARAIN; MARC AUBINET; MIKA AURELA; CHRISTIAN BERNHOFER; BOGDAN H. CHOJNICKI; ANDRÉ GRANIER; THOMAS GRUENWALD; JULIAN HADLEY; BERNARD HEINESCH; DAVID HOLLINGER; ALEXANDER KNOHL; WERNER KUTSCH; ANNALEA LOHILA; TILDEN MEYERS; EDDY MOORS; CHRISTINE MOUREAUX; KIM PILEGAARD; NOBUKO SAIGUSA; SHASHI VERMA; TIMO VESALA; CHRIS VOGEL
Global Change Biology · Vol. 13, Issue 4 · pp. 734-760 · 2007

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.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2007-04-01
Publication Year2007
Volume13
Issue4
Pages734-760
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/j.1365-2486.2007.01326.x
SubjectConservation Science

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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