A new stepwise carbon cycle data assimilation system using multiple data streams to constrain the simulated land surface carbon cycle


Autoria(s): Peylin, Phillippe; Bacour, Cedric; MacBean, Natasha; Leonard, Sebastian; Rayner, Peter; Kuppel, Sylvain; Koffi, Ernest; Kane, Abdou; Maignan, Fabienne; Chevallier, Frederic; Ciais, Phillippe; Prunet, Pascal
Contribuinte(s)

University of Aberdeen, Geosciences, Geography & Environment

Data(s)

20/09/2016

20/09/2016

01/09/2016

Resumo

Acknowledgements. This work was mainly funded by the EU FP7 CARBONES project (contracts FP7-SPACE-2009-1-242316), with also a small contribution from GEOCARBON project (ENV.2011.4.1.1-1-283080). This work used eddy covariance data acquired by the FLUXNET community and in particular by the following networks: AmeriFlux (U.S. Department of Energy, Biological and Environmental Research, Terrestrial Carbon Program; DE-FG02-04ER63917 and DE-FG02-04ER63911), AfriFlux, AsiaFlux, CarboAfrica, CarboEuropeIP, CarboItaly, CarboMont, ChinaFlux, Fluxnet-Canada (supported by CFCAS, NSERC, BIOCAP, Environment Canada, and NRCan), GreenGrass, KoFlux, LBA, NECC, OzFlux, TCOS-Siberia, USCCC. We acknowledge the financial support to the eddy covariance data harmonization provided by CarboEuropeIP, FAO-GTOS-TCO, iLEAPS, Max Planck Institute for Biogeochemistry, National Science Foundation, University of Tuscia, Université Laval and Environment Canada and US Department of Energy and the database development and technical support from Berkeley Water Center, Lawrence Berkeley National Laboratory, Microsoft Research eScience, Oak Ridge National Laboratory, University of California-Berkeley, University of Virginia. Philippe Ciais acknowledges support from the European Research Council through Synergy grant ERC-2013-SyG-610028 “IMBALANCE-P”. The authors wish to thank M. Jung for providing access to the GPP MTE data, which were downloaded from the GEOCARBON data portal (https://www.bgc-jena.mpg.de/geodb/projects/Data.php). The authors are also grateful to computing support and resources provided at LSCE and to the overall ORCHIDEE project that coordinate the development of the code (http://labex.ipsl.fr/orchidee/index.php/about-the-team).

Peer reviewed

Publisher PDF

Formato

26

Identificador

Peylin , P , Bacour , C , MacBean , N , Leonard , S , Rayner , P , Kuppel , S , Koffi , E , Kane , A , Maignan , F , Chevallier , F , Ciais , P & Prunet , P 2016 , ' A new stepwise carbon cycle data assimilation system using multiple data streams to constrain the simulated land surface carbon cycle ' Geoscientific Model Development , vol 9 , no. 9 , pp. 3321-3346 . , 10.5194/gmd-9-3321-2016

1991-959X

PURE: 68926330

PURE UUID: ab0567e3-8a1e-4040-8cab-a28a37ebc1c9

http://hdl.handle.net/2164/7492

http://dx.doi.org/10.5194/gmd-9-3321-2016

Idioma(s)

eng

Relação

Geoscientific Model Development

Direitos

© Author(s) 2016. This work is distributed under the Creative Commons Attribution 3.0 License. https://creativecommons.org/licenses/by/3.0/

Palavras-Chave #GE Environmental Sciences #GE
Tipo

Journal article