Impact of Canopy Decoupling and Subcanopy Advection on the Annual Carbon Balance of a Boreal Scots Pine Forest as Derived From Eddy Covariance. Jocher, G., Marshall, J., Nilsson, M. B., Linder, S., De Simon, G., Hörnlund, T., Lundmark, T., Näsholm, T., Ottosson Löfvenius, M., Tarvainen, L., Wallin, G., & Peichl, M. Journal of Geophysical Research: Biogeosciences, 123(2):303–325, feb, 2018.
Impact of Canopy Decoupling and Subcanopy Advection on the Annual Carbon Balance of a Boreal Scots Pine Forest as Derived From Eddy Covariance [link]Paper  doi  bibtex   
@article{Jocher2018,
author = {Jocher, Georg and Marshall, John and Nilsson, Mats B. and Linder, Sune and {De Simon}, Giuseppe and H{\"{o}}rnlund, Thomas and Lundmark, Tomas and N{\"{a}}sholm, Torgny and {Ottosson L{\"{o}}fvenius}, Mikaell and Tarvainen, Lasse and Wallin, G{\"{o}}ran and Peichl, Matthias},
doi = {10.1002/2017JG003988},
issn = {21698953},
journal = {Journal of Geophysical Research: Biogeosciences},
month = {feb},
number = {2},
pages = {303--325},
title = {{Impact of Canopy Decoupling and Subcanopy Advection on the Annual Carbon Balance of a Boreal Scots Pine Forest as Derived From Eddy Covariance}},
url = {http://doi.wiley.com/10.1002/2017JG003988},
volume = {123},
year = {2018}
}

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