An Improved Canopy Integration Scheme for a Land Surface Model with Prognostic Canopy Structure
Author:
Affiliation:
1. Climate and Global Dynamics Division, National Center for Atmospheric Research,* Boulder, Colorado
2. Department of Landscape Research, Swiss Federal Research Institute WSL, Birmensdorf, Switzerland
Abstract
Publisher
American Meteorological Society
Subject
Atmospheric Science
Link
http://journals.ametsoc.org/jcli/article-pdf/20/15/3902/3937342/jcli4222_1.pdf
Reference86 articles.
1. Terrestrial primary production and phytomass.;Atjay,1979
2. Global response of the terrestrial biosphere to CO2 and climate change using a coupled climate-carbon cycle model.;Berthelot;Global Biogeochem. Cycles,2002
3. Contrasting physiological and structural vegetation feedbacks in climate change simulations.;Betts;Nature,1997
4. The land surface climatology for the NCAR land surface model coupled to the NCAR Community Climate Model.;Bonan;J. Climate,1998
5. Foliage physiology and biochemistry in response to light gradients in conifers with varying shade tolerance.;Bond;Oecologia,1999
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