Articles | Volume 16, issue 2
https://doi.org/10.5194/bg-16-467-2019
https://doi.org/10.5194/bg-16-467-2019
Research article
 | 
25 Jan 2019
Research article |  | 25 Jan 2019

A simple time-stepping scheme to simulate leaf area index, phenology, and gross primary production across deciduous broadleaf forests in the eastern United States

Qinchuan Xin, Yongjiu Dai, and Xiaoping Liu

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Cited articles

Akaike, H.: Fitting autoregressive models for prediction, Ann. I. Stat. Math., 21, 243–247, 1969. 
Allen, R. G., Pereira, L. S., Raes, D., and Smith, M.: Crop evapotranspiration-Guidelines for computing crop water requirements-FAO Irrigation and drainage paper 56, FAO, Rome, 300, 6541, 1998. 
AmeriFlux: flux tower data, available at: http://ameriflux.lbl.gov/data/download-data, last access: 13 January 2019. 
Arora, V. K. and Boer, G. J.: A parameterization of leaf phenology for the terrestrial ecosystem component of climate models, Glob. Change Biol., 11, 39–59, 2005. 
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Short summary
Terrestrial biosphere models that simulate both leaf dynamics and canopy photosynthesis are required to understand vegetation–climate interactions. A time-stepping scheme is proposed to simulate leaf area index, phenology, and gross primary production via climate variables. The method performs well on simulating deciduous broadleaf forests across the eastern United States; it provides a simplified and improved version of the growing production day model for use in land surface modeling.
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