Articles | Volume 16, issue 2
https://doi.org/10.5194/bg-16-241-2019
https://doi.org/10.5194/bg-16-241-2019
Research article
 | 
22 Jan 2019
Research article |  | 22 Jan 2019

Simulating growth-based harvest adaptive to future climate change

Rasoul Yousefpour, Julia E. M. S. Nabel, and Julia Pongratz

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Cited articles

Anav, A., Friendlingstein, P., Kidston, M., Bopp, L., Ciais, P., Cox, P., Jones, C., Jung, M., Myneni, R., and Zhu, Z.: Evaluating the Land and Ocean Components of the Global Carbon Cycle in the CMIP5 Earth System Models, J. Climate, 26, 6801–6843, 2013. 
Bellassen, V. and Luyssaert, S.: Carbon sequestration: Managing forests in uncertain times, Nature, 506, 153–155, https://doi.org/10.1038/506153a, 2014. 
Bonan, G. B.: Forests and climate change: forcings, feedbacks, and the climate benefits of forests, Science, 320, 1444–1449, https://doi.org/10.1126/science.1155121, 2008. 
Brenkert, A., Smith, S., Kim, S., and Pitcher, H.: Model Documentation for the MiniCAM, PNNL-14337, Pacific Northwest National Laboratory, Richland, Washington, USA, 2003. 
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Short summary
Global forest resources are accounted for to establish their potential to sink carbon in woody biomass. Climate prediction models realize the effects of future global forest utilization rates, defined by population demand and its evolution over time. However, forest management approaches consider the supply side to realize a sustainable forest carbon stock and adapt the harvest rates to novel climate conditions. This study simulates such an adaptive sustained yield approach.
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