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The framework aims to assess the effects of forest management on forest composition, structure and functioning.
LandClim was designed to examine the impact of climate change and forest management on forest development and structure (Schumacher and Bugmann 2006).
The LEcA tool showed great potential for evaluation of impacts of alternative policies for land zoning and forest management on forest ecosystem services.
In 2009, US forests are estimated to have offset 13% of national greenhouse gas emissions [1], which makes understanding the effects of forest management on forest carbon cycles a high priority.
Our results showed that in Catalonia, at a landscape scale, the impact of forest management on forest bird communities is much smaller than the impact of the widespread maturation of forests following a large-scale decline in traditional uses.
We have a great deal of observational and experimental evidence for the short-term impacts of wildfire and fuel management on forest carbon budgets [2, 6, 11 15] but investigations into long-term carbon dynamics following treatment and wildfire have necessarily relied on simulation models [7 9, 16].
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The quantitative impact of forest management on forests' wood resource was evaluated for Picea and Fagus mixed forests.
Forest growth and management were simulated for the period 2010 2110, following two land zoning scenarios, one applying even-aged forest management on all forest land except for protected areas (EAF-tot), and one applying continuous cover forest management on parts of the forest land, combined with protected areas and an intensified even-aged management on the other parts (CCF-int).
This study will help to explore the impact of future climate change scenarios and forest management on boreal forest landscapes.
While several studies have aimed at estimating the impact of changing forest management on the forest resource based on models (Pussinen et al. 2009; Hynynen et al. 2015; Schelhaas et al. 2015), to our best knowledge there are no studies comparing the impact of current management based on real inventory data.
Since forest management decisions are often made at the landscape level, the landscape-level projections may better inform a forest manager of the consequences of management alternatives on forest growth in the context of climate change.
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