Changes in winter conditions impact forest management in north temperate forests
Climate change may impact forest management activities with important implications for forest ecosystems. However, most climate change research on forests has focused on climate-driven shifts in species ranges, forest carbon, and hydrology. To examine how climate change may alter timber harvesting a...
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Veröffentlicht in: | Journal of environmental management 2015-02, Vol.149, p.157-167 |
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Sprache: | eng |
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Zusammenfassung: | Climate change may impact forest management activities with important implications for forest ecosystems. However, most climate change research on forests has focused on climate-driven shifts in species ranges, forest carbon, and hydrology. To examine how climate change may alter timber harvesting and forest operations in north temperate forests, we asked: 1) How have winter conditions changed over the past 60 years? 2) Have changes in winter weather altered timber harvest patterns on public forestlands? 3) What are the implications of changes in winter weather conditions for timber harvest operations in the context of the economic, ecological, and social goals of forest management? Using meteorological information from Climate Data Online and Autoregressive Integrated Moving Average (ARIMA) models we document substantial changes in winter conditions in Wisconsin, including a two- to three-week shortening of frozen ground conditions from 1948 to 2012. Increases in minimum and mean soil temperatures were spatially heterogeneous. Analysis of timber harvest records identified a shift toward greater harvest of jack pine and red pine and less harvest of aspen, black spruce, hemlock, red maple, and white spruce in years with less frozen ground or snow duration. Interviews suggested that frozen ground is a mediating condition that enables low-impact timber harvesting. Climate change may alter frozen ground conditions with complex implications for forest management.
•Forest harvest in north temperate forests often occurs in winter on frozen ground.•Warmer soils have led to a two- to three-week reduction in frozen ground.•Forest harvest shifts away from moist-soil associated species in warm winters.•Tree health concerns limit ability to shift harvest to non-winter seasons.•Frozen ground is a mediating condition that enables low-impact timber harvesting. |
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ISSN: | 0301-4797 1095-8630 |
DOI: | 10.1016/j.jenvman.2014.10.010 |