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Developing a production possibility set of wildlife species persistence and timber harvest value

机译:开发一套野生生物物种持久性和木材采伐价值的生产可能性集

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摘要

An integrated model, combining spatial wildlife population and timber harvest and growth models, was developed to explore tradeoffs between the likelihood of persistence of a wildlife species, the northern flying squirrel (Glaucomys sabrinus), and timber production on a landscape on the west side of the Oregon Cascade Range. A simplified wildlife model was developed from the fully parameterized spatial wildlife model, using a habitat neighborhood-weighting scheme, for use in the optimization. Simulated annealing, a heuristic optimization technique, was used to solve for harvest schedules that maximized the net present value of timber harvest subject to a target value for likelihood of species persistence over a 100-year planning period. By solving this problem for a range of species persistence targets, a production possibility frontier was developed that showed tradeoffs between timber harvest value and likelihood of species persistence on this landscape. Although the results are specific to the wildlife species and the landscape analyzed, the approach is general and provides a structure for future models that will help land managers and forest planners to understand tradeoffs among competing resource uses.
机译:开发了一个综合模型,结合了空间野生动植物种群和木材采伐与生长模型,以探索在野生生物物种,北部flying鼠(Glaucomys sabrinus)持续存在的可能性与西侧景观上的木材生产之间的权衡。俄勒冈喀斯喀特山脉。通过使用栖息地邻域加权方案,从完全参数化的空间野生动物模型中开发出简化的野生动物模型,以用于优化。模拟退火是一种启发式优化技术,用于解决采伐计划,该计划最大程度地提高了木材采伐的净现值,但要以100年规划期内物种持续存在的可能性为目标值。通过针对一系列物种持久性目标解决该问题,开发了一种生产可能性边界,该边界显示了木材采伐价值与该景观中物种持久性可能性之间的权衡。尽管结果特定于野生动植物物种和所分析的景观,但该方法是通用的,并为将来的模型提供了结构,这将有助于土地管理者和森林规划者了解竞争资源使用之间的权衡。

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