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首页> 外文期刊>Canadian Journal of Forest Research >A replanning approach for maximizing woodland caribou habitat alongside timber production
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A replanning approach for maximizing woodland caribou habitat alongside timber production

机译:林地驯鹿栖息地沿着木材生产的重新划分方法

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We present a forest harvest scheduling model that meets timber harvest targets while maximizing a proxy measure of woodland caribou (i>Rangifer tarandus caribou/i> (Gmelin, 1788)) habitat based on the configuration of preferred habitat on the landscape. Woodland caribou within the boreal forest region in Canada tend to prefer mature jack pine forest stands, which tend to be rich in their preferred resource, lichen, and also reduce predation pressure. This can create conflict with industrial wood supply needs. We designed a model that can be used to identify good harvest scheduling plans given these competing objectives. Our approach is to use a series of sequential linear programming models that are solved within a replanning framework. Specifically, each individual linear programming model seeks to produce a solution that will meet timber harvest targets while minimizing the harvest of high-quality woodland caribou habitat stands. Stands are assessed with respect to their suitability as woodland caribou habitat based on their contribution to the overall landscape equivalent connected area (ECA), a combined spatial measure of preferred habitat amount and its connectivity. We used our model for a case study of the Trout Lake Forest in northwestern Ontario, Canada, and found that our model creates approximately 10% more caribou habitat than an earlier heuristic procedure and 30% more caribou habitat than the prevailing woodland caribou habitat forest management plan in the Trout Lake Forest while meeting the same timber harvest targets.
机译:我们提出了一个森林收集调度模型,符合木材收获目标,同时最大化林地驯鹿的代理衡量标准(& i> Rangifer tarandus aribou&加拿大北部森林地区的林地驯鹿往往更喜欢成熟的杰克杉木森林,这往往富有他们的首选资源,地衣,以及降低捕食压力。这可以产生与工业木材供应需求的冲突。我们设计了一种模型,可用于识别这些竞争目标的良好收获计划计划。我们的方法是使用一系列顺序线性编程模型,该模型在重新框架内解决。具体而言,每个单独的线性规划模型都试图产生一个解决方案,该解决方案将满足木材收获目标,同时最小化高质量的林地驯鹿栖息地站的收获。基于其对整体景观等效连接区域(ECA)的贡献,在林地驯鹿栖息地的适用性评估了立式,这是优选的栖息地数量的组合空间测量及其连通性。我们利用我们的模型进行加拿大西北部鳟鱼湖森林的案例研究,发现我们的模型比早期的启发式程序创造了大约10%的驯鹿栖息地,而且比普遍的林地驯鹿栖息地森林管理更多地增加了30%的驯鹿栖息地在鳟鱼湖森林中计划,同时达到同一木材收获目标。

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