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Comparing Effects of Climate Warming Fire and Timber Harvesting on a Boreal Forest Landscape in Northeastern China

机译:气候变暖火灾和木材采伐对东北北方森林景观的影响比较

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摘要

Forest management under a changing climate requires assessing the effects of climate warming and disturbance on the composition, age structure, and spatial patterns of tree species. We investigated these effects on a boreal forest in northeastern China using a factorial experimental design and simulation modeling. We used a spatially explicit forest landscape model (LANDIS) to evaluate the effects of three independent variables: climate (current and expected future), fire regime (current and increased fire), and timber harvesting (no harvest and legal harvest). Simulations indicate that this forested landscape would be significantly impacted under a changing climate. Climate warming would significantly increase the abundance of most trees, especially broadleaf species (aspen, poplar, and willow). However, climate warming would have less impact on the abundance of conifers, diversity of forest age structure, and variation in spatial landscape structure than burning and harvesting. Burning was the predominant influence in the abundance of conifers except larch and the abundance of trees in mid-stage. Harvesting impacts were greatest for the abundance of larch and birch, and the abundance of trees during establishment stage (1–40 years), early stage (41–80 years) and old- growth stage (>180 years). Disturbance by timber harvesting and burning may significantly alter forest ecosystem dynamics by increasing forest fragmentation and decreasing forest diversity. Results from the simulations provide insight into the long term management of this boreal forest.
机译:气候变化下的森林管理需要评估气候变暖和干扰对树木种类,年龄结构和空间格局的影响。我们使用析因实验设计和模拟模型研究了这些对东北东北部森林的影响。我们使用空间上明确的森林景观模型(LANDIS)来评估三个独立变量的影响:气候(当前和预期的未来),火灾(当前和增加的火灾)和木材采伐(不进行采伐和合法采伐)。模拟表明,在气候变化的情况下,这种森林景观将受到严重影响。气候变暖将大大增加大多数树木的丰度,尤其是阔叶树种(白杨,杨树和柳树)。但是,与燃烧和收获相比,气候变暖对针叶树的丰度,森林年龄结构的多样性以及空间景观结构变化的影响较小。除了落叶松和中叶树木的丰富以外,燃烧是影响针叶树数量的主要因素。采伐对落叶松和桦树的丰度影响最大,在建树阶段(1–40年),早期阶段(41–80年)和成年阶段(> 180年)树木丰度最大。木材采伐和燃烧造成的干扰可能会通过增加森林破碎度和减少森林多样性而大大改变森林生态系统的动态。模拟的结果提供了对这种北方森林的长期管理的见识。

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