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Modeling the Influence of Dynamic Zoning of Forest Harvesting on Ecological Succession in a Northern Hardwoods Landscape

机译:在北部硬木景观中模拟森林采伐动态分区对生态演替的影响

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Dynamic zoning (systematic alteration in the spatial and temporal allocation of even-aged forest management practices) has been proposed as a means to change the spatial pattern of timber harvest across a landscape to maximize forest interior habitat while holding timber harvest levels constant. Simulation studies have established that dynamic zoning strategies produce larger tracts of interior, closed canopy forest, thus increasing the value of these landscapes for interior-dependent wildlife. We used the simulation model LANDIS to examine how the implementation of a dynamic zoning strategy would change trajectories of ecological succession in the Great Divide Ranger District of the Chequamegon-Nicolet National Forest in northern Wisconsin over 500 years. The components of dynamic zoning strategies (number of zones in a scenario and the length of the hiatus between successive entries into zones) and their interaction had highly significant impacts on patterns of forest succession. Dynamic zoning scenarios with more zones and shorter hiatus lengths increased the average amount of the forest dominated by early successional aspen (Populus sp.). Dynamic zoning scenarios with two zones produced more late successional mature northern hardwoods than scenarios with four zones. Dynamic zoning scenarios with very short (30 years) or very long (120 years) hiatus lengths resulted in more late successional mature northern hardwoods than scenarios with intermediate hiatus lengths (60 and 90 years). However, none of the dynamic scenarios produced as much late successional mature northern hardwoods as the static alternative. Furthermore, the amounts of all habitat types in all dynamic zoning scenarios fluctuated greatly in time and space relative to static alternatives, which could negatively impact wildlife species that require a stable amount of habitat above some minimum critical threshold. Indeed, implementing dynamic zoning scenarios of different designs would have both positive and negative effects on wildlife species and for other objectives of forest management.
机译:已经提出了动态分区(在均匀年龄的森林管理实践中,在空间和时间分配上的系统性改变)作为改变整个景观中木材采伐空间格局的方法,以在保持木材采伐水平不变的同时最大化森林内部生境。仿真研究已经确定,动态分区策略可以产生更大范围的内部封闭冠层森林,从而为依赖内部的野生动植物增加这些景观的价值。我们使用模拟模型LANDIS来研究动态分区策略的实施如何在500年内改变威斯康星州北部Chequamegon-Nicolet国家森林大分水岭护林区的生态演替轨迹。动态分区策略的组成部分(方案中的分区数量以及连续进入分区之间的间隔时间)及其相互作用对森林演替模式具有非常重要的影响。具有更多区域和更短裂隙长度的动态分区方案增加了以早期演替白杨(Populus sp。)为主的森林的平均数量。具有四个区域的动态分区方案比具有四个区域的方案产生的后期演替成熟北部硬木更多。裂隙长度很短(30年)或很长(120年)的动态分区方案比中裂隙长度(60和90年)的方案导致了更晚的连续演替北部硬木。但是,没有任何一种动态方案能像静态替代方案那样产生那么多的后期演替成熟北方硬木。此外,相对于静态替代方案,所有动态分区方案中所有栖息地类型的数量在时间和空间上都存在很大波动,这可能会对需要稳定地栖息在一定最低临界阈值以上的栖息地数量的野生生物造成负面影响。实际上,实施不同设计的动态分区方案将对野生动植物物种以及森林管理的其他目标产生积极和消极的影响。

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