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The Effects of Selective Logging Behaviors on Forest Fragmentation and Recovery

机译:选择性采伐行为对森林破碎化和恢复的影响

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To study the impacts of selective logging behaviors on a forest landscape, we developed an intermediate-scale spatial model to link cross-scale interactions of timber harvesting, a fine-scale human activity, with coarse-scale landscape impacts. We used the Lotka-Volterra predator-prey model with Holling’s functional response II to simulate selective logging, coupled with a cellular automaton model to simulate logger mobility and forest fragmentation. Three logging scenarios were simulated, each varying in timber harvesting preference and logger mobility. We quantified forest resilience by evaluating (1) the spatial patterns of forest fragmentation, (2) the time until the system crossed a threshold into a deforested state, and (3) recovery time. Our simulations showed that logging behaviors involving decisions made about harvesting timber and mobility can lead to different spatial patterns of forest fragmentation. They can, together with forest management practices, significantly delay or accelerate the transition of a forest landscape to a deforested state and its return to a recovered state. Intermediate-scale models emerge as useful tools for understanding cross-scale interactions between human activities and the spatial patterns that are created by anthropogenic land use.
机译:为了研究选择性伐木行为对森林景观的影响,我们开发了一种中等规模的空间模型,以将木材采伐(一种小规模的人类活动)的跨尺度相互作用与粗糙尺度的景观影响联系起来。我们使用具有Holling功能响应II的Lotka-Volterra捕食者-捕食者模型来模拟选择性伐木,并结合元胞自动机模型来模拟伐木者的活动性和森林破碎化。模拟了三种采伐情景,每种采伐情景在木材采伐偏好和伐木者移动性方面均不同。我们通过评估(1)森林破碎化的空间模式,(2)直到系统超过阈值进入森林砍伐状态的时间以及(3)恢复时间来量化森林的复原力。我们的模拟显示,伐木行为涉及到有关采伐木材和活动性的决策,可能导致森林破碎化的不同空间格局。它们可以与森林管理实践一起,大大延迟或加速森林景观向森林砍伐状态的转变,并使其恢复到恢复状态。中尺度模型成为了解人类活动与人为土地利用所创造的空间格局之间的尺度交互作用的有用工具。

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