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Beyond reducing fire hazard: fuel treatment impacts on overstory tree survival

机译:减少火灾隐患:燃料处理对树木过度生长的影响

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摘要

Fuel treatment implementation in dry forest types throughout the western United States is likely to increase in pace and scale in response to increasing incidence of large wildfires. While it is clear that properly implemented fuel treatments are effective at reducing hazardous fire potential, there are ancillary ecological effects that can impact forest resilience either positively or negatively depending on the specific elements examined, as well as treatment type, timing, and intensity. In this study, we use overstory tree growth responses, measured seven years after the most common fuel treatments, to estimate forest health. Across the five species analyzed, observed mortality and future vulnerability were consistently low in the mechanical-only treatment. Fire-only was similar to the control for all species except Douglas-fir, while mechanical-plus-fire had high observed mortality and future vulnerability for white fir and sugar pine. Given that overstory trees largely dictate the function of forests and services they provide (e.g., wildlife habitat, carbon sequestration, soil stability) these results have implications for understanding longer-term impacts of common fuel treatments on forest resilience.
机译:在美国西部,干旱森林类型的燃料处理措施可能会因大规模野火的发生率增加而加快步伐和扩大规模。显然,正确实施燃料处理可有效减少潜在的火灾隐患,但取决于所检查的具体要素以及处理类型,时机和强度,存在一些附带的生态效应,无论对森林的抵御能力都有正面或负面的影响。在这项研究中,我们使用了最常见的燃料处理后七年测得的过高树木生长反应,以评估森林健康。在所分析的五个物种中,仅机械治疗的死亡率和未来脆弱性始终较低。除花旗松外,仅火与所有物种的对照相似,而机械加火具有较高的观测死亡率,并且对白杉和sugar木具有更高的脆弱性。鉴于过高的树木在很大程度上决定着森林及其提供的服务的功能(例如,野生动植物的栖息地,固碳,土壤稳定性),这些结果对于理解普通燃料处理对森林适应力的长期影响具有影响。

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