首页> 外文期刊>Progress in Artificial Intelligence >Variable Forest Structure and Fire Reconstructed Across Historical Ponderosa Pine and Mixed Conifer Landscapes of the San Juan Mountains, Colorado
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Variable Forest Structure and Fire Reconstructed Across Historical Ponderosa Pine and Mixed Conifer Landscapes of the San Juan Mountains, Colorado

机译:在科罗拉多州圣胡安山脉的历史坑洼和混合针叶树景观的可变森林结构和火灾

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摘要

Late-1800s land surveys were used to reconstruct historical forest structure and fire over more than 235,000 ha in ponderosa pine and mixed conifer landscapes of the San Juan Mountains, Colorado, to further understand differences among regional mountain ranges and help guide landscape-scale restoration and management. Historically, fire-resistant ponderosa pine forests with low tree density and relatively frequent fire, the most restorable forests, covered only the lower 15%-24% of the study area. The other 76%-85% had dominance by mixed- to high-severity fires. Both ponderosa pine and dry mixed conifer had generally pervasive, often dense understory shrubs, and similar to 20% of pine and similar to 50%-75% of mixed conifer forests also had high historical tree density. Intensive fuel reduction and mechanical restoration are infeasible and likely ineffective in the upper part of the pine zones and in mixed conifer, where restoring historical fire and creating fire-adapted communities and infrastructure may be the only viable option. Old-growth forests can be actively restored in the lower 15%-24% of the montane, likely increasing landscape resistance and resilience to fire, but mixed- to high-severity fires did also occur near these areas. This imperfect resistance suggests that fire-adapted human communities and infrastructure are needed throughout the study area.
机译:18世纪后期的土地调查用于重建历史森林结构,在科罗拉多州圣胡安山脉和混合针叶树景观中重建历史森林结构和火灾超过235,000公顷,以进一步了解区域山脉之间的差异,并帮助指导景观尺度恢复管理。历史上,具有低树密度和相对频繁的火灾,最可靠的森林的耐火坑松树林,仅占研究区的15%-24%。其他76%-85%通过混合至高严重程度的火灾占优势。 Ponderosa杉木和干混针叶蛋白均普遍普遍,通常是茂密的林灌木,并且类似于20%的松树,类似于50%-75%的混合针叶树林也具有高历史树密度。密集的燃油减少和机械修复是不可行的并且在松树区域和混合针叶树的上部可能无效,其中恢复历史火灾和创造防火社区和基础设施可能是唯一可行的选择。旧的森林可以在蒙太烷的较低的15%-24%中积极恢复,可能会增加景观抵抗和抵御火灾,但在这些地区附近也发生了大幅度的火灾。这种不完全电阻表明,整个研究区域都需要燃烧的人类社区和基础设施。

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