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Incorporating Resource Protection Constraints in an Analysis of Landscape Fuel-Treatment Effectiveness in the Northern Sierra Nevada, CA, USA

机译:在美国内华达州北部山脉中,将资源保护约束纳入景观燃料处理效果分析中

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摘要

Finding novel ways to plan and implement landscape-level forest treatments that protect sensitive wildlife and other key ecosystem components, while also reducing the risk of large-scale, high-severity fires, can prove to be difficult. We examined alternative approaches to landscape-scale fuel-treatment design for the same landscape. These approaches included two different treatment scenarios generated from an optimization algorithm that reduces modeled fire spread across the landscape, one with resource-protection constrains and one without the same. We also included a treatment scenario that was the actual fuel-treatment network implemented, as well as a no-treatment scenario. For all the four scenarios, we modeled hazardous fire potential based on conditional burn probabilities, and projected fire emissions. Results demonstrate that in all the three active treatment scenarios, hazardous fire potential, fire area, and emissions were reduced by approximately 50 % relative to the untreated condition. Results depict that incorporation of constraints is more effective at reducing modeled fire outputs, possibly due to the greater aggregation of treatments, creating greater continuity of fuel-treatment blocks across the landscape. The implementation of fuel-treatment networks using different planning techniques that incorporate real- world constraints can reduce the risk of large problematic fires, allow for landscape-level heterogeneity that can provide necessary ecosystem services, create mixed forest stand structures on a landscape, and promote resilience in the uncertain future of climate change.
机译:事实证明,寻找新的方法来规划和实施景观级森林处理,以保护敏感的野生动植物和其他关键的生态系统组成部分,同时还降低大规模高强度火灾的风险,这是困难的。我们研究了针对同一景观的景观规模燃料处理设计的替代方法。这些方法包括两种通过优化算法生成的不同处理方案,该优化算法可减少建模的火势在整个景观中的传播,一种具有资源保护约束,而另一种则没有资源约束。我们还包括一个已实施的实际燃料处理网络的处理方案,以及一个不进行处理的方案。对于这四种情况,我们都基于条件燃烧概率和预测的火灾排放对潜在的火灾隐患进行了建模。结果表明,在所有三种主动处理方案中,潜在的火灾隐患,着火面积和排放物相对于未经处理的情况减少了约50%。结果表明,约束的合并在减少模拟火力输出方面更为有效,这可能是由于处理方法的汇总,从而在整个景观中产生了更大的燃料处理模块连续性。使用结合了现实世界限制的不同规划技术来实施燃料处理网络,可以降低发生大火的风险,允许可提供必要生态系统服务的景观级异质性,在景观上创建混合林分结构并促进在不确定的气候变化未来中具有韧性。

著录项

  • 来源
    《Environmental Management》 |2016年第3期|516-530|共15页
  • 作者单位

    Ecosystem Sciences Division, Department of Environmental Science, Policy, and Management, University of California, Berkeley, CA 94720, USA;

    USDA Forest Service, Pacific Southwest Research Station, Davis, CA 95618, USA,Center for Fire Research and Outreach, University of California, Berkeley, CA 94720-3114, USA;

    Ecosystem Sciences Division, Department of Environmental Science, Policy, and Management, University of California, Berkeley, CA 94720, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Treatment optimization; Bum probability; Emissions; Fuel treatments; Mixed conifer;

    机译:治疗优化;烧伤概率;排放物;燃料处理;混合针叶树;
  • 入库时间 2022-08-17 13:25:51

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