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首页> 外文期刊>Canadian Journal of Forest Research >Canopy bulk density and canopy base height equations for assessing crown fire hazard in Pinus radiata plantations
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Canopy bulk density and canopy base height equations for assessing crown fire hazard in Pinus radiata plantations

机译:辐射松人工林冠冠火灾危险度的冠层容重和冠层基础高度方程

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摘要

Crown fires combine high rates of spread, flame lengths, and intensities, making it virtually impossible to control them by direct action and having significant impact on soils, vegetation, and wildlife habitat. For these reasons, fire managers have great interest in preventive silviculture of forested landscapes to avoid the initiation and propagation of crown fires. The minimum conditions necessary to initiate and propagate crown fires are assumed to be strongly influenced by the stand structural variables canopy bulk density (CBD) and canopy base height (CBH). However, there is a lack of quantitative information on these variables and how to estimate them. To characterize the aerial fuel layers of Pinus radiata D. Don, the vertical profiles of canopy fuel in 180 sample plots of pure and even-aged P. radiata plantations were analysed. Effective CBD and CBH were obtained from the vertical profiles, and equations relating these variables to common stand variables were fitted simultaneously. Inclusion of the fitted equations in existing dynamic growth models, together with the use of current fire behaviour and hazard prediction tools, will provide a decision support system for assessing the crown fire potential of different silvicultural alternatives for this species.
机译:冠火结合了很高的扩散率,火焰长度和强度,几乎不可能通过直接作用来控制它们,并且对土壤,植被和野生动植物栖息地具有重大影响。由于这些原因,消防经理对森林景观的预防性造林有极大的兴趣,可以避免树冠火灾的发生和蔓延。假定引发和传播树冠火势的最低条件受到林分结构变量冠层容重(CBD)和冠层基部高度(CBH)的强烈影响。但是,缺乏有关这些变量以及如何估算它们的定量信息。为了表征辐射松D. Don的空中燃料层,分析了180个纯正和老化的辐射松人工林样地中冠层燃料的垂直剖面。从垂直剖面获得有效的CBD和CBH,同时拟合了将这些变量与常规林分相关的方程。将拟合方程包括在现有动态增长模型中,以及使用当前的火灾行为和危害预测工具,将提供一个决策支持系统,用于评估该物种不同造林替代品的冠顶火势。

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