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首页> 外文期刊>International Journal of Wildland Fire >Simulated western spruce budworm defoliation reduces torching and crowning potential: a sensitivity analysis using a physics-based fire model
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Simulated western spruce budworm defoliation reduces torching and crowning potential: a sensitivity analysis using a physics-based fire model

机译:模拟的西方云杉bud虫脱叶减少了割炬和加冠的可能性:使用基于物理的火模型进行的敏感性分析

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摘要

The widespread, native defoliator western spruce budworm (Choristoneura occidentalis Freeman) reduces canopy fuels, which might affect the potential for surface fires to torch (ignite the crowns of individual trees) or crown (spread between tree crowns). However, the effects of defoliation on fire behaviour are poorly understood. We used a physics-based fire model to examine the effects of defoliation and three aspects of how the phenomenon is represented in the model (the spatial distribution of defoliation within tree crowns, potential branchwood drying and model resolution). Our simulations suggest that fire intensity and crowning are reduced with increasing defoliation compared with un-defoliated trees, regardless of within-crown fuel density, but torching is only reduced with decreasing crown fuel density. A greater surface fire intensity was required to ignite the crown of a defoliated compared with an un-defoliated tree of the same crown base height. The effects of defoliation were somewhat mitigated by canopy fuel heterogeneity and potential branchwood drying, but these effects, as well as computational cell size, were less pronounced than the effect of defoliation itself on fire intensity. Our study suggests that areas heavily defoliated by western spruce budworm may inhibit the spread of crown fires and promote non-lethal surface fires.
机译:广泛的原生落叶树西部云杉芽虫(Choristoneura occidentalis Freeman)减少了冠层燃料,这可能会影响表面火烧伤(点燃单棵树的树冠)或树冠(在树冠之间散布)的可能性。但是,人们对脱叶对火灾行为的影响了解甚少。我们使用了基于物理的火灾模型来检查落叶的影响以及该现象在模型中如何表示的三个方面(树冠内落叶的空间分布,潜在的树枝木材干燥和模型分辨率)。我们的模拟结果表明,与未落叶的树木相比,无论树冠内部的燃料密度如何,火灾的强度和树冠随着落叶的增加而降低,但树冠燃料密度的降低却只会降低火炬。与具有相同树冠基部高度的未落叶树相比,需要更大的表面火力来点燃落叶树的树冠。冠层燃料的异质性和潜在的分支木材干燥在一定程度上减轻了脱叶的影响,但是这些影响以及计算单元的大小并不如脱叶本身对火势的影响那么明显。我们的研究表明,西部云杉芽虫严重落叶的地区可能会抑制树冠火势的蔓延并促进非致命性表面火势。

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