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Investigation of the effects of interactions of intersecting oblique fire lines with and without wind in a combustion wind tunnel

机译:燃烧风隧道中交叉斜射线相互作用效果的研究

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摘要

Quantification of the interaction of intersecting and non-intersecting fire perimeters over a range of shapes, sizes and orientations is essential to understanding the behaviour of high-intensity wildfires that have become discontiguous as a result of spot fires or effects of broken topography or fuels. One key configuration is that of the V-shaped fire where two individual lines of fire intersect at oblique angles. Previous work under calm conditions in pine needle litter and straw found the speed of propagation of the vertex of the intersection to increase non-linearly as the angle of intersection decreased. The present paper investigates this relation in dry eucalypt forest litter in both the absence and presence of wind (similar to 1.0 ms(-1)) and found that the increase in vertex speed under calm conditions was no greater than would be expected due to the geometry of the configuration. Conversely, in the presence of wind, the increase in the vertex propagation speed was substantially greater than explained by the geometry alone. Although these results suggest that fire line interactions can influence the behaviour and spread of coalescing fire fronts, further research is required to both identify the precise mechanisms driving this behaviour and quantify the resultant effects.
机译:在一系列形状,尺寸和方向上的相交和非交叉静脉相互作用的定量对于了解高强度野火的行为是必不可少的,这是由于斑点火灾或破碎地形或燃料的影响而变得不连续。一个关键配置是V形火的,其中两个在倾斜角度的两条火线相交。以前的工作在平静的条件下在松针垃圾和稻草中发现了交叉口的顶点的传播速度,因为交叉点的角度降低了非线性的。本文在风的情况和存在的情况下调查了干桉树林垃圾的这种关系(类似于1.0毫秒(-1))并发现在平静条件下的顶点速度的增加不大于预期配置的几何。相反,在风的存在下,顶点传播速度的增加基本上大于单独的几何形状解释。虽然这些结果表明,消防线相互作用会影响聚结会的行为和传播,但需要进一步研究识别驱动这种行为的精确机制并量化所得效果。

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