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首页> 外文期刊>Canadian Journal of Forest Research >Stand breakdown and surface fuel accumulation due to spruce budworm (Choristoneura fumiferana) defoliation in the boreal mixedwood forest of central Canada
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Stand breakdown and surface fuel accumulation due to spruce budworm (Choristoneura fumiferana) defoliation in the boreal mixedwood forest of central Canada

机译:由于加拿大中部北方北方混纺林森林(Chorrestoneura Fumiferana)抗肺芽(Choristoneura Fumiferana)脱落等爆破和表面燃料积累

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Spruce budworm (Choristoneura fumiferana (Clemens)) defoliation has been shown to increase the likelihood of large forest fires in central Canada. However, the time frame of heightened risk based on the duration of spruce budworm defoliation has not yet been quantified. In this article, we document the extent of stand breakdown and surface fuel accumulation after a period of spruce budworm defoliation that occurred between 1972 and 1976. Data on stand characteristics were derived from previous studies at three different locations in the boreal mixedwood forests of central Canada: Aubinadong (B.J. Stocks. 1987. For. Chron. 63: 8-14), Gogama, and Gowganda in Ontario. Stand breakdown was measured using a series of transects set in plots 7 years following aerially mapped defoliation (1977-1983). Results show that during the 4 years following 5 years of defoliation, crown breakage, a typical symptom of defoliation, increased by nearly 200%, and surface fuel increased by 145% from predisturbance levels. The high correlation between crown breakage and surface fuels linked defoliation to fuel buildup. We begin to solve the challenge of measuring fuel structure over the expansive scale of spruce budworm outbreaks by quantifying the relationship among stand breakdown, time since the end of defoliation, and the duration of defoliation so that the expected fuel structure can be modelled from annual defoliation surveys.
机译:云杉芽虫(Choristoneura Fumiferana(克莱丝))脱落已被证明可以增加加拿大中部大型森林火灾的可能性。然而,基于云芽骤虫脱落持续时间的风险增长的时间框架尚未被定量。在本文中,我们记录了1972年至1976年间发生的云芽叶虫脱落期后的支架衰弱和表面燃料积累的程度。展台特征的数据来自加拿大中部北方北美森林林的三个不同地点的先前研究:Aubinadong(BJ股票。1987年。纪元。63:8-14),Gogama和Ontario的Gowganda。使用在鸟映射落叶(1977-1983)的局部7年内设置的一系列横断面测量静止击穿。结果表明,在落叶5年后4年内,冠破碎,抗渗透典型症状,增加了近200%,表面燃料从次频水平增加了145%。冠间破损和表面燃料之间的高相关联将侧渗与燃料堆积相连。我们开始通过量化抗冲击性的关系,从落叶结束的时间和落叶末期的关系来解决云芽疫苗的膨胀等级上的挑战,以及落叶的持续时间,使预期的燃料结构可以从年度落叶模型建模调查。

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