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首页> 外文期刊>Canadian Journal of Forest Research >Infrared characterization of fine-scale variability in behavior of boreal forest fires.
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Infrared characterization of fine-scale variability in behavior of boreal forest fires.

机译:北方森林火灾行为的细微变化的红外特征。

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Spatial and temporal variability in forest fire behaviour, caused by differences in microsites, fuel types and condition, topography, and other factors across even relatively small areas, has been poorly characterized in most previous studies. Past characterization of forest fires has often been limited by monitoring techniques that relied on timing systems in coarse-resolution sampling grids. We report documentation and analysis of fire behaviour for several experimental fires using a camcorder-sized infrared camera mounted in a helicopter hovering over the target fires. These fires were conducted as part of the Russian FIRE BEAR Project in boreal Pinus sylvestris forests of central Siberia. Final results provide quantitative information on fire front location, rates of spread, temperatures, and total radiation energy (kW/m2) observed during the fires at resolutions from 2.5 to 1.0 m across experimental burn plots ranging from 2.3 to 4.0 ha. Further postfire analysis using GIS produced a detailed spatial and temporal quantification of fireline intensity (kW/m) across the plot area. This type of infrared monitoring and analysis helps to support clearer assessment of relationships between fire behaviour and ecological impacts. Such data permit accurate fire behaviour estimates at various temporal and spatial scales rather than using an overall plot average. This method allows the sample size to be quite large, so that statistical analysis of the fire behaviour data can provide an associated level of confidence..
机译:在以前的大多数研究中,由微小地点,燃料类型和状况,地形以及其他因素造成的森林火灾行为的时空变化,即使在相对较小的地区,也没有得到很好的描述。过去森林火灾的特征通常受到依赖于粗分辨率采样网格中的计时系统的监测技术的限制。我们使用安装在直升机上方的便携式摄像机大小的红外摄像机报告目标火情,报告了几种实验性火情的记录和火情分析。这些大火是作为俄罗斯火熊计划的一部分在西伯利亚中部的北方樟子松森林进行的。最终结果提供了在火灾期间观察到的火灾前沿位置,扩散速率,温度和总辐射能(kW / m2)的定量信息,分辨率在2.5至1.0 m的分辨率范围内分布于2.3至4.0公顷的实验性燃烧区。使用GIS进行的进一步火灾后分析对整个样区的火线强度(kW / m)进行了详细的时空量化。此类红外监视和分析有助于支持更清晰地评估火灾行为与生态影响之间的关系。这样的数据允许在各种时间和空间尺度上进行准确的火灾行为估计,而不是使用总体地块平均值。此方法允许样本量很大,因此对火灾行为数据的统计分析可以提供相关的置信度。

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