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Fractal properties of forest fires in Amazonia as a basis for modelling pan-tropical burnt area

机译:亚马孙森林火灾的分形特性作为泛热带地区燃烧面积建模的基础

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Current methods for modelling burnt area in dynamic global vegetation models (DGVMs) involve complex fire spread calculations, which rely on many inputs, including fuel characteristics, wind speed and countless parameters. They are therefore susceptible to large uncertainties through error propagation, but undeniably useful for modelling specific, small-scale burns. Using observed fractal distributions of fire scars in Brazilian Amazonia in 2005, we propose an alternative burnt area model for tropical forests, with fire counts as sole input and few parameters. This model is intended for predicting large-scale burnt area rather than looking at individual fire events. A simple parameterization of a tapered fractal distribution is calibrated at multiple spatial resolutions using a satellite-derived burnt area map. The model is capable of accurately reproducing the total area burnt (16 387 km~2) and its spatial distribution. When tested pan-tropically using theMODIS MCD14ML active fire product, the model accurately predicts temporal and spatial fire trends, but the magnitude of the differences between these estimates and the GFED3.1 burnt area products varies per continent.
机译:在动态全球植被模型(DGVM)中对燃烧面积进行建模的当前方法涉及复杂的火势蔓延计算,这取决于许多输入,包括燃料特性,风速和无数参数。因此,它们很容易通过错误传播而带来很大的不确定性,但是对于建模特定的小规模烧伤无疑是有用的。利用2005年在巴西亚马逊河地区观察到的火疤痕形的分形分布,我们提出了一种替代性的热带森林烧伤面积模型,以火数作为唯一输入且参数很少。该模型用于预测大规模燃烧区域,而不是查看单个火灾事件。使用卫星衍生的燃烧面积图,可以在多个空间分辨率下对锥形分形分布的简单参数进行校准。该模型能够准确地再现燃烧的总面积(16 387 km〜2)及其空间分布。当使用MODIS MCD14ML主动火源进行泛热带测试时,该模型可以准确预测时空火势,但是这些估计值与GFED3.1燃烧区产物之间的差异幅度在每个大洲都不同。

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