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Simulating wildfire spreading processes in a spatially heterogeneous landscapes using an improved cellular automaton model

机译:使用改进的蜂窝自动机模型模拟在空间异质景观中的野火扩散过程

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A better understanding of wildfire spreading processes is expected both for long-term wildfire management planning and effective suppression strategies so that wildfires-caused losses in natural resources, endangered species, human lives and properties can be reduced. The cellular automaton (CA) method is useful and powerful for modeling natural and artificial systems in which the constituent parts are locally and tightly interacted. The temporal and spatial characteristics of wildfires make the CA method a preferred choice to model the temporal and spatial variability. In this study, hexagonal tessellation space was used to develop a CA model and then the Rothermers fire spreading model (1972) was integrated to the CA model to simulate wildfire-spreading processes spatially and temporally. The hexagon-based wildfire spreading CA model was verified with the experimental data and also tested using the data obtained in the southern part of Gansu province (China), and the comparison between the simulated results and observed data suggests that this CA-based model can be used to provide useful information for managing wildfires over heterogeneous landscapes.
机译:预计对长期野火管理规划和有效抑制策略的更好理解,以便可以减少自然资源,濒危物种,人类生活和性质的野火引起的损失。蜂窝自动机(CA)方法是用于建模的自然和人工系统的用途和强大,其中构成部件在本地和紧密相互作用。野火的时间和空间特征使CA方法成为模拟时间和空间变异性的首选。在本研究中,六边形曲面细分空间用于开发CA型号,然后将Rothermers灭火模型(1972)集成到CA型号,以在空间和时间上模拟野火扩散过程。通过实验数据验证了基于六边形的野火扩散CA模型,并使用甘肃省(中国)南部获得的数据进行了测试,模拟结果与观察数据之间的比较表明,基于CA的模型可以用于提供在异构景观中管理野火的有用信息。

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