A Novel Method of Modeling Grassland Wildfire Dynamics Based on Cellular Automata: A Case Study in Inner Mongolia, China

Yan Li, Guozhou Wu, Shuai Zhang, Manchun Li, Beidou Nie, Zhenjie Chen
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Abstract

Wildfires spread rapidly and cause considerable ecological and socioeconomic losses. Inner Mongolia is among the regions in China that suffer the most from wildfires. A simple, effective model that uses fewer parameters to simulate wildfire spread is crucial for rapid decision-making. This study presents a region-specific technological process that requires a few meteorological parameters and limited grassland vegetation data to predict fire spreading dynamics in Inner Mongolia, based on cellular automata that emphasize the numeric evaluation of both heat sinks and sources. The proposed method considers a case that occurred in 2021 near the East Ujimqin Banner border between China and Mongolia. Three hypothetical grassland wildfires were developed using GIS technology to test and demonstrate the proposed model. The simulation results suggest that the model agrees well with real-world experience and can facilitate real-time decision-making to enhance the effectiveness of firefighting, fire control, and simulation-based training for firefighters.
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基于细胞自动机的草原野火动态建模新方法:中国内蒙古案例研究
野火蔓延迅速,造成了巨大的生态和社会经济损失。内蒙古是中国受野火影响最严重的地区之一。使用较少参数模拟野火蔓延的简单有效模型对于快速决策至关重要。本研究提出了一种针对特定地区的技术流程,只需少量气象参数和有限的草原植被数据,就能预测内蒙古地区的火灾蔓延动态,该流程基于单元自动机,强调热汇和热源的数值评估。所提出的方法考虑了 2021 年发生在中国和蒙古国交界的东乌珠穆沁旗附近的一个案例。利用 GIS 技术开发了三个假设的草原野火,以测试和演示所提出的模型。模拟结果表明,该模型与现实世界的经验非常吻合,可促进实时决策,从而提高消防、火灾控制和消防员模拟培训的有效性。
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