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Integrating Remote Sensing Methods and Fire Simulation Models to Estimate Fire Hazard in a South-East Mediterranean Protected Area

机译:集成遥感方法和火灾仿真模型,以估算东南地中海保护区的火灾危险

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摘要

Unlike low intensity fire which promotes landscape heterogeneity and important ecosystem services, large high-intensity wildfires constitute a significant destructive factor despite the increased amount of resources allocated to fire suppression and the improvement of firefighting tactics and levels of organization. Wildfires also affect properties, while an increasing number of fatalities are also associated with wildfires. It is now widely accepted that an effective wildfire management strategy can no longer rely on fire suppression alone. Scientific advances on fire behavior simulation and the increasing availability of remote sensing data, along with advanced systems of fire detection can significantly reduce fire hazards. In the current study remote sensing data and methods, and fire behavior simulation models are integrated to assess the fire hazard in a protected area of the southeast Mediterranean region and its surroundings. A spatially explicit fire hazard index was generated by combining fire intensity estimations and proxies of fire ignition probability. The results suggest that more than 50% of the study area, and the great majority of the protected area, is facing an extremely high hazard for a high-intensity fire. Pine forest formations, characterized by high flammability, low canopy base height and a dense shrub understory are facing the most critical hazard. The results are discussed in relation to the need for adopting an alternative wildfire management strategy.
机译:与促进景观异质性和重要生态系统服务的低强度火灾不同,大型高强度野火仍构成显着的破坏性因素,尽管分配给消防抑制的资源量增加以及消防战术和组织水平的资源增加。野火也会影响性质,而越来越多的死亡人数也与野火有关。现在普遍认为,有效的野火管理策略不能再依赖于防火抑制。对火灾行为模拟的科学进步和遥感数据的增加可用性以及高级火灾检测系统可以显着减少火灾危险。在目前的研究遥感数据和方法中,集成了火灾行为模拟模型,以评估东南地中海地区保护区及其周边环境的火灾危险。通过组合火强度估计和火灾点火概率的代理来产生空间显式火灾危险指标。结果表明,超过50%的研究区,以及受保护区的大多数,面临着高强度火灾的极高危害。松树林形成,其特征在于易燃性,低冠层底座高度和致密的灌木均面临着最关键的危险。结果是关于采用替代野火管理策略的必要性的讨论。

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