Effect of Climate Evolution on the Dynamics of the Wildfires in Greece

Fire Pub Date : 2024-05-06 DOI:10.3390/fire7050162
Nikolaos Iliopoulos, Iason Aliferis, Michail Chalaris
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Abstract

Understanding the potential effects of climate change on forest fire behavior and the resulting release of combustion products is critical for effective mitigation strategies in Greece. This study utilizes data from the MAGICC 2.4 (Model for the Assessment of Greenhouse Gas-Induced Climate Change) climate model and the SCENGEN 2.4 (SCENarioGENerator) database to assess these impacts. By manipulating various model parameters such as climate sensitivity, scenario, time period, and global climate models (GCMs) within the SCENGEN 2.4 database, we analyzed climatic trends affecting forest fire generation and evolution. The results reveal complex and nuanced findings, indicating a need for further investigation. Case studies are conducted using the FARSITE 4 (Fire Area Simulator) model, incorporating meteorological changes derived from climate trends. Simulations of two fires in East Attica, accounting for different fuel and meteorological conditions, demonstrate an increase in the rate of combustion product release. This underscores the influence of changing meteorological parameters on forest fire dynamics and highlights the importance of proactive measures to mitigate future risks. Our findings emphasize the urgency of addressing climate change impacts on wildfire behavior to safeguard environmental and public health in Greece.
气候演变对希腊野火动态的影响
了解气候变化对森林火灾行为以及由此产生的燃烧产物释放的潜在影响,对于在希腊实施有效的减灾战略至关重要。本研究利用 MAGICC 2.4(温室气体引起的气候变化评估模型)气候模型和 SCENGEN 2.4(SCENarioGENerator)数据库中的数据来评估这些影响。通过操作 SCENGEN 2.4 数据库中的各种模型参数,如气候敏感性、情景、时间段和全球气候模型 (GCM),我们分析了影响森林火灾发生和演变的气候趋势。结果显示了复杂而细微的发现,表明有必要进行进一步研究。我们使用 FARSITE 4(火区模拟器)模型进行了案例研究,其中纳入了从气候趋势中得出的气象变化。根据不同的燃料和气象条件,对东阿提卡的两场火灾进行了模拟,结果表明燃烧产物的释放率有所增加。这突出了气象参数变化对森林火灾动态的影响,并强调了采取积极措施降低未来风险的重要性。我们的研究结果强调了应对气候变化对野火行为影响的紧迫性,以保护希腊的环境和公众健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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