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干旱加剧导致欧洲森林火灾规模更大、更严重。

Increasing aridity causes larger and more severe forest fires across Europe.

机构信息

TUM School of Life Sciences, Ecosystem Dynamics and Forest Management, Technical University of Munich, Freising, Germany.

Berchtesgaden National Park, Berchtesgaden, Germany.

出版信息

Glob Chang Biol. 2023 Mar;29(6):1648-1659. doi: 10.1111/gcb.16547. Epub 2022 Dec 14.

Abstract

Area burned has decreased across Europe in recent decades. This trend may, however, reverse under ongoing climate change, particularly in areas not limited by fuel availability (i.e. temperate and boreal forests). Investigating a novel remote sensing dataset of 64,448 fire events that occurred across Europe between 1986 and 2020, we find a power-law relationship between maximum fire size and area burned, indicating that large fires contribute disproportionally to fire activity in Europe. We further show a robust positive correlation between summer vapor pressure deficit and both maximum fire size (R  = .19) and maximum burn severity (R  = .12). Europe's fire regimes are thus highly sensitive to changes in future climate, with the probability for extreme fires more than doubling by the end of the century. Our results suggest that climate change will challenge current fire management approaches and could undermine the ability of Europe's forests to provide ecosystem services to society.

摘要

近几十年来,欧洲的火灾面积一直在减少。然而,在当前的气候变化下,这种趋势可能会发生逆转,特别是在不受燃料供应限制的地区(即温带和北方森林)。我们调查了欧洲 1986 年至 2020 年间发生的 64448 起火灾事件的新型遥感数据集,发现最大火灾规模与火灾面积之间存在幂律关系,这表明大火对欧洲的火灾活动有不成比例的贡献。我们还进一步表明,夏季水汽压亏缺与最大火灾规模(R =.19)和最大燃烧强度(R =.12)之间存在稳健的正相关关系。因此,欧洲的火灾发生机制对未来气候的变化非常敏感,到本世纪末,极端火灾的可能性将增加一倍以上。我们的研究结果表明,气候变化将对当前的火灾管理方法提出挑战,并可能削弱欧洲森林为社会提供生态系统服务的能力。

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