Synoptic weather patterns conducive to lightning-ignited wildfires in Catalonia

Q2 Earth and Planetary Sciences Advances in Science and Research Pub Date : 2022-06-07 DOI:10.5194/asr-19-39-2022
N. Pineda, J. C. Peña, X. Soler, M. Aran, N. Pérez-Zañón
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Abstract

Abstract. Wildfires cause substantial losses to socio-economic and natural assets, especially in Mediterranean climate regions. Despite human activity being the main cause of wildfires in Mediterranean European countries, lightning-ignited wildfires should also be considered a major disruptive agent as they can trigger large fires. In addition, recent studies on the potential climate change effects on wildfires pointed out that lightning-ignited wildfires may gain relevance in Mediterranean areas in the years to come. The present study analyses the synoptical weather patterns favouring lightning-ignited wildfires in Catalonia (NE Iberian Peninsula). Being able to identify areas with an elevated lightning-ignition survival at daily timescales would be of great assistance to wildfire management agencies, i.e. locating ignitions and potential holdover fires, preparing for days with multiple ignitions or routing detection flight paths. It is worth noticing that one of the reasons that lightning-caused wildfires are difficult to manage is that they can survive for several days after the ignition, emerging days later once surface vegetation becomes dry enough to support sustained combustion. For this reason, in a first step, a reliable lightning–wildfire association is needed to properly identify the date and time of the fire starter for each wildfire. Afterwards, the circulation types on the days of ignition are analysed. The study relies on a dataset of 870 lightning-ignited wildfires, gathered by the Forest Protection Agency of the autonomous government of Catalonia between 2005 and 2020. Lightning data were provided by the Lightning Location System operated by the Meteorological Service of Catalonia. Results show that lightning-ignited wildfires in Catalonia are related to a typical synoptic weather pattern dominated by a short-wave trough at 500 hPa, with three distinct associations: an Iberian thermal low (51 % of the fires), a northern flow (24 %) and prefrontal convection (13 %).
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天气模式有利于闪电在加泰罗尼亚点燃野火
摘要野火给社会经济和自然资产造成巨大损失,特别是在地中海气候区。尽管人类活动是地中海欧洲国家野火的主要原因,但闪电点燃的野火也应被视为一种主要的破坏性因素,因为它们可以引发大火。此外,最近关于气候变化对野火的潜在影响的研究指出,闪电引发的野火可能在未来几年在地中海地区获得相关性。本研究分析了加泰罗尼亚(伊比利亚半岛东北部)有利于闪电点燃野火的天气模式。能够在每天的时间尺度上识别出闪电点火存活率较高的区域,将对野火管理机构有很大的帮助,即定位火点和潜在的延迟火灾,为有多个火点的日子做好准备,或者路由探测飞行路径。值得注意的是,闪电引起的野火难以控制的原因之一是,它们可以在点燃后存活数天,一旦地表植被变得足够干燥,可以支持持续燃烧,它们就会在几天后出现。因此,在第一步中,需要一个可靠的闪电-野火关联来正确识别每次野火的起始日期和时间。然后对点火日的循环类型进行了分析。这项研究基于加泰罗尼亚自治区森林保护局在2005年至2020年间收集的870起闪电引发的野火的数据集。闪电资料由加泰隆尼亚气象局运作的闪电定位系统提供。结果表明,加泰罗尼亚地区的闪电引燃野火与500 hPa短波槽主导的典型天气型有关,并有三种明显的关联:伊比利亚热低压(火灾的51%)、北流(24%)和前额对流(13%)。
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来源期刊
Advances in Science and Research
Advances in Science and Research Earth and Planetary Sciences-Geophysics
CiteScore
4.10
自引率
0.00%
发文量
13
审稿时长
22 weeks
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