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人为引起的气候变化对极端火灾季节的影响归因

Attribution of the Influence of Human-Induced Climate Change on an Extreme Fire Season.

作者信息

Kirchmeier-Young M C, Gillett N P, Zwiers F W, Cannon A J, Anslow F S

机构信息

Pacific Climate Impacts Consortium University of Victoria Victoria British Columbia Canada.

Canadian Centre for Climate Modelling and Analysis Environment and Climate Change Canada Victoria British Columbia Canada.

出版信息

Earths Future. 2019 Jan;7(1):2-10. doi: 10.1029/2018EF001050. Epub 2019 Jan 8.

Abstract

A record 1.2 million ha burned in British Columbia, Canada's extreme wildfire season of 2017. Key factors in this unprecedented event were the extreme warm and dry conditions that prevailed at the time, which are also reflected in extreme fire weather and behavior metrics. Using an event attribution method and a large ensemble of regional climate model simulations, we show that the risk factors affecting the event, and the area burned itself, were made substantially greater by anthropogenic climate change. We show over 95% of the probability for the observed maximum temperature anomalies is due to anthropogenic factors, that the event's high fire weather/behavior metrics were made 2-4 times more likely, and that anthropogenic climate change increased the area burned by a factor of 7-11. This profound influence of climate change on forest fire extremes in British Columbia, which is likely reflected in other regions and expected to intensify in the future, will require increasing attention in forest management, public health, and infrastructure.

摘要

在加拿大不列颠哥伦比亚省2017年的极端野火季中,有创纪录的120万公顷土地被烧毁。这一史无前例事件的关键因素是当时普遍存在的极端温暖和干燥条件,这也反映在极端火灾天气和行为指标中。使用事件归因方法和大量区域气候模型模拟,我们表明,人为气候变化使影响该事件的风险因素以及被烧毁的面积大幅增加。我们表明,观测到的最高温度异常超过95%的概率是由人为因素造成的,该事件的高火灾天气/行为指标出现的可能性增加了2至4倍,人为气候变化使被烧毁的面积增加了7至11倍。气候变化对不列颠哥伦比亚省森林火灾极端情况的这种深远影响,可能在其他地区也有体现,预计未来还会加剧,这将需要在森林管理、公共卫生和基础设施方面给予更多关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c11/9285568/8f8aec6f28d1/EFT2-7--g004.jpg

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