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Climate change and wildfire in Canada

Canadian Journal of Forest ResearchPublished 1 January 1991
Mike Flannigan, C. E. Van Wagner
Citations337
SJR quartileQ1
SJR score0.62
SNIP0.81

TL;DR

The impact of postulated greenhouse warming on the severity of the forest fire season in Canada is investigated using CO2 levels that are double those of the present (2 × CO2).

Abstract

This study investigates the impact of postulated greenhouse warming on the severity of the forest fire season in Canada. Using CO 2 levels that are double those of the present (2 × CO 2 ), simulation results from three general circulation models (Geophysical Fluid Dynamics Laboratory, Goddard Institute for Space Studies, and Oregon State University) were used to calculate the seasonal severity ratings for six stations across Canada. Monthly anomalies from the 2 × CO 2 simulation results were superimposed over historical sequences of daily weather. Then, seasonal severity ratings of the present were compared with those for 2 × CO 2 using five variations involving temperature, precipitation, and relative humidity. The relationship between seasonal severity rating and annual provincial area burned by wildfire was explored. The results suggest a 46% increase in seasonal severity rating, with a possible similar increase in area burned, in a 2 × CO 2 climate.

Keywords

Environmental Science