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Increasing trends in regional heatwaves

Nature Communications · 2020 · Vol. 11(1) · pp. 3357–3357
Sarah Perkins‐KirkpatrickSophie C. Lewis

Abstract

Heatwaves have increased in intensity, frequency and duration, with these trends projected to worsen under enhanced global warming. Understanding regional heatwave trends has critical implications for the biophysical and human systems they impact. Until now a comprehensive assessment of regional observed changes was hindered by the range of metrics employed, underpinning datasets, and time periods examined. Here, using the Berkeley Earth temperature dataset and key heatwave metrics, we systematically examine regional and global observed heatwave trends. In almost all regions, heatwave frequency demonstrates the most rapid and significant change. A measure of cumulative heat shows significant increases almost everywhere since the 1950s, mainly driven by heatwave days. Trends in heatwave frequency, duration and cumulative heat have accelerated since the 1950s, and due to the high influence of variability we recommend regional trends are assessed over multiple decades. Our results provide comparable regional observed heatwave trends, on spatial and temporal scales necessary for understanding impacts.

Climate variability and modelsClimate Change and Health ImpactsPlant Water Relations and Carbon DynamicsClimatologyRange (aeronautics)Climate changeEnvironmental scienceUnderpinningPhysical geographyGeographyGeology
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References
Estimates of the Regression Coefficient Based on Kendall's Tau
Journal of the American Statistical Association · 1968 · 12,579 citations
On the Measurement of Heat Waves
Journal of Climate · 2012 · 1,286 citations
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