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Home NEWS Science News

Global research reveals countries where record-breaking heatwaves are likely to cause most harm

Bioengineer by Bioengineer
April 25, 2023
in Science News
Reading Time: 3 mins read
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Research reveals countries where record-breaking heatwaves are likely to cause most harm
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A new study has highlighted under-prepared regions across the world most at risk of the devastating effects of scorching temperatures.

Research reveals countries where record-breaking heatwaves are likely to cause most harm

Credit: University of Bristol

A new study has highlighted under-prepared regions across the world most at risk of the devastating effects of scorching temperatures.

The University of Bristol-led research, published today in Nature Communications, shows that unprecedented heat extremes combined with socioeconomic vulnerability puts certain regions, such as Afghanistan, Papua New Guinea, and Central America, most in peril.

Countries yet to experience the most intense heatwaves are often especially susceptible, as adaptation measures are often only introduced after the event. A high chance of record-breaking temperatures, growing populations, and limited healthcare and energy provision, increase the risks.

Beijing and Central Europe are also on the list of hotspots, as if record-breaking heatwaves occurred in these densely populated regions millions of people would be adversely affected.

In light of the findings, the researchers are calling for policy makers in hotspot regions to consider relevant action plans to reduce the risk of deaths and associated harms from climate extremes.

Lead author, climate scientist Dr Vikki Thompson at the University of Bristol Cabot Institute for the Environment, said: “As heatwaves are occurring more often we need to be better prepared. We identify regions that may have been lucky so far – some of these regions have rapidly growing populations, some are developing nations, some are already very hot. We need to ask if the heat action plans for these areas are sufficient.”

The researchers used extreme value statistics — a method to estimate the return periods of rare events — and large datasets from climate models and observations to pinpoint regions globally where temperature records are most likely to be broken soonest and the communities consequently in greatest danger of experiencing extreme heat.

The researchers also cautioned that statistically implausible extremes, when current records are broken by margins that seemed impossible until they occurred, could happen anywhere. These unlikely events were found to have transpired in almost a third (31%) of the regions assessed where observations were deemed reliable enough between 1959 and 2021, such as the 2021 Western North America heatwave.

Co-author Dann Mitchell, Professor in Atmospheric Sciences at the University of Bristol Cabot Institute for the Environment, said: “Being prepared saves lives. We have seen some of the most unexpected heatwaves around the world lead to heat-related deaths in the tens of thousands. In this study, we show that such record smashing events could occur anywhere. Governments around the world need to be prepared.”

Human-induced climate change is causing an increase in the frequency, intensity, and duration of heatwaves, which have the potential to lead to thousands more excess deaths globally.

Improving our understanding of where society may not be ready for climate extremes can help prioritise mitigation in the most vulnerable regions. In recognition of the dangerous consequences of climate change, evidenced by the work of its climate experts, in 2019 the University of Bristol became the first UK university to declare a climate emergency.
 

Paper

‘The most at-risk regions in the world for high-impact heatwaves’ by V. Thompson, D. Mitchell, G. Hegerl, M. Collins, N. Leach, and J. Slingo in Nature Communications

 



Journal

Nature Communications

Subject of Research

People

Article Title

‘The most at-risk regions in the world for high-impact heatwaves’

Article Publication Date

25-Apr-2023

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