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  4. Exacerbated heat in large Canadian cities
 
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Exacerbated heat in large Canadian cities

Publikationstyp
Journal Article
Date Issued
2022-02-12
Sprache
English
Author(s)
Rajulapati, Chandra Rupa  
Gaddam, Rohan Kumar
Nerantzaki, Sofia D.  
Papalexiou, Simon Michael  
Cannon, Alex J.  
Clark, Martyn P.  
TORE-URI
https://hdl.handle.net/11420/57751
Journal
Urban Climate  
Volume
42
Article Number
101097
Citation
Urban Climate 42: 101097 (2022)
Publisher DOI
10.1016/j.uclim.2022.101097
Scopus ID
2-s2.0-85124397878
Publisher
Elsevier
Extreme temperature is a major threat to urban populations; thus, it is crucial to understand future changes to plan adaptation and mitigation strategies. We assess historical and CMIP6 projected trends of minimum and maximum temperatures for the 18 most populated Canadian cities. Temperatures increase (on average 0.3°C/decade) in all cities during the historical period (1979–2014), with Prairie cities exhibiting lower rates (0.06°C/decade). Toronto (0.5°C/decade) and Montreal (0.7°C/decade) show high increasing trends in the observation period. Higher-elevation cities, among those with the same population, show slower increasing temperature rates compared to the coastal ones. Projections for cities in the Prairies show 12% more summer days compared to the other regions. The number of heat waves (HWs) increases for all cities, in both the historical and future periods; yet alarming increases are projected for Vancouver, Victoria, and Halifax from no HWs in the historical period to approximately 4 HWs/year on average, towards the end of 2100 for the SSP5–8.5. The cold waves reduce considerably for all cities in the historical period at a rate of 2 CWs/decade on average and are projected to further reduce by 50% compared to the observed period.
Subjects
Climate change
Cold waves
Extreme events
Heat waves
Urban temperature
DDC Class
600: Technology
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