4.7 Article

Urban heat island and thermal comfort of Esfahan City (Iran) during COVID-19 lockdown

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JOURNAL OF CLEANER PRODUCTION
卷 352, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2022.131498

关键词

Thermal stress; Hot spot; Cold spot; Heating requirement; Esfahan metropolis

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The severity of the Urban Heat Island (UHI) in Esfahan was hypothesized to have decreased during the COVID-19 lockdown due to a reduction in activities. The study found that the land area experiencing heat stress decreased significantly during the lockdown period, while the total energy heating requirement increased.
The Urban Heat Island (UHI), driven in part by urban green space transformation, and resulting in bioclimatic stress, is one of the major environmental problems facing cities today. A brief reprise in UHI severity is hypothesised to have occurred for many cities during COVID-19 lockdown, as a result of the marked reduction in individual and industrial activities. This study explores the UHI the city of Esfahan, one of the major metropolises of Iran, comparing the urban temperature for the period 20 March to 20 April 2020, the first lockdown period in Iran, with a long term mean for this month calculated from 2000 to 2019. During the lockdown period, the UHI effect covered a much smaller land area than in all prior years investigated. The land surface area which experienced heat stress reduced significantly during the lockdown period, and the total energy heating requirement (heat degree days) increased by 23,945.2 degrees day calories compared to the long term average. These results demonstrate the significant changes in UHI and related variables during lockdown. While lockdown regulations are not sustainable in the long run, the improvements recorded demonstrate the potential to mitigate anthropogenic heating.

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