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  3. MS Program in Disaster Risk Reduction and Resilience (MDR3) / 防災減害與韌性碩士學位學程
  4. Downwind Warming of Cities? Inequal Heat Distribution Attributed to Winds
 
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Downwind Warming of Cities? Inequal Heat Distribution Attributed to Winds

Journal
Sustainable Cities and Society
Journal Volume
117
Start Page
105879
ISSN
2210-6707
Date Issued
2024-12
Author(s)
Wan-Yu Shih  
Min-Hui Lo  
Undrakh Ganzorig
DOI
10.1016/j.scs.2024.105879
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-85208657536&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/723667
Abstract
Heat exposure within urban areas is strikingly uneven, posing disproportionate risks to certain communities. While nature-based solutions have gained attention, the role of wind in distributing heat remains less understood in an urban planning scale. This study assessed the interaction between wind direction, speed, and heat advection in Taipei Basin during summers from 2011 to 2020, using data from densely installed meteorological stations. A novel method was developed to capture multiple wind directions while accounting for local terrain and urban effects. Results revealed that wind-induced heat advection is complicated by local terrain and nearby cities in the conurbation, varying heat distribution. Windy conditions were mostly warmer than calm conditions, with north-westerly and westerly winds causing the strongest heat advection. Heat advection increased with wind speeds up to 5.4 m/s and decreased thereafter. Substantial intra-urban differences in heat advection were observed, reaching 4.33°C daytime and 3.34°C nighttime. Upwind areas were not necessarily cooler, while some downwind areas at mountain foot experienced greater warming. Up to 2.6SD of advected heat magnitude was found downwind at night. These findings underscore inequitable heat transfer to areas that do not generate heat and the critical need for wind-sensitive planning for both city-region and inter-urban areas.
Subjects
heat advection
heat inequality
nature-based solutions
urban climate
urban heat island effect
urban planning
wind
SDGs

[SDGs]SDG11

[SDGs]SDG13

Publisher
Elsevier BV
Type
journal article

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