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Monitoring summertime indoor overheating and pollutant risks and natural ventilation patterns of seniors in public housing
Accepted manuscript   Peer reviewed

Monitoring summertime indoor overheating and pollutant risks and natural ventilation patterns of seniors in public housing

Ioanna Tsoulou, Ruikang He, Jennifer Senick, Gediminas Mainelis and Clinton J. Andrews
Indoor + built environment, Vol.32(5), pp.992-1019
2023
DOI:
https://doi.org/10.7282/00000373

Abstract

Construction & Building Technology Engineering, Environmental Life Sciences & Biomedicine Public, Environmental & Occupational Health Science & Technology Engineering Technology
Indoor heat and air pollution pose concurrent threats to human health and wellbeing, and their effects are more pronounced for vulnerable individuals. This study investigates exposures to summertime indoor overheating and airborne particulate matter (PM2.5) experienced by low-income seniors and explores the potential of natural ventilation on maintaining good indoor thermal conditions and air quality (IAQ). Environmental and behavioural monitoring and a series of interviews were conducted during summer 2017 in 24 senior apartments on three public housing sites in NJ, USA (1930s' low-rise, 1960s' high-rise and LEED-certified 2010s' mid-rise). All sites had high exposures to overheating and PM2.5 concentrations during heat waves and on regular summer days, but with substantial between-site and between-apartment variability. Overheating was higher in the 30s' low-rise site, while pollutant levels were higher in the 60s' high-rise. Mixed linear models indicated a thermal and air quality trade-off with window opening (WO), especially in some 'smoking' units from the older sites, but also improved both thermal and PM2.5 concentration conditions in 20% of the apartments. Findings suggest that with warmer future summers, greater focus is needed on the interdependencies among (1) thermal and IAQ outcomes and (2) technological and behavioural dimensions of efforts to improve comfort for vulnerable occupants.
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tsoulou-et-al-2023-monitoring-summertime-indoor-overheating-and-pollutant-risks-and-natural-ventilation-patterns-of2.82 MB
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2023_Tsoulou et al._Overheating and pollutants2.83 MB
Restricted Access, To request access, contact soarhelp@libraries.rutgers.edu.
url
https://doi.org/10.1177/1420326X221148728View
Version of Record (VoR) Indoor and Built Environment Open
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