Overheating risk of a single-family detached house built at different ages under current and future climate in Canada
Date
2020
Authors
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Journal ISSN
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Publisher
EDP Sciences
Abstract
With the anticipated increase in temperature and solar radiation and frequency of extreme weather
conditions due to climate change, buildings typically designed/built in Canadian cold climates would
experience increased risks of summer overheating. This paper focuses on how these existing buildings
perform under a current extreme year and projected future climates. Results show that the thermal conditions
of a single-family detached house built in 1964 and 1990 are more comfortable than the house built to meet
the current National Energy Code of Canada for Buildings (NECB) and high energy-efficient building
(HEEB) without including natural ventilation by up to 50%. On the other hand, when natural ventilation is
included, the house built to NECB and HEED are more comfortable. Sensitivity analysis is carried out to
evaluate the influence of five design parameters, i.e. wall and roof insulation, airtightness, U-value and SHGC
of windows. Sensitivity analysis shows that wall insulation, airtightness, and windows U-value are the three
most significant parameters influencing the overheating risk without natural ventilation. With natural
ventilation, the SHGC of windows is the most influencing parameter in reducing overheating risk. This paper
confirms that the Canadian buildings have the overheating risk over the hot summer experienced over the past
a few years and the risk will be increased in the future. Natural ventilation as a mitigation measure, which has
been relied on by building designers in Canada will not be sufficient to remove excess heat or provide thermal
comfort to residents. Other mitigation strategies such as shading to reduce the heat gain during the summer,
are needed.
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Citation
@article{Baba2020OverheatingRO,
title={Overheating risk of a single-family detached house built at different ages under current and future climate in Canada},
author={Fuad Mutasim Baba and Hua Ge},
journal={E3S Web of Conferences},
year={2020},
url={https://api.semanticscholar.org/CorpusID:225196108}
}