Birchmore, R C; Berry, T A; Wallis, S L; Tsai, S and Hernandez, G (2023) Thermal performance and indoor air quality in new, medium density houses: auckland, New Zealand. International Journal of Building Pathology and Adaptation, 41(1), pp. 279-300. ISSN 23984708
Abstract
Purpose: New Zealand’s historical housing stock comprises largely single-storey detached houses, characterised by poor winter comfort with high air infiltration. Challenges with affordability and land use are shifting New Zealand’s housing stock towards double-storey, conjoined medium-density housing (MDH). Reduced external surfaces in this typology should reduce winter heat loss and infiltration, improving winter comfort and health. New concerns arise, however, regarding summertime overheating and poor indoor air quality. Design/methodology/approach: A field study was undertaken where temperature, humidity, airtightness, particulate matter (PM) and total volatile organic compounds (TVOC) were measured in two unoccupied, newly built double-storey, conjoined houses, for several weeks over summer. Findings: The reduced surface area of this typology did not reduce infiltration and demonstrated significant periods of overheating. Internal PM concentrations generally exceeded outdoor concentrations but did not exceed annual average outdoor PM10 guidelines of 20 µg m-3. Infiltration factors (Finf) were closer to more traditional houses. TVOC readings varied widely, but frequently exceeded international guidelines. Research limitations/implications: The small sample limits the applications of conclusions more widely. Recommendations to investigate a wider sample in different locations with more detailed VOC analysis over all seasons are made. Practical implications: Improvements to internal environments cannot be guaranteed by housing typology changes alone and must still involve thoughtful environmental design. Social implications: Housing typology changes may not improve internal living environments. Originality/value: A move to the new MDH typology may not achieve expectations of airtightness and thermal improvement. New challenges arise from significant overheating and high TVOC levels, which may lead to new negative health effects.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | airtightness; indoor air quality; medium density housing; particulate matter; performance analysis; tvoc |
| Index terms: | environmental design, density, infiltration, New Zealand, humidity, performance analysis, comfort, summer, housing stock, overheating, particulate, land use, winter, field study, affordability, housing, methodology, indoor air quality, thermal performance |
| Subjects: | construction type, climate science, sustainability and energy, real estate economics, energy systems, environmental science, data analysis and analytics, analytical methods, economic analysis, research methods, Geography, occupational health and safety management, industry analysis, environmental health, thermal systems |
| Topics: | Sustainability, Construction Technology, Health and Safety, Business Strategy, Engineering Principles, Geographical Context, Research Practice, Urban Studies, Design Practice |
| Descriptive scope: | 4 PCTA |
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