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The relationship between site planning and electricity consumption

An empirical analysis of multi-unit residential complexes in Seoul, Korea

Bibliographic Data

ID21248090
AuthorsJaebin Lim (0000-0001-6589-2765, Chungnam National University), Myounggu Kang (0000-0001-7505-2866, University of Seoul, corresponding author)
Year2022
Volume49
Issue3
Pages971-986
Publication date2022-03-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironment and Planning B Urban Analytics and City Science (JOURNAL)
Journal identifiersISSN: 2399-8083 • E-ISSN: 2399-8091
PublisherSAGE Publications (PUBLISHER • US)
DOI10.1177/23998083211039855
OpenAlexW3196560321
LanguageEN
References cited42

To cope with the exacerbating housing problem due to urban population increase and rapid urbanization, the number of multi-unit residential complexes (MURCs) is sharply rising. MURCs account for approximately 30% or more of housing stocks in the New York and Los Angeles metropolitan areas; and much higher in developing world, for example, 58% in Seoul, Korea. Likewise, the share of electricity consumption of MURCs in cities is increasing. Most existing literature analyzed the electricity consumption at household or house level and neglected the electricity consumption in publicly shared spaces and utilities such as outdoor lighting, parking system, elevators (vertical transportation), playgrounds, site water and sewage, management offices, security offices, and so forth. Unlike single houses, MURCs with hundreds or thousands of houses tend to be planned and built all at once, under one site plan. Therefore, urban design or site planning can crucially affect the aggregated electricity consumption at neighborhood level with different land use patterns and spatial configurations, which change light, shade, wind, heat island, reflection for individual houses and public domain. Site plan attributes can also affect residents’ choice of indoor and outdoor activities. A few simulation studies tried to examine the effect of urban design at neighborhood level, but empirical analysis can be hardly found mainly due to data limitation. This study aims to empirically investigate the effect of urban design on aggregated electricity consumption at a neighborhood level. We collected the aggregated electricity consumption data of 1122 MURCs in Seoul during the first half of 2016 and adopted the panel analysis. This study confirmed that more building coverage roads and pavements increase the aggregated electricity consumption; more green open space reduces it. Interestingly, mid-rise and mid-open plan would be the optimum design because of the effect of the number of floors. As the number of floors increases, electricity consumption for vertical transportation increases faster and offsets the benefit of high-rise and high-open plan. The study is significant, because, unlike previous studies, it empirically analyzed the collective consumption of electricity at a neighborhood level, considering the site plan features. Furthermore, this study provides evidence-based implications for sustainable urban design, especially for MURCs

Agricultural economics · Business · Economic growth · Economics · Electricity · Environmental economics · Environmental planning · Geography · Metropolitan area · Population · Urbanization · Building Energy and Comfort Optimization · Engineering · Impact of Light on Environment and Health · Urban Heat Island Mitigation

  • Econometric Analysis of Panel Data

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  • Residential energy use and conservation

    Open Access•Dirk Brounen, Nils Kok et al.•European Economic Review•2012

  • On the impact of urban heat island and global warming on the power demand and electricity consumption of buildings—A review

    Open Access•M Santamouris, Constantinos Cartalis et al.•Energy and Buildings•2015

  • Energy and the city

    Open Access•Koen Steemers•Energy and Buildings•2003

  • Land surface temperature and households’ energy consumption

    Open Access•Bardia Mashhoodi, Dominic Stead et al.•Applied Geography•2020

  • Modeling urban energy dynamics under clustered urban heat island effect with local-weather extended distributed adjacency blocks

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  • Effect of densification and compactness on urban building energy consumption

    Open Access•Esra Trepci, Praveen Maghelal et al.•Sustainable Cities and Society•2020

  • Public open space characteristics influencing adolescents’ use and physical activity

    Open Access•Linde Van Hecke, Ariane Ghekiere et al.•Health & Place•2018

  • From intention to action

    Open Access•Eungkyoon Lee, Myounggu Kang et al.•Energy Research & Social Science•2020

  • Urbanization in China and the Coordinated Development Model—The case of Chengdu

    Open Access•Aimin Chen, Jie Gao•The Social Science Journal•2011

  • Rural–Urban Migration, Household Vulnerability, and Welfare in Vietnam

    Open Access•Loc Nguyen, Loc Duc Nguyen et al.•World Development•2013

  • A model for mapping the energy consumption of buildings, transport and outdoor lighting of neighbourhoods

    Open Access•Alberto Fichera, Giuseppe Inturri et al.•Cities•2016

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