Why do Chicago buildings not retrofit?

Main Article Content

Peter Niemczak
Anna Stefańska


Keywords : Carbon Emission, Chicago, Climatic Strategies, Decarbonization, Retrofitting
Abstract

Retrofitting buildings undeniably offers opportunities to lower energy consumption and greenhouse gas emissions. However, choosing particular retrofit techniques is complex and needs planning. Several techniques exist for modifying buildings to use nearly zero energy. Chicago is world‐famous for its downtown skyscrapers, neighbourhood bungalows and leafy suburbs. Still, behind their façades, Chicago‐area buildings conceal an embarrassing and expensive reality: they use too much energy. By strategically combining available resources and existing knowledge, the Chicago area can make its physical structure more energy efficient, bringing environmental and economic benefits to the eight million people in this region. Therefore, the main focus of this study is to explore pertinent solutions, analyse the impact of such solutions on building energy efficiency and suggest renewable energy technologies. Extensive research involving numerical simulations or experiments is necessary to assess the feasibility of implementing these techniques in the specific climatic conditions of Chicago.

Article Details

How to Cite
Niemczak, P., & Stefańska, A. (2024). Why do Chicago buildings not retrofit?. Acta Scientiarum Polonorum. Architectura, 22(1), 159–170. https://doi.org/10.22630/ASPA.2023.22.16
References

Chicago & Building Decarbonization Policy Working Group (2022). Developing an Equitable Building Decarbonization Strategy for Chicago: Recommendations Report of the Chicago Building Decarbonization Policy Working Group. Retrieved from: https://www.chicago.gov/content/dam/city/progs/env/2022/Final-2022-Building-Decarb-City-Document.pdf [accessed: 03.11.2023].

City of Chicago (2020). Chicago Energy Benchmarking. Retrieved from: https://www.chicago.gov/city/en/progs/env/building-energy-benchmarking---transparency.html [accessed: 03.11.2023].

City of Chicago (2022). Chicago Energy Rating System. Retrieved from: https://www.chicago.gov/city/en/progs/env/ChicagoEnergyRating.html [accessed: 03.11.2023].

City of Chicago (2023). Retrofit Chicago, saving green by going green. Retrieved from: https://www.chicago.gov/city/en/progs/env/retrofit_chicago.html [accessed: 03.11.2023].

Das, A. & Ghosh, A. (2023). Vision Net Zero: A review of decarbonisation strategies to minimise climate risks of developing countries. In Environment, Development and Sustainability (Issue 0123456789). Springer Netherlands. https://doi.org/10.1007/s10668-023-03318-6 (Crossref)

Filho, W. L., Vidal, D. G., Dinis, M. A. P., Lambrechts, W., Vasconcelos, C. R. P., Molthan-Hill, P., Abubakar, I. R., Dunk, R. M., Salvia, A. L. & Sharif, A. (2023). Low carbon futures: assessing the status of decarbonisation efforts at universities within a 2050 perspective. Energy, Sustainability and Society, 13 (1), 1–18. https://doi.org/10.1186/s13705-023-00384-6 (Crossref)

Intergovernmental Panel on Climate Change [IPCC], (2021). Climate change widespread, rapid, and intensifying. Retrieved from: https://www.ipcc.ch/2021/08/09/ar6-wg1-20210809-pr [accessed: 03.11.2023].

Sareen, S., Smith, A., Gantioler, S., Balest, J., Brisbois, M. C., Tomasi, S., Sovacool, B., Torres Contreras, G. A., DellaValle, N. & Haarstad, H. (2023). Social implications of energy infrastructure digitalisation and decarbonisation. Buildings and Cities, 4 (1), 612–628. https://doi.org/https://doi.org/10.5334/bc.292 (Crossref)

City of Chicago Department of Environment, Parzen, J., Urban Sustainability Associates & The Center for Neighborhood Technology (2009). Chicago’s Guide to Completing an Energy Efficiency & Conservation Strategy February 2009. Retrieved from: https://glslcities.org/wp-content/uploads/2015/07/EnergyEfficiency-Chicago-2009.pdf [accessed: 03.11.2023].

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