Space Efficiency in European High-Rise Timber Buildings
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Published:2024-07-04
Issue:13
Volume:14
Page:5838
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ISSN:2076-3417
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Container-title:Applied Sciences
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language:en
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Short-container-title:Applied Sciences
Author:
Ilgın Hüseyin Emre1ORCID, Aslantamer Özlem Nur2ORCID
Affiliation:
1. School of Architecture, Faculty of Built Environment, Tampere University, P.O. Box 600, FI-33014 Tampere, Finland 2. Department of Interior Architecture and Environmental Design, Faculty of Art, Design and Architecture, Atılım University, Ankara 06830, Turkey
Abstract
As towering wooden edifices (≥8 stories) become a rapidly expanding and promising field, they provide substantial environmental and economic advantages throughout their entire lifespans, leading to their increasing popularity, especially in the European context. Similar to various other construction forms, spatial efficiency is a vital design criterion in timber buildings to guarantee the viability of a project. Currently, there is no thorough study on spatial efficiency in these towers in Europe, which is home to the majority of the world’s timber towers. This paper examined data from 56 cases to improve comprehension of the planning factors affecting space efficiency in these buildings. The main findings showed that the average space efficiency across the analyzed examples was documented at 82%, with deviations spanning from 70% to 90%, the average core area to gross floor area (GFA) ratio was determined to be 11%, ranging from 4% to 21%, and no substantial difference was noted in the impact of core arrangements on space efficiency, and parallel findings were observed for forms and construction materials. This article aspires to provide architectural designers with essential perspectives, assisting and directing them in the conception and realization of upcoming ventures both across Europe and internationally in this domain.
Reference81 articles.
1. Examining green productivity amidst climate change technological development and spillovers in the Nordic economies;Rahko;J. Clean. Prod.,2024 2. Meena, C.S., Kumar, A., Jain, S., Rehman, A.U., Mishra, S., Sharma, N.K., Bajaj, M., Shafiq, M., and Eldin, E.T. (2022). Innovation in green building sector for sustainable future. Energies, 15. 3. Safarik, D., Elbrecht, J., and Miranda, W. (2022). State of Tall Timber 2022. CTBUH J., 22–31. Available online: https://s3.eu-west-2.amazonaws.com/construo-storage/attachments/9a13793fe644586846b1b92c4901ae721325e3e88e4eb40b8e83a354c75d0d97/CTBUH%20-%20State%20of%20Tall%20Timber%202022,%20Issue%201.pdf. 4. Morales-Beltran, M., Engur, P., Sisman, Ö.A., and Aykar, G.N. (2023). Redesigning for disassembly and carbon footprint reduction: Shifting from reinforced concrete to hybrid timber–steel multi-story building. Sustainability, 15. 5. Reimagining low-carbon futures: Architectural and ecological tradeoffs of mass timber for durable buildings;Laboy;Archit. Struct. Constr.,2022
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