Space efficiency in timber office buildings

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2024

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Elsevier

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Interior Architecture and Environmental Design
The Atılım University Department of Interior Architecture and Environmental Design has developed an education program with an awareness where the discipline not only focuses on personal results through professional activities, but also involves the activities that are closely related to public security, health, comfort and welfare; aiming to improve the quality of life wherever possible, and catered to training creative and unique interior architects and environmental designers. In this scope, the mandatory and elective courses in the program cover the topics of designing, as well as devising and implementing projects for private properties, and public venues for education, shopping, entertainment, health care, culture, accommodation. With the fully-equipped Light and Color Laboratory and Acoustic Laboratories, the Department offers the opportunity to learn through observation and experience, and hands-on practice. The Department of Interior Architecture and Environmental Design is a member of the International Federation of Interior Architects/ Designers (IFI).

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Timber offices indicate a growing field, principally thanks to their potential to offer noteworthy ecological and financial gains over their entire life. Like many other building types, space efficiency is a crucial design parameter in timber structures to ensure a project's feasibility. This factor is especially significant in office buildings, where maximizing rental income reflects effective planning. Currently, there is a lack of exhaustive inquiry providing a thorough insight of space efficiency in modern timber office buildings. This study fills this gap in the literature by collecting data from 33 buildings through literature reviews and case study method to investigate space efficiency with the key architectural and structural factors that influence it. The results showed that: (i) central cores stood out as the prevailing core layouts, while peripheral arrangements were noted as alternative preferences. Prismatic shapes emerged as the most favored options; (ii) timber was extensively used as a primary building material, closely followed by combinations of timber and concrete. Load-bearing systems mainly relied on shear walled frames and configurations; (iii) average space utilization across examined cases was 88 %, with variances ranging from 75 % to 95 % among different instances; (iv) average ratio of core area to GFA was 10 %, showing variations between 4 % and 19 % across various scenarios; and (v) there were no substantial variances noted in the effect of different core planning strategies on spatial efficiency. Similar conclusions were drawn regarding building forms and structural materials. Our paper will assist in crafting design principles customized for diverse stakeholders, including architectural designers of timber offices.

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Ilgin, Huseyin Emre/0000-0001-8033-7823; ASLANTAMER, Ozlem Nur/0000-0001-7776-607X

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Timber, Office, Gross floor area (GFA), Net floor area (NFA), Space efficiency

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91

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