Spatial Effectiveness in High-Rise Timber Towers: a Global Perspective

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2024

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Mdpi

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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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Abstract

High-rise timber structures signify a rising trend, thanks to their significant environmental and economic advantages that occur over their complete lifespan. Enhancing spatial effectiveness in these structures is a critical design consideration for project feasibility. Currently, there has been no comprehensive study on the space efficiency of such towers. This article analyzed 79 cases all over the world to deepen the knowledge of design features shaping spatial efficiency. The critical findings are as follows: (1) the most common architectural preferences include residential function, a centrally located service core, and prismatic arrangements; (2) the preferred structural material is composite, while a shear walled frame system is the favored structural system; (3) the average spatial efficiency and percentage of core area to GFA were recorded at 84% and 10%, ranging from the lowest values of 70% and 4% to the highest values of 95% and 21%, respectively; and (4) no significant differences were detected in the effect of core design approaches on spatial effectiveness if appropriately planned, with similar inferences drawn concerning form and the structural material used. This article will assist in developing design directions for different interested parties, including architectural designers taking part in the advancement of high-rise timber towers.

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

Keywords

spatial effectiveness, space efficiency, timber/wood, high-rise timber buildings

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Q2

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Q2

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Volume

14

Issue

9

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