Effects of Building Height on the Sound Transmission in Cross-Laminated Timber Buildings—Vibration Reduction Index

Author:

Nilsson Erik1ORCID,Ménard Sylvain1,Bard Delphine2,Hagberg Klas3

Affiliation:

1. Department of Applied Sciences, University of Québec at Chicoutimi, Chicoutimi, QC G7H 2B1, Canada

2. Department of Physics and Astronomy, Katholieke Universiteit Leuven, 3000 Leuven, Belgium

3. Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, Sweden

Abstract

High-rise wooden buildings are increasing in popularity, and they typically include cross-laminated timber in the structure. Taller buildings result in higher loads on the junctions lower down in the building, which are suggested in the literature to negatively affect the sound insulation. This study involved measurement of the vibration reduction index in four different CLT buildings, varying in height and junction details. A total of 12 junctions were measured at both high and low levels in the buildings. Among these, 10 junctions had resilient interlayers with different stiffnesses dependent on the designed quasi-permanent load, while 2 junctions lacked resilient interlayers. The results indicated that the vibration reduction index decreases lower down in the building mainly for the Wall–Wall path. The findings were consistent for all measured junctions above 400 Hz for the Wall–Wall path and for the majority of the measurements of the remaining frequency range, 400 Hz and below. The observed difference in the vibration reduction index could significantly impact the final result if a high-rise building has several flanking paths that affect the sound insulation between two apartments, and this needs to be considered during the design phase. Similar effects were shown for buildings both with and without resilient interlayers in the junctions.

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference67 articles.

1. Karacabeyli, E., and Gagnon, S. (2019). Canadian CLT Handbook, FPInnovations.

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4. Exposed Mass Timber in High-Rise Structures: A Practical Discussion of a Complex Fire Problem;Barber;CTBUH J.,2022

5. Gernay, T., and Ni, S. (2020). Timber High Rise Buildings and Fire Safety, World Steel Association.

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