Research Article
Alajmi, A., & El-Amer, W. (2010). Saving energy by using underfloor-air-distribution (UFAD) system in commercial buildings. Energy Conversion and Management, 51(8), 1637-1642. https://doi.org/10.1016/j.enconman.2009.12.040
10.1016/j.enconman.2009.12.040Architectural Institute of Japan. (2019). Building wooden schools: From concept to maintenance (Revised edition). Tokyo: Architectural Institute of Japan.
Bae, S., Lee, H., Lee, H. H., Oh, K., & Choi, H. J. (2025a). Investigation of construction cases for mid-to-high rise timber buildings: Focus on North America and Europe. Journal of Korean Society Living Environmental System, 32(1), 66-77. https://doi.org/10.21086/ksles.2025.2.32.1.066
10.21086/ksles.2025.2.32.1.066Bae, S., Lee, S., Choi, G. S., Chae, H., Nam, Y., Kang, D. H., & Choi, H. J. (2025b). Performance analysis of renewable energy systems based on dynamic simulation for zero energy realization in mid-rise timber buildings. Journal of the Korean Society for Geothermal and Hydrothermal Energy, 21(3), 22-34.
Bao, Y., Yue, K., Dai, C., Wu, P., Lu, W., Zhao, H., & Li, Q. (2025). Investigating impact sound insulation in cross-laminated timber (CLT)-concrete composite floor with embedded mechanical fastening: Experimental analysis and statistical energy analysis. Journal of Building Engineering, 111, 113216. https://doi.org/10.1016/j.jobe.2025.113216
10.1016/j.jobe.2025.113216Chu, Y. R., Kim, H. J., & Kim, T. J. (2024). Structural analysis and design of mid-rise timber structures based on lateral force resisting systems. Paper presented at 2024 Autumn Annual Conference of the Architectural Institute of Korea , Gyeongju, Korea.
Harvey, A. (2024). Mass timber in design: An in-depth look at Adelaide Pointe. Paper presented at Wood Products Council Continuing Education, WoodWorks – Wood Products Council.
Hyodo, S., Yamashita, Y., Kobayashi, M., Morinaga, M., & Yasuda, Y. (2023). Development of a dry-type double floor with high vibration isolation for improvement of floor impact sound insulation performance on CLT buildings. Paper presented at 2023 INTER-NOISE and NOISE-CON Congress and Conference Proceedings, Institute of Noise Control Engineering, Tokyo, Japan. https://doi.org/10.3397/IN_2023_0673
10.3397/IN_2023_0673Japan Housing and Wood Technology Center. (2024). CLT architectural case collection 2024: From the CLT utilization building demonstration project. Tokyo, Japan: Japan Housing and Wood Technology Center.
Jeon, Y. J., & Kim, Y. H. (2022). Consideration of wood application plan by living SOC through analysis of overseas wooden buildings. Journal of Korea Institute of Ecological Architecture and Environment, 22(4), 79-86. https://doi.org/10.12813/kieae.2022.22.4.079
10.12813/kieae.2022.22.4.079Kang, D. H., Kim, Y. M., Lee, J. H., & Choi, H. J. (2025). Proposal to establish a BIM library system to improve the CLT member design process. Journal of the Architectural Institute of Korea, 41(7), 215-222. https://doi.org/10.5659/JAIK.2025.41.7.215
10.5659/JAIK.2025.41.7.215Kasai, Y., Tanaka, M., Kono, T., & Kawai, M. (2022). Sound insulation performance of CLT sound insulation test laboratory – Part 2. effects by dry double floor and double ceiling. The General Building Research Corporation of Japan, 47(1), 16-25.
Kim, K. W., Jeong, G. C., & Sohn, J. Y. (2008a). Correlation between dynamic stiffness of resilient materials and lightweight floor impact sound reduction level. Transactions of the Korean Society for Noise and Vibration Engineering, 18(8), 886-895. https://doi.org/10.5050/KSNVN.2008.18.8.886
10.5050/KSNVN.2008.18.8.886Kim, K. W., Jeong, G. C., & Sohn, J. Y. (2008b). Evaluation of the dynamic stiffness and heavy-weight floor impact sound reduction by composition of resilient materials. Transactions of the Korean Society for Noise and Vibration Engineering, 1(2), 247-254. https://doi.org/10.5050/KSNVN.2008.18.2.247
10.5050/KSNVN.2008.18.2.247Kim, K. W., Shin, H. K., Park, S. H., & Lee, J. W. (2022). Analysis of floor impact sound reduction performance of floor structure with damping material. Transactions of the Korean Society for Noise and Vibration Engineering, 32(6), 631-637. https://doi.org/10.5050/KSNVE.2022.32.6.631
10.5050/KSNVE.2022.32.6.631Kordziel, S., Pei, S., Glass, S. V., Zelinka, S., & Tabares-Velasco, P. C. (2019). Structure moisture monitoring of an 8-story mass timber building in Pacific Northwest. Journal of Architectural Engineering, 25(4), 14. https://doi.org/10.1061/(ASCE)AE.1943-5568.0000367
10.1061/(ASCE)AE.1943-5568.0000367Kwon, S. G., Chang, Y. S., & Choi, H. H. (2024). Comparative analysis of environmental impact of each building material using life cycle assessment(LCA): Focusing on types of construction wood and concrete. Journal of Korean Society Environmental Engineers, 46(10), 570-581. https://doi.org/10.4491/KSEE.2024.46.10.570
10.4491/KSEE.2024.46.10.570Lee, H. J., Ha, Y. S., & Lee, S. J. (2023). Evaluation of floor impact sound and airborne sound insulation performance of cross laminated timber slabs and their toppings. Journal of the Acoustical Society of Korea, 42(6), 572-583. https://doi.org/10.7776/ASK.2023.42.6.572
10.7776/ASK.2023.42.6.572Lee, H. J., Lee, S. J., Hwang, T. I., & Yoon, N. Y. (2024). Study on floor impact sound insulation performance of CLT floating floors by using wooden mock-up test house. Paper presented at 2024 Autumn Annual Conference of KSNVE @ Korean Society for Noise and Vibration Engineering, Jeongseon, Korea.
Levée, V., Beaulieu, G., Dagenais, C., Frenette, C., Latulippe, A., & Bellavance, S. T. (2018). Origine: Pointe-aux-Liévres ecocondos, Quebec: Cecobois.
McLain, R. (2022). Mass timber in multi-family housing: Is it a good fit for your project? Paper presented at Wood Products Council Continuing Education, WoodWorks – Wood Products Council.
Meyers-Levy, J., & Zhu, R. (2007). The influence of ceiling height: The effect of priming on the type of processing that people use. Journal of Consumer Research, 34(2), 174-186. https://doi.org/10.1086/519146
10.1086/519146Pilon, A., Utimati, A., & Jin, J. (2016). Brock Commons Tallwood House: Design and preconstruction overview. Vancouver: University of British Columbia, Centre for Interactive Research on Sustainability.
Steenbakkers, P., Verheggen, B., & Vola, M. (2023). Reaching new height in timber–hybrid design: Designing the Netherlands’ tallest timber-hybrid residential building. The Arup Journal, 1, 33.
Tanaka, M., Kasai, Y., Murakami, T., & Kawai, M. (2017). Floor impact sound insulation performance of CLT floor slab and reduction effect by floor coverings. AIJ Journal of Technology and Design, 23(55), 903-908. https://doi.org/10.3130/aijt.23.903
10.3130/aijt.23.903Vartanian, O., Navarrete, G., Chatterjee, A., Fich, L. B., Gonzalez-Mora, J. L., Leder, H., Modrono, C., Nadal, M., Rostrup, N., & Skov, M. (2015). Architectural design and the brain: Effects of ceiling height and perceived enclosure on beauty judgements and approach-avoidance decisions. Journal of Environmental Psychology, 41, 10-18. https://doi.org/10.1016/j.jenvp.2014.11.006
10.1016/j.jenvp.2014.11.006Waugh Thistleton Architects. (2017). Dalston Works drawings. Architecture Today. Retrieved March 9, 2026, from https://atlive-wp.s3.eu-west-2.amazonaws.com/wp-content/uploads/Waugh-Thistleton-Dalston-Works-drawings-AT.pdf
Webster, T. (2003). Alternative air conditioning technologies: Underfloor air distribution (UFAD). LBNL-49527. Berkeley, CA: Lawrence Berkeley National Laboratory. https://doi.org/10.2172/861498
10.2172/861498Wood, A., Safarik, D., Miranda, W., & Elbrecht, J. (2023). Tall timber: Mass timber for high-rise buildings (pp. 107-117). Chicago: Council on Tall Buildings and Urban Habitat.
WoodWorks – Wood Products Council. (2016). Construction advantages sell hotel developer on CLT: CLT builds faster and more safely with fewer workers. Washington DC: WoodWorks – Wood Products Council.
Zhang, K., Zhang, X., Li, S., & Jin, X. (2014). Review of underfloor air distribution technology. Energy and Buildings, 85, 180-186. https://doi.org/10.1016/j.enbuild.2014.09.011
10.1016/j.enbuild.2014.09.011Zhao, P., Asadi Jafari, M. H., & Zhou, J. (2025). Apparent impact sound insulation performance of raised discrete floating assemblies on mass timber floors. Building Acoustics, 32(3), 339-357. https://doi.org/10.1177/1351010X251343252
10.1177/1351010X25134325242005423PMC13086232- Publisher :The Korean Society of Living Environmental System
- Publisher(Ko) :한국생활환경학회
- Journal Title :Journal of The Korean Society of Living Environmental System
- Journal Title(Ko) :한국생활환경학회
- Volume : 33
- No :2
- Pages :145-155
- Received Date : 2026-03-16
- Revised Date : 2026-03-23
- Accepted Date : 2026-03-25
- DOI :https://doi.org/10.21086/ksles.2026.4.33.2.145


Journal of The Korean Society of Living Environmental System








