Joonhee Lee
Membre régulier
Concordia University
Department of Building, Civil and Environmental Engineering,
EV 6.171, 1515 Rue Sainte-Catherine O
, Montreal
(Quebec)
H3G 2W1
Partager sur
Domaine·s de recherche
- Building Acoustics
- Noise Control
- Occupant comfort
Université
Concordia University
Axe primaire du Réseau AIRS
Mesures de la qualité de l'environnement
Axe(s) secondaire(s)
axe4
Secteur·s de recherche
- Nature et technologie
Type·s de recherche
- Fondamentale
- Recherche-Action
Diplôme·s
- Ph.D
Travaux de recherche
My research at Concordia Acoustics Lab examines how indoor and urban sound environments—including HVAC noise, airborne noise through façades, and impact noise in multi-storey buildings—affect occupants’ comfort and responses. We develop measurement methods, simulation tools, and design strategies to better characterize and control these s...
My research at Concordia Acoustics Lab examines how indoor and urban sound environments—including HVAC noise, airborne noise through façades, and impact noise in multi-storey buildings—affect occupants’ comfort and responses. We develop measurement methods, simulation tools, and design strategies to better characterize and control these sound environments, directly supporting AIRS’ focus on environmental quality and prevention by providing evidence-based ways to monitor, model, and mitigate noise as a key environmental health determinant.
NUMÉRO ORCID :
0000-0003-1511-6498
Références bibliographiques et DOI
Toubar, R., Mackenzie, R., & Lee, J. (2025). Speech level variation by office environment and communication type. Science and Technology for the Built Environment, 1-17. DOI:10.1080/23744731.2025.2551480
Zarei, F., Nik-Bakht, M., Lee, J., & Zarei, F. (2024). Urban-Scale Acoustic Comfort Map: Fusion of Social Inputs, Noise Levels, and Citizen Comfort in Open GIS. Processes, 12(12), 2864. DOI:10.3390/pr12122864
Lee, J., Francis, J. M., & Wang, L. M. (2017). How tonality and loudness of noise relate to annoyance and task performance. Noise Control Engineering Journal, 65(2), 71-82. DOI:10.3397/1/376427
Dabirian, S., Han, S. H., & Lee, J. (2020). Stochastic-based noise exposure assessment in modular and off-site construction. Journal of Cleaner Production, 244, 118758. DOI:10.1016/j.jclepro.2019.118758
Lee, J., & Wang, L. M. (2020). Investigating multidimensional characteristics of noise signals with tones from building mechanical systems and their effects on annoyance. The Journal of the Acoustical Society of America, 147(1), 108-124. DOI:10.1121/10.0000487