1. International Papers (SCI & SCIE)
[9] Bae, J., Lee, Y., Rho, J. H., Kang, G., Kim, J. J., & Son, R. (2025). CFD-quality nowcasting for urban air mobility with a deep learning-based emulator. Environmental Research Letters. (DOI 10.1088/1748-9326/addc84)
[8] Kang, G., & Kim, J. J. (2025). How to Plant Trees on an Elevated Road to Improve Thermal Comfort in a Street Canyon. Sustainable Cities and Society, 106207 (https://doi.org/10.1016/j.scs.2025.106207)
[7] Mun, D. S., Kang, G., Yang, M., & Kim, J. J. (2024). How trees’ drag and cooling effects influence airflow and temperature distributions around a street canyon. Building and Environment, 111913 (https://doi.org/10.1016/j.buildenv.2024.111913).
[6] Kang, G., and Kim, J. J., 2023: Effects of Vertical Forests on Air Quality in Step-up Street Canyons. Sustainable Cities and Society, 104537 (https://doi.org/10.1016/j.scs.2023.104537).
[5] Park, S. J., G. Kang, W. Choi, D. Y. Kim, J. Kim, and J.-J. Kim, 2021. Effects of Fences and Green Zones on the Air Flow and PM2. 5 Concentration around a School in a Building-Congested District. Applied Sciences, 11(19), 9216. (https://doi.org/10.3390/app11199216).
[4] Kim, D. J., G. Kang, D. Y. Kim, and J.-J. Kim, 2020: Characteristics of LDAPS-Predicted surface wind speed and temperature at automated weather stations with different surrounding land cover and topography in Korea. Atmosphere, 11(11), 1224 (https://doi.org/10.3390/atmos11111224).
[3] Kang, G., J.-J. Kim, and W. Choi, 2020: Computational fluid dynamics simulation of tree effects on pedestrian wind comfort in an urban area. Sustainable Cities and Society, 56, 102086 (https://doi.org/ 10.1016/j.scs.2020.102086).
[2] Kang, G., J.-J. Kim, D.-J. Kim, W. Choi, and S.-J. Park, 2017: Development of a computational fluid dynamics model with tree drag parameterizations: Application to pedestrian wind comfort in an urban area. Building and Environment, 124C, 209-218 (https://doi.org/10.1016/j.buildenv.2017.08.008).
[1] Park, S.-J., W. Choi, J.-J. Kim, M. J. Kim, R. J. Park, K.-S. Han, and G. Kang, 2016: Effects of building-roof cooling on the flow and dispersion of reactive pollutants in an idealized urban street canyon. Building and Environment, 109, 175-189 (https://doi.org/10.1016/j.buildenv.2016.09.011).
2. Domestic Papers (in Korean)
[6] Kang, G., W. Choi, and J.-J. Kim, 2022: A Numerical Study on the Effects of Urban Forest and Street Tree on Air Flow and Temperature. Korean Journal of Remote Sensing, 38(6), 1395-1406.
[5] Kang, G., M. J. Kim, J. E. Kang, M. Yang, S. H. Choi, E. Kang, and J.-J. Kim, 2021: A Study on the Surface Wind Characteristics in Suwon city using a GIS Data and a CFD Model. Korean Journal of Remote Sensing, 37(6-2), 1837-1847.
[4] Kwon, A., S.J. Park, G. Kang, and J.-J, Kim, 2020: Carbon monoxide dispersion in an urban area simulated by a CFD model coupled to the WRF-Chem model. Korean Journal of Remote Sensing, 36(5-1), 679-692.
[3] Kang, G., J.-J. Kim, and J.-B. Lee, 2020: A numerical study on the effects of buildings and topography on the spatial distributions of air pollutants in a building-congested district. Korean Journal of Remote Sensing, 36(2), 139-153.
[2] Kang, G., and J.-J. Kim, 2017: A study on estimation of inflow wind speeds in a CFD model domain for an urban area. Atmosphere, 27(1), 67-77.
[1] Kang, G., and J.-J. Kim, 2015: Effects of trees on flow and scalar dispersion in an urban street canyon. Atmosphere, 25(4), 685-692.