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A Review on the Building Wind Impact through On-site Monitoring in Haeundae Marine City: 2021 12th Typhoon OMAIS Case Study

  • Kim, Jongyeong (Department of Civil & Environmental Engineering, Pusan National University) ;
  • Kang, Byeonggug (Department of Civil & Environmental Engineering, Pusan National University) ;
  • Kwon, Yongju (Department of Civil & Environmental Engineering, Pusan National University) ;
  • Lee, Seungbi (Technical Department, K-Watercraft) ;
  • Kwon, Soonchul (Department of Civil & Environmental Engineering, Pusan National University)
  • 투고 : 2021.11.15
  • 심사 : 2021.12.08
  • 발행 : 2021.12.31

초록

Overcrowding of high-rise buildings in urban zones change the airflow pattern in the surrounding areas. This causes building wind, which adversely affects the wind environment. Building wind can generate more serious social damage under extreme weather conditions such as typhoons. In this study, to analyze the wind speed and wind speed ratio quantitatively, we installed five anemometers in Haeundae, where high-rise buildings are dense, and conducted on-site monitoring in the event of typhoon OMAIS to determine the characteristics of wind over skyscraper towers surround the other buildings. At point M-2, where the strongest wind speed was measured, the maximum average wind speed in 1 min was observed to be 28.99 m/s, which was 1.7 times stronger than that at the ocean observatory, of 17.0 m/s, at the same time. Furthermore, when the wind speed at the ocean observatory was 8.2 m/s, a strong wind speed of 24 m/s was blowing at point M-2, and the wind speed ratio compared to that at the ocean observatory was 2.92. It is judged that winds 2-3 times stronger than those at the surrounding areas can be induced under certain conditions due to the building wind effect. To verify the degree of wind speed, we introduced the Beaufort wind scale. The Beaufort numbers of wind speed data for the ocean observatory were mostly distributed from 2 to 6, and the maximum value was 8; however, for the observation point, values from 9 to 11 were observed. Through this study, it was possible to determine the characteristics of the wind environment in the area around high-rise buildings due to the building wind effect.

키워드

과제정보

This research was supported by a grant (20011068) of Regional Customized Disaster-Safety R&D Program funded by Ministry of Interior and Safety (MOIS, Korea).

참고문헌

  1. Choi, J.S., Kim, E.J., & Yoon, S.H. (2019). A Study on the Comparison of Wind Pressure Coefficient and Natural Ventilation Performance According to the Layout of Apartment Complex. Journal of Korean Institute of Architectural Sustainable Environment and Building Systems, 13(5), 315-324. https://doi.org/10.22696/jkiaebs.20190027
  2. City of London Corporation (2019). Wind Microclimate Guidelines for Developments in the City of London, 1-15. Retrieved from https://in2.ie/wp-content/uploads/2019/11/city-of-london-wind-microclimate-guidelines.pdf
  3. Kim, H.L. (2018). Building and Wind Dynamics. Seoul, Korea: Ilgwang
  4. Kim, H.J., Kim. H.S., Jung, S.H., & Lee, S.H. (2013). Analysis on Effects of Protection Against Wind According to Tree Species and Planting Methods of the Wind Break Forest Based on the Wind Tunnel Experiment. Preceedings of 2013 Forest Science Joint Conference of Korean Institute of Forest Recreation and Welfare, 791-794.
  5. Kim, J.D., & Im, J.T. (2012). Wind-Resistant Design of Tall Building using CFD. Computational Structural Engineering, 25(2), 21-24
  6. Lawson, T.V., & Penwarden, A.D. (1975). The Effectss of Wind on People in the Vicinity of Buildinbg. Proceedings of 4th International Conference on Wind Effects on Buildings and Structures, Cambridge University Press, Heathrow, 605-622.
  7. Lee, J.H., Cheon, D.J., Kim, Y.C., & Yoon, S.W. (2021). Investigation of Peak Pressure Coefficient of Central Open Elliptical Dome Roof by Wind Tunnel Test. Journal of Architectural Institute of Korea, 37(9), 189-197. https://doi.org/10.5659/JAIK.2021.37.9.189
  8. Oh, S.H., Kwon, S.C., Kim, J.C. & Lee, K.W. (2020). Review of Hazardous Areas Through the Field Observation of Building Wind at Pedestrian Height - Concentrated on the 2020 9th Typhoon -. Journal of the Regional Association of Architectural Institute of Korea, 22(6), 151-157.
  9. Roh, J.W. (2008). Example Study on Building Wind of Apartment Complex by Computational Fluid Dynamics - About Two apartment Complex in Cheon-An Region -. Korea Institute of Ecological Architecture and Environment, 8(4), 37-42.
  10. Korea Meteorological Administration. (2016). Standard Specifications for Automatic Weather Observation Equipment. Korea Meteorological Administration.
  11. You, J.Y., Nam, B.H., Park, M.W., & You, K.P. (2021). Comparison for Assessment of Wind Environment in High-rise Buildings Using Wind Tunnel Test and Computational Fluid Dynamics. Journal of Architectural Institute of Korea, 37(5), 163-171. https://doi.org/10.5659/JAIK.2021.37.5.163