DOI QR코드

DOI QR Code

Development of Representative Envelope Types in Existing Public Building for Green Remodeling

그린리모델링을 고려한 기존 공공건축물 대표 외피유형 도출

  • 오지현 (아주대학교 대학원 스마트융합건축학과) ;
  • 김혜기 (아주대학교 공학연구소) ;
  • 김선숙 (아주대학교 건축학과)
  • Received : 2021.10.25
  • Accepted : 2021.11.30
  • Published : 2021.12.30

Abstract

In Korea, public buildings are leading the green remodeling business as one of the carbon neutral strategies. Retrofitting envelope of existing buildings is considered essential for green remodeling because it affect appearance, energy use of buildings and, also occupant's comfort. In view of constructability and cost, prefabricated envelope system have an advantage and could contribute to the activation of green remodeling business. Therefore, as the previous research for developing prefabricated envelope system, this paper aims to analyze the characteristics of existing public office buildings envelope in Korea. The survey was conducted by using web portal site "road view" function after appropriate sample design. Based on the survey, the envelope characteristics were categorized into 9 items which the orientation of main entrance, shape of plan, elevation composition, shape of openings, shape of constructions, window to wall ratio, envelope construction method, window projection and window type. We will use this results for deriving representative envelope types of public building and prefabricated envelope module design.

Keywords

Acknowledgement

이 논문은 2020년도 정부(산업통상자원부)의 재원으로 한국에너지기술평가원의 지원을 받아 수행된 연구임(NO.20202020800360)

References

  1. Choi, J.W., & Lee, J.G. (2021). Establishment of Standard Models According to Public Building Types for the Green-Remodeling Pre-Decision Making Supporting Tools. Journal of Korea Institute of Ecological Architecture and Environment, 21(3), 17-23.
  2. Dannapfel, V., Osterhage, T., Klein, M., Streblow, R., Vontein, M., Muller, D., & Kuhnhenne, M. (2019). The PLUG-N-HARVEST Facade: A Second Skin with Active and Passive Components. Journal of Facade Design and Engineering, 7(1), 101-114.
  3. Du, H., Huang, P., & Jones, P. (2019). Modular Facade Retrofit with Renewable Energy Technologies. Energy&Buildings, 205, Article 109543. https://doi.org/10.1016/j.enbuild.2019.109523
  4. IEA. (2011). EBC Annex 50: Prefabricated Systems for Low Energy Renovation of Residential Buildings.
  5. Jo, H.P., Oh, J.H., & Kim, S.S. (2017). A Study on the Target Parts for Envelope Remodeling Prototype to Improve Thermal Performance of Old Multi-family Residential Buildings. Journal of Korea Institute of Architectural Sustainable Environment and Building System, 11(1), 52-57.
  6. Kim, G.S., Kim, Y.M., Kim, J.S., & Oh, S.G. (2014). A Study on Data Quantification Simulation Model for Public Office Green Remodeling. Journal of the Architectural Institute of Korea Planing & Design, 30(10), 53-62.
  7. MOLIT. (2020a). Construction Guide for Green Remodeling of Public Buildings. Retrieved October 19, 2021, from http://www.greenremodeling.or.kr/.
  8. MOLIT. (2021b). Enforcement Rule of Green Buildings Construction Support Act. Retrieved October 19, 2021, from https://www.law.go.kr/.
  9. MOLIT. (2021) Green Buildings Construction Support Act. Retrieved October 19, 2021, from https://www.law.go.kr/.
  10. The Government of the Republic of Korea. (2020). 2050 Carbon Neutral Strategy of the Republic of Korea. Retrieved October 7, 2021 from https://www.moef.go.kr/.