DOI QR코드

DOI QR Code

A Study on the Performance Evaluation for Decision-making in the Early Design Stage of Green Remodeling of Public Buildings - Focused on Technology for Reducing Heating and Cooling Load of Childcare Facilities -

설계 초기단계 공공건축물 그린리모델링의 의사결정을 위한 성능평가 연구 - 어린이집의 냉난방 부하 절감 기술을 중심으로 -

  • Kim, Sa-Kyum (Integra D&C Inc. Research Institute, Integra D&C) ;
  • Bae, Jong-Kyun (Integra D&C Inc. Research Institute, Integra D&C) ;
  • Son, Eun-Jo (Integra D&C Inc. Research Institute, Integra D&C) ;
  • Jang, Ji-Hoon (Integra D&C Inc. Research Institute, Integra D&C) ;
  • Jeon, Sang-Hyun (Intgera D&C Inc. Research Institute, Integra D&C)
  • 김사겸 ((주)인테그라디앤씨 부설연구소) ;
  • 배종균 ((주)인테그라디앤씨 부설연구소) ;
  • 손은조 ((주)인테그라디앤씨 부설연구소) ;
  • 장지훈 ((주)인테그라디앤씨 부설연구소) ;
  • 전상현 ((주)인테그라디앤씨 부설연구소)
  • Received : 2022.12.21
  • Accepted : 2023.11.22
  • Published : 2023.12.31

Abstract

Recently, GHG reduction scenarios and carbon neutrality have become significant global issues. The building sector accounts for a large portion of reducing GHG emission. Green remodeling businesses are among the representative policies in the new version of the Korean New Deal. Evaluating the energy performance of technical elements during the green remodeling process is critical. This study aims to develop a decision-making method using a simplified energy assessment approach that can be utilized by non-professionals in the green remodeling industry. The proposed model is intended for application in the early stages, facilitating the determination of energy efficiency for technical elements. With the development and implementation of this method, non-professionals are expected to be empowered to make effective decisions regarding technical elements in the initial phases of green remodeling projects.

Keywords

Acknowledgement

본연구는 국토교통부/국토교통과학기술진흥원의 지원으로 수행되었음. 과제번호: RS-2022-00141900

References

  1. Bang, S.K., Yoo, J.H., & Hwang, H.J. (2017). A study on the development of energy simulation program for no n-specialist to thrive green remodeling basis, Proceedings of the Architectural Institute of Korea 2017 Spring Annual Conference, 37(1), 555-558.
  2. BPIE (2010). Energy Performance Certificates across Europe, from Design to Implementation, Buildings Performance Institute Europe, 47~49. 
  3. C40 Cities (2019). Constructing a New, Low-carbon Future, C40 China Building Programme(CBP): Launch Report, C40CITIES, 15~30. 
  4. Carbon Neutrality & Green Growth Commission (2023). 2030 National Greenhouse Gas Reduction Target(NDC), Korean Government, 20~21. 
  5. 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.
  6. EnergyStar (2021). An Overview of Portfolio Manager, U.S. Environmental Protection Agency, 1~3.
  7. Jeong, Y.S., Jung, H.K., Jang, H.K., & Yu, K.H. (2014). A study on the reference building based on the building design trends for non-residential buildings, Journal of the Korean Solar Energy Society, 34(3), 1-11.
  8. Ju, J.H., Lee, K.H., Koo, B.K., & Kim, K.T. (2018). A study on the estimation of green remodeling energy reduction tool in building construction - office building -, Journal of the Architectural Institute of Korea, 34(8), 13-18.
  9. Kim, S.K., Bae, J.K., Jang, J.H., & Jeon, S.H. (2022). The study on the development of decision-making support model using a simple energy assessment method on technical elements of green remodeling, Proceedings of the Architectural Institute of Korea 2022 Autumn Annual conference, 42(2), 819-822.
  10. Kim, H.J., & Oh, C.H. (2020). Derivation of reference building standard in energy sector through analysis of permit status for public buildings (non-residential), Journal of Korea Institute of Ecological Architecture and Environment, 20(2), 139-152.
  11. Kim, R.S., Ryu H.K., Choi, S.H., & Yoon, H.W. (2017). A study on prediction of energy consumption at manufacturing plant using design of experiments, Proceedings of the Architectural Institute of Korea, 31(8), 989-990.
  12. Lee, Y.M., & Lee, S.H. (2019). A study on the improvement of the green remodeling project for the reuse of existing buildings, Proceedings of the Korean Housing Association, 31(1), 163-166.
  13. Lee, J.G., & Jang, H.I. (2021). Standard model and simple evaluation coefficient by type of non residential public building for green remodeling energy performance an alysis, Journal of KIAEBS, 15(5), 419-430.
  14. Ministry of Land, Infrastructure and Transport(MOLIT) (2021a). 841 Cases Selection for Green Remodeling Project of Public Building, Korean MOLIT, 1~5.
  15. Ministry of Land, Infrastructure and Transport(MOLIT) (2021b). Green Remodeling Support Guidelines of Public Buildings, Korean MOLIT, 3~5.
  16. Ministry of Land, Infrastructure and Transport(MOLIT) (2017). Energy-saving Design Standards for Buildings, Korean MOLIT, 142~144.
  17. Oh, J.H, Kim, H.G., & Kim, S.S. (2021). Development of representative envelope types in existing public building for green remodeling, Journal of the Architectural Institute of Korea, 37(12), 277-284.
  18. Park, D.Y., Choi, S.G., Hwang, D.K., & Oh, M.D. (2019). A Study on the reference building model for the selection of unit cooling loads for non-residential buildings, Korea Journal of Air-Conditioning and Refrigeration Engineering, 31(8), 370-379. https://doi.org/10.6110/KJACR.2019.31.8.370
  19. Seo, S.M., Kim S.M., & Rhee, E.K. (2013). A study of optimum design and performance standard on school, Journal of the Architectural Institute of Korea, 29(8). 209-218.