DOI QR코드

DOI QR Code

동적 건물에너지 시뮬레이션을 이용한 G-SEED 에너지성능 평가지침 도입 방안에 관한 기초연구

A Study on Development of New Assessment Method for the Energy Performance in G-SEED using Dynamic Building Energy Simulation Programs

  • 김기한 (울산대학교 건축공학부) ;
  • 채창우 (한국건설기술연구원 국민생활연구본부) ;
  • 조동우 (한국건설기술연구원 국민생활연구본부)
  • 투고 : 2018.08.09
  • 심사 : 2018.09.19
  • 발행 : 2018.10.30

초록

In this paper, a fundamental study for developing and introducing a new assessment method of the 'Energy Performance' in G-SEED that uses dynamic building energy simulations was conducted by comparing and analyzing the corresponding issues of domestic and foreign green building certification systems. The most significant part of the new assessment method to be developed was a development of a modeling guideline for a reference building using dynamic building energy simulations. In this paper, the composition and detailed contents of the guideline was created to comply with domestic energy codes. In addition, one of the most influential part of the result in the simulations, the 24-hour building operation schedule for a reference building, was created considering the equity with the ECO2 program that is the evaluation tool of one of the current assessment methods in the "Energy Performance". In order to improve the completeness of this guideline, it is necessary to continue the process of supplementation in the future, however, this paper is expected to be of great significance as the beginning of the research.

키워드

참고문헌

  1. Korea Energy Agency (2017). 2017 Korea Energy Agency Handbook, Korea Energy Agency.
  2. Ministry of Land, Infrastructure and Transport (2012). The Green Building Development Support Act, Ministry of Land, Infrastructure and Transport.
  3. US Green Building Council (2016). LEED v4 for Building Design and Construction, US Green Building Council.
  4. ASHRAE (2010), ASHRAE Standard 90.1-2010: Energy Standard for Buildings Except Low-Rise Residential Buildings, ASHRAE.
  5. BRE (2016). BREEAM International New Construction 2016 Technical Manual SD233 1.0, BRE Press.
  6. ASHRAE (2014). ASHRAE 140-2014: Standard Method of Test for the Evaluation of Building Energy Analysis Computer Programs, ASHRAE.
  7. Jeong, Y., Jung, H., Jang H., & Yu, K. (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. https://doi.org/10.7836/KSES.2014.34.3.001
  8. Jung, H., Jeong, Y., & Huh J. (2015). A study on the establishment of reference buildings of apartments and estimation of energy consumption, Journal of the Architectural Institute of Korea Planning & Design, 33(9), 45-52. https://doi.org/10.5659/JAIK_PD.2017.33.9.45
  9. Crawley, D., Hand, J., Kummert, M., & Griffith, B. (2005). Contrasting the capabilities of building energy performance simulation programs, U.S. Department of Energy.
  10. Korea Energy Agency (2016). Regulations for Building Energy Rating System, Korea Energy Agency.
  11. EPC Expert (2014). National Calculation Methodology (NCM) modelling guide (for buildings other than dwellings in England), EPC Expert.
  12. Deru, M., Field, K., Studer, D., Benne, K., Griffith, B., Torcellini, P., Liu, B., Halverson, M., Winiarski, D., Rosenberg, M., Yazdanian, M., Huang, J., & Crawely, D. (2011). U.S. Department of Energy commercial reference building models of the national building stock, National Renewable Energy Laboratory.
  13. Korea Energy Agency (2000). Unification and improvement of energy efficiency code for buildings and houses, Ministry of Trade, Industry and Energy.
  14. ASHRAE (2001). ASHRAE Handbook: Fundamentals, ASHRAE.
  15. Korea Institute of Energy Research (2001). A study on the building energy rating system and its transfer, Korea Institute of Energy Research.