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The Development of Life Cycle $CO_2$ Assessment System Based on Eco-friendly Building Alternative Assessment

친환경 건축 대안평가방식의 건축물 $LCCO_2$ 평가 프로그램 개발

  • Received : 2012.02.29
  • Published : 2012.05.25

Abstract

Recently, there are growing interests in building life cycle assessment in response to climate change which is emerging as important issue. However existed assessment method is insufficient for satisfying characteristics of buildings. Thus it is required that effective assessment system which is suitable for reducing $CO_2$ emissions. Therefore, the purpose of this study is to develop building life cycle $CO_2$ assessment system according with required elements and building life cycle characteristics. To that end, the strategies of the system development was established for developing element technologies which are basis of the assessment system. And core values which are consist of keyword limited the direction of the development and the boundary of the technology. On such basis, element technologies were developed. Web-based assessment technology was based on the cycle of calculation and analysis and data accumulation by web system that each assessor is connected to online server. And it can be utilized as a building $CO_2$ assessment hub which combines the BIM modeling and the result of the other analysis tools. Automated materials quantity load technology was based on $CO_2$ functional unit and the list of building materials quantity which contains work classification and building material names and costs. And it can be calculated by data mapping technology through standard database format. Alternative assessment technology was based on life cycle template system. Also each element technologies are combined for building life cycle $CO_2$ assessment technology. As a result, Building life cycle $CO_2$ assessment system that includes effective calculation algorithm and alternative assessment technology and analysis system can be developed.

Keywords

Acknowledgement

Supported by : 국토해양부

References

  1. Sung-Ho Tae, Sung-Woo Shin, Current work and future trends for sustainable buildings in South Korea, Vol.13(2009), Issue8, pp.1910-1921 Renewable & Sustainable Energy Reviews https://doi.org/10.1016/j.rser.2009.01.017
  2. 이승언 외, 건축물 LCA(Life Cycle Assessment)를 위한 원단위 작성 및 프로그램 개발연구, 한국건설기술연구원, 2002
  3. 한국건설교통기술평가원, 건축물의 LCA(Life Cycle Assessment)를 위한 원단위작성 및 프로그램 개발연구, 2004
  4. A. Haapio, P. Viitaniemi. A critical review of building environmental assessment tools. Environmental Impact Assessment Review 2008;28:469-82. https://doi.org/10.1016/j.eiar.2008.01.002
  5. 우지환 외, 표준공동주택의 주요 건설자재 설정을 통한 공동주택 환경부하 평가 비교에 관한 연구, 한국생태환경건축학회, 2010.2
  6. 이강희 외, 주요 건축자재의 에너지 소비와 이산화탄소 배출 원단위 산정 연구, 대한건축학회논문집 계획계 제25권 제6호, 2009
  7. Ai Lin Teo Evelyn, Hazel Ming Tzu Huang. LCA Based Tools for the Selection of Building Materials in Singapore. ASCE Conf. Proc 978-0-7844-1204-6
  8. Paolo Papotti, Riccardo Torlone. Schema exchange: Generic mappings for transforming data and metadata. Data & Knowledge Engineering, Volume 68, Issue 7, Pages 665-682, 2009 https://doi.org/10.1016/j.datak.2009.02.005
  9. Zhuguo Li, A new life cycle impact assessment approach for building, Building and Environment, Vol.41 No.10, 2006
  10. Z. Li. A new life cycle impact assessment approach for building, Building and Environment 2006;41:1414-22. https://doi.org/10.1016/j.buildenv.2005.05.034
  11. 태성호 외, 공동주택의 전 과정주기 이산화탄소($LCCO_2$) 간이평가 기법 개발에 관한 연구, 대한건축학회논문집 계획계 제26권 제8호, 2010
  12. 김종엽 외, 건축물 건설단계에서의 에너지소비량 및 $CO_2$ 배출량 원단위 산출, 대한건축학회논문집 제20권 제10호 2004
  13. Luis Ochoa, Robert Ries, H. Scott Matthews, Chris Hendrickson et al. Life Cycle Assessment of Residential, 2005
  14. Seppo Junnila, Arpad Horvath, Angela Acree Guggemos. Life-Cycle Assessment of Office Buildings in Europe and the United. Journal of Infrastructure, 2006