염해 환경하의 철근콘크리트 구조물의 친환경 내구설계 시스템 개발에 관한 연구

A Study on the Development of Sustainable Durability Design System for Reinforced Concrete Structure under Chloride Attack Environments

  • 김낙현 (한양대학교 대학원 건축환경공학과) ;
  • 노승준 (한양대학교 대학원 건축환경공학과) ;
  • 태성호 (한양대학교 공학대학 건축학부)
  • 투고 : 2011.05.11
  • 심사 : 2011.07.27
  • 발행 : 2011.08.31

초록

This study was suggested to develop sustainable durability design system and proposed the plan to evaluate design conditions that meet the intended service life and $LCCO_{2}$ reduction level of reinforced concrete structure easily from the early design stage. For that the W/B and covering depth of the concrete structure were calculated through calculation of service life based on standard specification expression and the quantitative reduction rate of the vertical member of reinforced concrete structure by the calculated W/B was applied. Life cycle of building classified into construction stage, operation stage, maintenance stage, and demolition/disposal stage and the method of $CO_{2}$ evaluation of each stage was proposed. For construction stage, the major construction materials that take up over 80% $CO_{2}$ emitting during building construction were selected and the $CO_{2}$ evaluation method for 5 standard apartment houses was proposed. Also, for operation stage, $CO_{2}$ emission was calculated through calculation of heating load by energy efficiency rating certification system. For maintenance stage, $CO_{2}$ emission was calculated using concept of re-construction by life and for demolition/disposal stage was calculated with the use of construction standard estimate. As a result of the case study by such evaluation methods, 80 years of service life and 17 specifications of sustainable durability design that meet the 40% intended $LCCO_{2}$ reduction level were deduced. The Maximum $LCCO_{2}$ reduction rate was analyzed by 47.2%.

키워드

참고문헌

  1. Zhuguo L., A new life cycle impact assessment approach for buildings, Building and Environment, 2006, pp.1414-1422
  2. Peuportier B., Putzeys K., Inter-comparison and benchmarking of LCA-based environmental assessment and design tools, PRESCO European Thematic Network, WP2 Final Report, 2005, p1-48
  3. Sungho T., Sungwoo S., Jeehwan W., Seungjun R., The development of apartment house life cycle CO2 simple assessment system using standard apartment houses of South Korea, Renewable & Sustainable Energy Reviews, 2011, pp.1454-1467
  4. Kanghee L., Sungho T., Sungwoo S., Development of a Life Cycle Assessment Program for building (SUSB-LCA) in South Korea, Renewable & Sustainable Energy Reviews, 2009, pp.1994-2002
  5. 이강희, 류승훈, 이은택, 정미홍, 공동주택 라이프싸이클 이산화탄소 산정 프로그램(Eco-pia) 개발에 관한 연구, 한국전과정평가학회지, 2010년, pp.49-58
  6. 태성호, 백정훈, 김태형, 철근 콘크리트 구조물의 친환경 내구설계 시스템 제안 및 평가, 한국생태환경건축학회 학술발표대회 논문집, 2009년, pp.97-102
  7. 국토해양부, 친환경 주택건설의 건설기준 및 성능, 친환경주택 의 설계 및 성능평가 지침, 2009년, pp.6-9
  8. 에너지관리공단, 건축물의 에너지절약설계기준, 2011년, pp. 54-61
  9. 한국콘크리트학회, 콘크리트표준시방서 내구성편, 2004년, pp. 15-17
  10. 한국콘크리트학회, 콘크리트표준시방서, 2009년 pp.119-124
  11. 최준철, 김영찬, RC조 건물에서 콘크리트강도 변경의 효율성에 대한 연구, 대한건축학회 논문집 2008년, pp.209-214
  12. 적산연구회, 건축공사일위대가, 대건사, 2009년 pp.258-301
  13. 한국은행, 2003년 산업연관표, 2003년, pp.313-846
  14. 김태형, 태성호, 콘크리트 생산에 의한 CO2 배출량 평가 시스템 개발에 관한 연구, 한국콘크리트학회 논문집, 2010년, pp. 787-796
  15. 에너지관리공단, 건물에너지 효율등급 인증제도 운영규정, 2011년, pp.1-19
  16. 정영선, 최경석, 강재식, 이승언, 건축물의 환경부하 평가를 위한 LCA 프로그램 개발에 관한 연구, 대한건축학회 논문집, 2008년, pp.259-266
  17. 한국건설기술연구원, 건설공사 표준품셈, 2009년 pp.796-798