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Eco-Friendly Design Evaluation Model Using PEI for Construction Facilities

PEI를 활용한 건설시설물의 친환경 설계평가모델

  • Received : 2017.04.18
  • Accepted : 2017.07.01
  • Published : 2017.08.01

Abstract

With the signing of the Paris Agreement, which is the new climate change agreement at the end of 2015, it will have a great impact on Korea environmental policy. The construction industry, which accounts for 42% of Korea's total $CO_2$ emissions, has been implementing various policies to improve the environmental problems. However, it is only applying passively to other projects except eco-friendly building certification. This is because most of the eco-related systems are based on building facilities. Therefore, there is a need for a new eco - friendly design evaluation model that can be widely applied not only to architecture but also to civil engineering facilities. In this study, a new model is developed based on the existing VE model, which adds new factors to evaluate the environmental friendliness, potential environmental pollution concept and environmental risk of facilities. This model is an eco-friendly design evaluation model that enables decision makers to effectively select alternative environmental criteria at the design stage. As a result of the case analysis of the block retaining wall and the alternative retaining wall, the value of the eco - friendly value of the alternative was 1.026 times higher than the original one. If this model is used at the design stage, it is expected to contribute not only to the construction of environmentally friendly facilities but also to the reduction of carbon emissions.

2015년 말 신기후변화협약인 파리협정(Paris Agreement)이 체결됨에 따라 우리나라의 환경정책에도 많은 영향을 미칠 것으로 보인다. 우리나라의 전체 이산화탄소 배출량의 42%를 차지하고 있는 건설업은 그동안 환경문제를 개선하기 위하여 다양한 정책을 펼쳐 왔지만, 친환경건축물 인증에 해당하는 프로젝트 외에는 소극적 적용에 그치고 있다. 이는 대부분의 친환경 관련제도가 건축시설물을 위주로 하기 때문인 것으로 판단된다. 따라서 건축 뿐 아니라 토목시설물에도 광범위하게 적용될 수 있는 새로운 친환경 설계평가모델이 필요하다. 본 연구에서는 기존의 VE모델을 기반으로 시설물의 친환경성, 잠재적인 환경오염 개념과 환경위험성을 평가 할 수 있는 새로운 요소를 추가하여 의사결정자가 설계단계에서 친환경에 효과적인 대안을 선정할 수 있도록 친환경 설계평가 모델을 제시 하였다. 원안인 블록식 옹벽과 대안인 현장타설 옹벽을 대상으로 사례분석을 실시한 결과 대안의 친환경가치값이 원안보다 1.026배 높게 산출되었다. 본 모델이 설계단계에서 활용된다면 환경친화적인 시설물의 건설뿐 아니라 탄소배출량의 감축에도 기여할 것으로 기대된다.

Keywords

References

  1. Cho, N. H., Yun, W. G., Lee, W. R. and Kim. K. J. (2016). "An analysis of the characteristics of environmental impact for PSC beam bridges using Life Cycle Assessment." Journal of the Korean Society of Civil Engineers, Vol.36, No.2, pp.297-305 (in Korean). https://doi.org/10.12652/Ksce.2016.36.2.0297
  2. Cho, J. H. (2004). The design of risk assessment matrices for ranking occupational health and safety risks and their application in manufacturing workplace, Master Thesis, Korea university (in Korean).
  3. Choi, D. S., Lee, M. E., and Cho, G. H. (2012). "A study on environmental impact assessment in domestic construction industry using Life Cycle Assessment." Journal of Korean Institute of Architectural Sustainable Environment and Building Systems, Vol. 6, No. 1, pp.46-56 (in Korean).
  4. Hur, S. S. (2016). "Climate change and concerted actions by mankind." Journal of Korean Social Trend and Perspective, Vol. 2016, No. 2, pp. 214-220 (in Korean).
  5. Jung, S. S. (2013). "A study on the method to reduce economical greenhouse gas emissions of existing building for expansion in green building." Journal of Korean Institute of Architectural Sustainable Environment and Building Systems, Vol. 7, No.2, pp.105-112 (in Korean).
  6. Kang, I. S., Kim, C. H., Choi, H. L. and Moon, H. S. (2008). "A case study on the application of the life cycle assessment in the water supply pipes." Proceeding of Korean Society of Civil Engineers, Vol. 2008, No. 10, pp. 1891-1894 (in Korean).
  7. Kim, H. K. (2008). Design VE/LCC, LCA decision making method on construction industry, Master Thesis, Inchon university (in Korean).
  8. Kim, H. K., An, K. H. and Choi, Y. S. (2011). "LCC analysis for optimized application of renewable energy of eco-friendly school." Journal of the Architectural Institute of Korea, Vol. 27, No. 11, pp. 83-90
  9. Kim, H. S. and Lee, J. E., (2003) "Critical success factors & best practice in LCC : empirical findings." Journal of The Architectural Institute of Korea Structure & Construction, Vol. 19, No. 2, pp. 115-122 (in Korean).
  10. Kim, J. G. and Park, J. M., (2015) "A study on design method depending upon low carbon green architecture of big medical center." Journal of The Korean Society of Civil Engineers, Vol. 35, No. 4, pp. 987-996 (in Korean). https://doi.org/10.12652/Ksce.2015.35.4.0987
  11. Kim, J. S. and Kim, B. S. (2015). "A proposal of nia model for eco ve decision of construction facilities." Journal of The Korean Society of Civil Engineers, Vol. 35, No.6, pp.1377-1385 (in Korean). https://doi.org/10.12652/Ksce.2015.35.6.1377
  12. Kim, M. G. and Kang, H. S. (2013). "A study on design application of eco-friendly integrated design process." Journal of The Korea Institute of Ecological Architecture And Environment, Vol. 13, No.4, pp. 87-94 (in Korean). https://doi.org/10.12813/kieae.2013.13.4.087
  13. Kim, M. H. (1999). Construction management engineering, Kimoondang, p. 602
  14. Kim, M. J. and Kim, B. S. (2016). "Definition of environmental cost and Eco-VE model for Eco-VE of construction facility." Journal of The Korean Society of Civil Engineers, Vol. 35, No. 5, pp. 903-913 (in Korean).
  15. Kim, S, U. and Kim, H, B. (2010). "A study on the improvement of korea green building certification system by the comparison with BREEAM and LEED." Journal of The Architectural Institute of Korea Planning & Design, Vol. 26, No.12, pp. 271-278 (in Korean).
  16. Kim. H. M. (2005). A design of hazard risk assessment matrices for ranking musculoskeletal disorder risks in automobile processing, Master Thesis, Korea university (in Korean).
  17. Lee, C., Lee, J. Y., Jung, W. S. and Hwang, Y. W. (2014). "A study on the characteristics of environmental impact in construction sector of high-speed railway using LCA." Journal of the Korean Society for Railway, Vol. 17, No.3, pp.178-185 (in Korean). https://doi.org/10.7782/JKSR.2014.17.3.178
  18. Lee, J. D. (1999). A study on the environmental accounting, Master Thesis, Kyonggi university (in Korean).
  19. Nam, H. J., Moon, J. H., Kim, K. G. and Kim, G. H. (2011). "An analysis of environmental factors and efficiency in the apartment housing projects-Focused on energy and environmental load reduction factors." Journal of Architectural Institute of Korea, Vol. 27, No. 11, pp. 203-210 (in Korean).
  20. Park, K. T. (2007). Case study of total cost analysis of the heat source system in building, Master Thesis, Hanyang university (in Korean).
  21. US Department of Defense (1993). MIL-STD-882C system safety program requirements. Military Standard System of Defence in US.
  22. Yi, B. J., Yoo, S. W. and Jin, Y. K. (2006) "Qualitative and quantitative risk assessment of aircraft system." Aerospace Engineering and Technology, Vol. 5, No. 1, pp. 223-232 (in Korean).