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Use of a Rubber Dam System in Consideration of Climate Change

기후변화 대응을 위한 고무보시스템 선정 방안 연구

  • 황윤빈 ((주) 에코피엔지 기후변화대응전략팀) ;
  • 박기학 ((주) 에코피엔지 기후변화대응전략팀) ;
  • 김서현 ((주) 에코피엔지 기후변화대응전략팀) ;
  • 강헌 (수원대학교 환경에너지공학과) ;
  • 김지호 (동부엔지니어링 수자원환경부)
  • Received : 2018.08.31
  • Accepted : 2018.10.22
  • Published : 2018.12.31

Abstract

Due to climate change, water shortages and water-related disasters will be serious. Since the damage and frequency of drought are increasing, the importance of water resource management technology is increasing. In this study, we analyzed the amount of greenhouse gas and the environmental impact caused by the production and operation system technologies of movable weir among various water resource management technologies. The research subjects were air inflatable rubber dams widely used in rivers and upright type rubber dams, which are an improvement on the existing rubber type. Each type of dam was studied at sizes of $1,500H{\times}10,000L\;mm$ and $3,000H{\times}20,000L\;mm$, and the two types and two sizes were compared and analyzed. Using life cycle assessment, we examined the environmental impacts using the amount of electricity required for operation and the discretionary amount required for production. In the '$1,500H{\times}10,000L$' dams, the global warming indexes were $9.35E+04kg\;CO_2-eq$. for upright type and $7.36E+04kg\;CO_2-eq$. for inflatable type. At size of '$3,000H{\times}20,000L$' the global warming indexes were $9.09E+05kg\;CO_2-eq$. for upright type and $1.07E+06kg\;CO_2-eq$. for inflatable type. Analysis of the life cycle environmental impact showed that the environmental impact of the air inflatable rubber dam was reduced by 39.8% at '$1,500H{\times}10,000L$' compared to the larger size. At the larger '$3,000H{\times}20,000L$' size, the upright dam showed a 10.1% smaller impact than the air inflatable rubber dam. Selection of water resource management system should consider climate change, not only management purpose and cost. Additional studies and improvements on rubber dam systems should be made.

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Acknowledgement

Supported by : 국토교통과학기술진흥원