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Analysis on the Water Circulation and Water Quality Improvement Effect of Low Impact Development Techniques by Test-Bed Monitoring

시범 단지 운영을 통한 LID 기법별 물순환 및 수질개선 효과 분석

  • Ko, Hyugbae (Department of Civil Engineering, The University of Suwon) ;
  • Choi, Hanna (R&D Team, Taeyoung E&C CO., LTD.) ;
  • Lee, Yunkyu (R&D Team, Taeyoung E&C CO., LTD.) ;
  • Lee, Chaeyoung (Department of Civil Engineering, The University of Suwon.Institute of River Environmental Technology)
  • Received : 2016.03.16
  • Accepted : 2016.04.21
  • Published : 2016.05.01

Abstract

Low Impact Development (LID) techniques are eco-friendly storm water management process for water circulation restoration and non-point pollutant reduction. In this study, four LID techniques (Small constructed wetland, Infiltration trench box, Infiltration trench, Vegetated swale) were selected and installed as a real size at the real site. All facilities were evaluated as monitoring under the real environmental climate situation and an artificial rain with exceeding design rainfall. In various rainfall, runoff reduction efficiency and non-point pollutant removal efficiency are increased to the bigger Surface Area of LID (SA)/Catchment Area (CA) ratio and the bigger Storage Volume of LID (SV)/Catchment Area (CA) ratio. Runoff did not occur at all rainfall event (max. 17.2 mm) in infiltration trench and vegetated swale. But Small constructed wetland was more efficient at less than 10 mm, a efficiency of infiltration trench box was similar at different rainfall. Although different conditions (such as structural material of LID, rainfall flow rate, antecedent dry periods), LID techniques are good effects not only water circulation improvement but also water quality improvement.

저영향개발(LID) 기법은 물순환을 고려한 친환경 도시계획기법으로 개발 이전의 물수지를 회복시키려는 빗물관리 방법이다. 본 연구에서는 도시지역에 적용 가능한 LID 기법 중 4개(침투도랑, 식생수로, 도심형 인공습지, 측구형 침투도랑)를 선정하여 실제 적용될 지역에 시범 단지를 조성하였으며, 실제 강우와 인공강우를 이용한 모니터링을 통해 각 시설의 물순환 및 수질개선 효과를 평가하였다. 다양한 강우사상에서 모니터링한 결과 LID 시설의 표면적과 유역면적비, 그리고 시설용량과 유역면적비가 클수록 모든 강우사상에서 유출이 발생하지 않았다. 또한, 식생수로와 침투도랑은 모든 강우(최대 17.2mm)에서 유출이 발생하지 않았으며, 도심형 인공습지와 측구형 침투도랑에서는 유출이 발생하였는데 도심형 인공습지는 10mm 이하의 강우에서 유출 저감율이 높았으며, 측구형 침투도랑은 10mm 이하 및 이상의 강우에서 유사하게 나타났다. LID 시설의 구조와 강우사상, 선행건기일수에 따라 차이가 있으나 LID의 적용으로 물수지 개선 및 비점오염원 물질의 저감이 가능하다.

Keywords

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