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Introduction plan of future integrated water circulation management system using LID facility model verification

LID시설 모델검증을 활용한 미래형 통합 물순환관리시스템 도입방안

  • Lee, Jiwon (Department of Civil Engineering, Seoul National University of Science and Technology) ;
  • Gil, Kyungik (Department of Civil Engineering, Seoul National University of Science and Technology)
  • 이지원 (서울과학기술대학교 건설시스템공학과) ;
  • 길경익 (서울과학기술대학교 건설시스템공학과)
  • Received : 2021.02.10
  • Accepted : 2021.02.17
  • Published : 2021.02.28

Abstract

As the impermeable area increases due to urbanization and industrialization, the influence of non-point pollutants caused by rainfall runoff on the water system is increasing. In the past, the best management practices(BMP) were used a lot to manage non-point pollutants, but recently, technology that naturally treats them through LID (Low Impact Development) technology is widely used. In this study, various rainfall events were simulated through the SWMM model based on the data of rainfall monitoring in bioretention among natural facilities. The characteristic of LID modeling research is that it is difficult to build accurate modeling data with short-term data because real data is the result obtained through natural facilities, and it is difficult to implement an accurate model. In this study, the data monitored for 3 years It is significant in that it has built a precise model. The actual data monitored a total of 18 times was simulated, and the inflow and outflow and the removal efficiency of five pollutants were simulated. As a result of performing the performance evaluation, most of the 7 items showed excellent indicators, and the TN and TP showed relatively low simulation performance. In the future, it is expected that Korea will introduce an integrated water management system in which the water supply system and the sewage system are substantially integrated and operated. Therefore, the results of this study are considered to play an important role in the initial stage of rainfall management in the future integrated water management system, and the extent of rainfall runoff reduction and pollutant reduction in the expected installation area can be predicted in advance. This is expected to prevent overdesign of bioretention.

도시화와 산업화로 인하여 불투수면적이 증가함에 따라 강우유출에 의한 비점오염원이 수계에 미치는 영향이 커지고 있다. 과거에는 비점오염원을 관리하기위해 장치형 시설(BMP)이 많이 사용되었으나 최근 LID(Low Impact Development)기술을 통해 자연적으로 처리하는 기술이 많이 활용되고 있다. 본 연구에서는 자연형 시설 중 식생체류지에서의 강우 모니터링을 실시한 데이터를 토대로 SWMM 모델을 통해 다양한 강우사상을 모의하였다. LID 모델링 연구의 특징으로 실데이터가 자연시설을 통해 얻은 결과이기 때문에 단기간 데이터로는 정확한 모델링 자료를 구축하기 어려워 정확한 모델을 구현하기가 힘들다는 특징이 있는데, 본 연구에서는 3년간 모니터링한 데이터를 통해 정밀한 모델을 구축하였다는 점에서 의의가 있다. 총 18회 모니터링한 실데이터를 모의하였으며, 유입량과 유출량, 오염물질 5개항목의 제거효율을 모의하였다. 성능평가를 실시한 결과 7개 항목 대부분이 우수한 지표를 나타내었으며, 상대적으로 TN과 TP 항목이 모의성능이 낮은 것으로 나타났다. 미래에는 우리나라도 상수도 시스템과 하수도 시스템이 실질적으로 통합되어 운영되는 통합물관리 시스템이 도입될 것으로 예상된다. 따라서, 본 연구결과는 미래형 통합물관리시스템에서 강우를 초기에 관리하는 단계에서 중요한 역할을 할 수 있을 것으로 판단되며, 설치예상지역의 강우유출저감 및 오염물질 저감 정도를 사전에 예측할 수 있으며, 이를 통해 식생체류지의 과다설계를 방지할 수 있을 것으로 기대된다.

Keywords

References

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