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Simulation of Water Pollution Accident with Water Quality Model

수질모형을 이용한 수질오염사고의 모의분석

  • Choi, Hyun Gu (K-water Institute) ;
  • Park, Jun Hyung (Kyungpook national university, School of Architectural, Civil, Environmental and Energy Engineering) ;
  • Han, Kun Yeun (Kyungpook national university, School of Architectural, Civil, Environmental and Energy Engineering)
  • 최현구 (K-water 연구원) ;
  • 박준형 (경북대학교 건설환경에너지공학부) ;
  • 한건연 (경북대학교 건설환경에너지공학부)
  • Received : 2014.03.20
  • Accepted : 2014.04.30
  • Published : 2014.06.30

Abstract

Depending on the change of lifestyle and the improvement of people's living standards and rapid industrialization, urbanization of recent, demand for water is increasing rapidly. So emissions of domestic wastewater and various industrial waste water has increased, and water quality is worsening day by day. Therefore, in order to provide a measure against the occurrence of water pollution accident, this study was tried to simulate water pollution accident. This study simulated 2008 Gimcheon phenol accident using 1,2-D model, and analyze scenario for prevent of water pollution accident. Consequently the developed 1-D model presents high reappearance when compared with 2-D model, and has been able to obtain results in a short simulation run time. This study will contribute to the water pollution incident response prediction system and water quality analysis in the future.

Keywords

References

  1. 국립환경과학원, 2011, 실험을 통한 수질오염물질의 이송 및 확산 모의검증 기법 개발 및 적용.
  2. 권나영, 최현구, 유재정, 한건연, 2010, 동적수질해석모형의 개발과 낙동강에의 개발과 낙동강에의 적용, 한국수자원학회논문집, 43(3), 283-294. https://doi.org/10.3741/JKWRA.2010.43.3.283
  3. 김기철, 이종석, 2009, 하천에서 추적자를 이용한 오염물질 거동 분석, 한국콘텐츠학회논문지, 9(1), pp. 400-406.
  4. 문현생, 장주형, 류인구, 김주영, 2012, Web 기반의 실시간 수질오염사고대응예측시스템 개발, 한국방재학회논문집, 12(2), 145-150. https://doi.org/10.9798/KOSHAM.2012.12.2.145
  5. 박노석, 김성수, 정선아, 김종오, 김도환, 강문선, 2012, EFDC를 이용한 대청댐내 보존성 오염물질 확산 모델링에 관한 연구, 상하수도학회논문지, 26(5), 705-712.
  6. 서일원, 백경오, 전태명, 이두헌, 정성희, 2004, 자연하천의 2차원 확산해석을 위한 추적자 실험방법 개발 및 적용, 수자원의 지속적 확보가능기술 개발 사업단 연구보고서.
  7. 최현구, 2012, 자료기반 해석과 물리적 모형을 연계한 실시간 하천수질예측 시스템 구축, 박사학위논문, 경북대학교.
  8. 환경부, 2008, 김천 페놀사고 사례조사 보고서.
  9. Bo Zhang, 2008, A Study of GIS-SD Based Temporal-Spatial Modeling of Water Quality in Water Pollution Accidents, The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. XXXVII, Part B2, Beijing.
  10. Delong, L. L., 1986, Extension of the unsteady one-dimensional open-channel flow equations for the flow simulation in meandering channels with flood plains. Hydrologic Sciences, United States Geological Survey Water-Supply, Paper 2220, December, 101-105.
  11. Fread, D. L., 1988, The NWS DAMBRK model: theoretical background/user documentation. Office of Hydrology, National Weather Service NWS, Md.
  12. Mazijk A. Wan, 2002, Modelling the effects of groyne fields on the transport of dissolved matter within the Rhine Alarm-Model, J. of Hydrology 264, 213-229. https://doi.org/10.1016/S0022-1694(02)00077-X
  13. Mazijk, A.van, Gils, J.A.G. van, and Weitbrecht, V., 2000, Analysre und Evaluierung der 2-D-Module Zur Berechnung des Stofftransportes in der Window-Version des RHEINALARMMODELLS in Theorie und Praxis, Report no. II-16.
  14. Samuels, William B., 2005, Using the River Spill model for Sourcewater Protection, AWWA Source Water Protection Symposium.

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  1. 3차원 수리모델을 이용한 한강 상수원구간 지류영향 분석 및 수질오염사고 시나리오 모의 vol.34, pp.4, 2018, https://doi.org/10.15681/kswe.2018.34.4.363