DOI QR코드

DOI QR Code

A Study on Dynamic Water Quality Change for Gate Operation in Seonakdong River

서낙동강 수문 운영에 따른 동적 수질 변화 연구

  • 김정민 (인제대학교 환경공학과) ;
  • 김영도 (인제대학교 환경공학과(낙동강유역환경연구센터))
  • Received : 2013.01.12
  • Accepted : 2013.04.26
  • Published : 2013.07.30

Abstract

The inflow from Daejeo gate and the outflow from Noksan gate in Seonakdong river, which is a reservoir-like river with the characteristics of stagnant water, is very important for TMDLs (Total Maximum Daily Load) of Nakbon N unit watershed. However, there are very few measured data for calculating base flow. The operating data is much different from the actual measured data because the probable maximum flowrate is used for gate operation. In this study, the operating flowrate data of Daejeo and Noksan gates are compared with the monthly water quality data from Ministry of Environment monitoring station. The dynamic change of the flowrate and the water quality is also measured for the operation of Daejeo and Noksan gates. The flowrate of Seonakdong river is measured, which is affected by the gate operation, the water elevation difference of Nakdong river and Seonakdong river, and the tidal elevation. The results of this study can be used for establishing the water quality improvement measures by the optimal gate operation.

호소형 하천으로 정체수역 특성을 갖는 서낙동강에서의 대저수문 유입량과 녹산수문 방류량은 오염총량관리 시행계획 대상유역인 낙본N 단위유역의 수질관리에 있어서 매우 중요한 영향을 미친다. 하지만 기준유량을 산정하기 위한 실측자료는 매우 부족하고, 대저수문과 녹산수문의 운영자료는 수문개도시 최대가능방류량만을 사용하고 있으므로 실측 방류량과는 많은 차이를 보이고 있다. 본 연구에서는 대저수문과 녹산수문의 운영자료를 수집하고, 이를 환경부 수질측정망 월별 수질변화와의 비교를 통해 분석하였다. 또한 대저수문과 녹산수문의 운영에 따른 서낙동강 본류의 비정상상태의 유량변화와 이에 따른 수질변화를 실측하였다. 낙동강 본류 수위, 서낙동강 수위, 조위 등의 영향을 받는 대저수문 유입과 녹산수문 방류에 의한 서낙동강 유량변화를 실측하였으며, 이는 대저수문과 녹산수문의 최적 운영을 통한 서낙동강의 수질 개선 대책 수립의 기초자료로 활용될 수 있을 것으로 판단된다.

Keywords

References

  1. Gimhae City. (2006a). Nakdong River Nakbon N unit watershed Gyeongsangnam-do Gimhae City TMDL Enforcement Plan.
  2. Gimhae City. (2006b). Nakdong River Nakbon N unit watershed stream quality and discharge survey, Final Report.
  3. Gimhae City. (2008). Nakdong River Nakbon N unit watershed stream quality and discharge survey, Final Report.
  4. Hwang, J. Y. (2008). A study on water quality management of Seonakdong River using surface water quality modeling, MSc Dissertation, Inje University (in Korean).
  5. Hwang, J. Y., Kim, Y. D., Kwon, J. H., Park, J. H., Noh, J. W. and Yi, Y. K. (2013). "Hydrodynamic and water quality modeling for gate operation: A Case Study for the Seonakdong River Basin in Korea." KSCE Journal of Civil Engineering, KSCE (in Press).
  6. Kang, D. H., Kim, J. M., Kim, T. W. and Kim, Y. D. (2012). "Prediction of continuous discharge and water quality change for gate operation in Seonakdong River experimental catchment using SWAT." Journal of Wetlands Research, Vol. 14, No. 1, pp. 21-33.
  7. Kang, J. Y., Kim, J. M., Kim, Y. D. and Kang, B. S. (2013). "Effect of climate change on water quality in Seonakdong River experiment catchment." Journal of Korean Society of Water and Wastewater, Vol. 27, No. 2, pp. 197-206 (in Korean). https://doi.org/10.11001/jksww.2013.27.2.197
  8. KICT (Korea Institute of Construction Technology). (2002). Experimental watersheds operation present condition (Technology for surface water resources investigation), The 21st Century Frontier R&D program Sustainable Water Resources Research Center (in Korean).
  9. Kim, J. M. and Kim, Y. D. (2011). "A Study on estimation of pollutant loads in Seonakdong River using SWAT-SWMM model." Journal of Korean Society Water and Wastewater, Vol. 25, No. 6, pp. 825-837 (in Korean).
  10. Lee, K. C., Yoon, Y. S. and Lee, N. J.(2009). "Prediction of waterquality enhancement effects of gates pperation in the West- Nakdong River using RMA2/RMA4 models." 2009 journal of the Environmental Sciences Vol. 18, No. 9, pp. 971-981.
  11. Lee, N. J., Kim, Y. D., Kwon, J. H. and Shin, C. K. (2007). "Research paper: Two-Dimensional Numerical Modeling of Water Quality Variation by Gates Pperation in the Seonkdong River." Journal of Korean Society Water and Wastewater, Vol. 21, No. 1, pp. 101-112 (in Korean).
  12. Lee, N. J., Park, J. H., Kim, Y. D. and Son, B. J. (2005). "Fundamental study on improving water quality of the Weat-Nakdong River by the gates operation." 2005 KSCE Meeting, Korean Society of Civil Engineers (CD-ROM) (in Korean).
  13. MLTM (Ministry of Land Infrastructure and Transport). (2001). Hydrologic measurement efficiency improve method study report, Han River Flood Control Office.
  14. Seo, K. W., Kim, N. G. and Choi, H. J. (2003). "Development of experimental catchment for urban hydrologic monitoring." Journal of Civil Engineering, Vol. 23, No. 5B. pp. 369-379.
  15. SRRIC (Seonakdong River Related Institute Cooperation). (2005). Comprehensive countermeasures of Seonakdong River water quality improvement.

Cited by

  1. Seasonal Variation of Dissolved Methane Concentration and Flux in the Nakdong Estuary vol.21, pp.3, 2016, https://doi.org/10.7850/jkso.2016.21.3.91