Simulation of Turbid Water in the Stratified Daecheong Reservoir during Gate Operation

댐 배수조작에 따른 저수지내 탁수변화 모의 - 대청댐을 대상으로 -

  • Lee, Jae-Yil (Department of Urban Engineering, Chungbuk National University) ;
  • Seo, Se-Deok (Department of Urban Engineering, Chungbuk National University) ;
  • Lee, Gyu-Sung (Department of Urban Engineering, Chungbuk National University) ;
  • Ha, Sung-Ryong (Department of Urban Engineering, Chungbuk National University)
  • Received : 2009.10.08
  • Accepted : 2009.12.21
  • Published : 2009.12.31

Abstract

Due to severe flooding, the long-term residence of turbidity flows within the stratified Daecheong Reservoir have lengthened. A long-term residence of turbidity flows within the stratified Daecheong Reservoir after floods has been major environmental issue. The objective of this study was to assess the impact to water supply from the hydrodynamics and turbidity outflow. Two gate operation scenarios were investigated. Scenario A refers to gate operations according to rainfall events, and scenario B refers to gate operations according to inflow. From the results of secenario A, the SS concentrations decreased from 0.44mg/l to 0.54mg/l at the front of the dam, whereas SS concentrations increased from 0.24mg/l to 1.24mg/l at the intake points at Munhi and Daejeon. From the results of scenario B, the SS concentrations decreased from 0.61mg/l to 0.83mg/l at the front of Dam; howeve, SS concentrations also decreased from 0.16mg/l to 0.48mg/l at the intake points at Munhi and Daejeon. It seems that it may be more efficient to control turbidity by creating additional outflows of generated discharge after intensive rainfalls than not.

Keywords

References

  1. 박재충, 정석원, 박정원, 김호준, 2008, 심층 방류하는 안동호 내 탁수의 거동, 한국하천호수학회, 42(3), 360-366
  2. 박재충, 박정원, 신재기, 이희무, 2005, 인공호에서 몬순과 태풍 강우에 의한 고탁수층의 이동과 소멸특성, 한국육수학회, 38(1), 105-117
  3. 신명자, 이종은, 서을원, 2009, 탁수가 임하호에 서식하는 수종 어류에 미치는 영향, 생명과학회지, 19(8), 1112-1118 https://doi.org/10.5352/JLS.2009.19.8.1112
  4. 신재기, 허 진, 이흥수, 박재충, 황순진, 2006, 표층수를 방류하는 저수지(용담호)에서 몬순 탁수환경의 공간적 해석, 한국물환경학회지, 22(5), 933-942
  5. 이봉수, 2008, 임하댐 방류량-탁수배제량 상관관계 분석, 충남대학교대학원 석사학위논문
  6. 정용락, 김유경, 이흥수, 류환, 신상일, 정세웅, 2007, 선택취수에 따른 대청호 탁수 조절효과 및 수질영향 분석, 한국물환경학회.대한상하수도학회, 2007공동 춘계학술발표회논문집, 22-31
  7. 정세웅, 오정국, 박재호, 윤성완, 2005, CEQUAL-W2 모형의 수온 민감도분석 및 보정, 대한상하수도학회.한국물환경학회, 2005공동 추계학술발표회 논문집, 50-60
  8. 한국수자원공사, 2004, 밀도성층화된 저수지내 탁수배제시설 접근흐름에 관한 수치해석연구 (1차년도)
  9. Akan, A. O. and R. J. Houghtalen. 2003, Urban Hydrology, Hydraulics and Stormwater Quality : Engineering Applications and Computer Modeling, John Wiley & Sons
  10. Ambrose, R. b. Jr., Woo., T. A., and Martin, J. L., 1993, WASP5 A Hydrodynamic and Water Quality Model Theory, User's Manual and Programmer's Guide, U.S. Enviornment Protection Agency, Athens, GA
  11. An, K. G. and Jones, J. R., 2000, Factor Regulating Bluegreen Dominance in a reservoir Directly Influenced by the Asian Monsoon, Hydrobiologia, 432(1-3), 37-48 https://doi.org/10.1023/A:1004077220519
  12. Cole, T. M. and Wells, S. A., 2005, CE-QUALW2: A two dimensional, Laterally averaged, Hydridynamic and Water quality Model, Version 3.2 user's manual. Instructional report EL-95-1, U.S Army Crops of Engineer, Vicksburg, MS
  13. Hugo B. Fischer, E. John List, Robert C. Y. Koh, Jorg Imberger, and Norman H. Brooks, 1979, Mixing in Inland and Coastal Water, ACADEMIC PRESS, Inc