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Development of Storage Management Method for Effective Operation of Small Dams

소규모 댐의 효과적 운영을 위한 저수관리 기법 개발

  • 김필식 (건국대학교 생명환경과학대학) ;
  • 김선주 (건국대학교 생명환경과학대학)
  • Published : 2006.03.01

Abstract

Large dams are managed with operation standard and flood forecasting systems, while small dams do not have management method generally. Shortage of water resources and natural disasters due to drought and flood raised public concerns for management of small dams. Most of small dams are irrigation dams, which need diversified water uses. However, the lack of systematic management of small dams have caused serious water wastage and increased natural disasters. Storage management method and system were developed to solve these problems in small dams. The system was applied to Seongju dam for effective management. The storage management method was established considering hydrology simulation and statistical analysis using the system. This method can bring additional available water, even in the same conditions of the water demand and the supply conditions of watershed. It can improve the flood control capacity and water utilization efficiency by' the flexible operation of storage space.

Keywords

References

  1. Comiskey, J. J., 1986. Generic Consideration in Reallocation of Water Storage at Corps of Engineers Reservoirs. U.S. Army Corps of Engrs, (in English)
  2. FAO, 1998. Crop Evapotranspiration. FAO Irrigation and Drainage Paper 56. (in English)
  3. Feldman, A. D., 1992. Systems Analysis Applications at the Hydrologic Engineering Center, J. Water Resour. Ping. Mgmt., ASCE, Vol. 118 (3): pp. 249-261. (in English) https://doi.org/10.1061/(ASCE)0733-9496(1992)118:3(249)
  4. Johnson, W. K., R. A. Wurbs and J. E. Beegle, 1990. Opportunities for Reservoir-storage Reallocation, J Water Resour. Ping. Mgmt., ASCE, Vol. 116 (4): pp. 550-566. (in English) https://doi.org/10.1061/(ASCE)0733-9496(1990)116:4(550)
  5. KARICO, 2002. Analysis and Improvement Method of Reservoir Flood Control Capacity for Heavy Rain. (in Korean)
  6. KOWACO, 1994. The Flood Inflow of the Multi-purpose Dam and Program Manual for Reservoir Operation in the Storm Period. (in Korean)
  7. Kim, Sun Joo, Yong Geun Jee and Phil Shik Kim, 2004. Parameter Optimization of Long and Short Term Runoff Models Using Genetic Algorithm, Journal of the Journal of the Korean Society of Agricultural Engineers, Vol. 46 (5): pp. 41-52. (in Korean) https://doi.org/10.5389/KSAE.2004.46.5.041
  8. Kim, Phil Shik, 2005. Establishment of Operation Standard and Development of Effective Storage Management Model of Small Dams, Ph.D. Dissertation : Konkuk University. (in English)
  9. Kim, Phil Shik and Sun Joo Kim, 2005. Development of Storage Management System for Small Dams, Journal of the Korean Society of Agricultural Engineers, Vol. 47 (3): pp. 15-25. (in Korean) https://doi.org/10.5389/KSAE.2005.47.3.015
  10. KICT, 1996. Actual Condition and Improvement of Dam Operation in Dry and Flood Period. (in Korean)
  11. Lee, Jae Hyung, Kil Seong Lee and Dong Kug Jeong, 1992. An Optimal Operation of Multi-Reservoirs for Flood Control by Incremental DP, Magazine of Korea Water Resources Association, Vol. 25 (2), pp. 47-59. (in Korean)
  12. Milutin, D. and J. J. Bogardi, 1996. Application of Genetic Algorithms to Derive the Release Distribution within a Complex Reservoir System, Department Water Resources, pp. 109-116. (in English)
  13. Shim, Myung Pil, Jae Hyoung Lee and Oh Ig Kwon, 1996. Preliminary Release Scheme by Flood Forecasting, Magazine of Korea Water Resources Association, Vol. 29 (1), pp. 235-247. (in Korean)
  14. U.S. Army Crops of Engineers, Fort Worth District, 1982. Waco Lake Storage Reallocation Study, Recomm. Rep. (in English)
  15. Wurbs, R. A. and L. M. Cabezas, 1987. Analysis of Reservoir Storage Reallocations, J. Hydrology, Vol. 92 (1), pp. 77-95. (in English) https://doi.org/10.1016/0022-1694(87)90090-4