Volume 7 Issue 1
Jan.  2014
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Zhen-kun MA, Zi-wu FAN, Ming ZHANG, Yi-lu SU. 2014: Flood risk control of dams and dykes in middle reach of Huaihe River. Water Science and Engineering, 7(1): 17-31. doi: 10.3882/j.issn.1674-2370.2014.01.003
Citation: Zhen-kun MA, Zi-wu FAN, Ming ZHANG, Yi-lu SU. 2014: Flood risk control of dams and dykes in middle reach of Huaihe River. Water Science and Engineering, 7(1): 17-31. doi: 10.3882/j.issn.1674-2370.2014.01.003

Flood risk control of dams and dykes in middle reach of Huaihe River

doi: 10.3882/j.issn.1674-2370.2014.01.003
Funds:  This work was supported by the National Natural Science Foundation of China (Grant No. 51139001).
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  • Corresponding author: Zi-wu FAN
  • Received Date: 2013-05-02
  • Rev Recd Date: 2013-08-11
  •  Three stochastic mathematical models for calculation of the reservoir flood regulation process, river course flood release, and flood risk rate under flood control were established based on the theory of stochastic differential equations and features of flood control systems in the middle reach of the Huaihe River from Xixian to the Bengbu floodgate, comprehensively considering uncertain factors of hydrology, hydraulics, and engineering control. They were used to calculate the flood risk rate with flood regulation of five key reservoirs, including the Meishan, Xianghongdian, Nianyushan, Mozitan, and Foziling reservoirs in the middle reach of the Huaihe River under different flood frequencies, the flood risk rate with river course flood release under design and check floods for the trunk of the Huaihe River in conjunction with relevant flood storage areas, and the flood risk rate with operation of the Linhuaigang Project under design and check floods. The calculated results show that (1) the five reservoirs can withstand design floods, but the Xianghongdian and Foziling reservoirs will suffer overtopping accidents under check floods;     (2) considering the service of flood storage areas under the design flood conditions of the Huaihe River, the mean flood risk rate with flood regulation of dykes and dams from Xixian to the Bengbu floodgate is about 0.2, and the trunk of the Huaihe River can generally withstand design floods; and (3) under a check flood with the flood return period of 1 000 years, the risk rate of overtopping accidents of the Linhuaigang Project is not larger than 0.15, indicating that it has a high flood regulation capacity. Through regulation and application of the flood control system of the Linhuigang Project, the Huaihe River Basin can withstand large floods, and the safety of the protected area can be ensured.   

     

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  • Chauhan, S. S., and Bowles, D. S. 2004. Dam safety risk assessment with uncertainty analysis. ANCOLD Bulletin, 127, 73-88
    Chu, X. Y. 1992. Study on hydraulic uncertainty model. Journal of Hydraulic Engineering, 37(5), 33-38.   (in Chinese)
    Gebregiorgis, A. S., and Hossain, F. 2012. Hydrological risk assessment of old dams: A case study on Wilson Dam of Tennessee River Basin. Journal of Hydrologic Engineering, 17(1), 201-212. [doi:10.1061/(ASCE) HE.1943-5584.0000410]
    Harris, J., and Brunner, G. 2011. Approximating the probability of the probable maximum flood. World Environmental and Water Resources Congress 2011. 3695-3702. ASCE. [doi: 10.1061/41173(414)387].
    He’nan Water Conservancy Reconnaissance and Design Institute (HWCRDI). 2003. Verification of Safety Standard for Flood Control in Nianyushan Reservoir. Zhengzhou: He’nan Water Conservancy Reconnaissance and Design Institute. (in Chinese)
    Huaihe Water Conservancy Committee (HWCC). 2007. Manual of Water Conditions for Flood Control in Huaihe River Basin. Zhengzhou: Huaihe Water Conservancy Committee. (in Chinese)
    Humberto, M. M. 1996. Flood safety analysis. International Water Power and Dam Construction, 48(5), 21-24.
    Jiang, S. H. 1994. Application of stochastic differential equations in risk analysis for flood relief. Journal of Hydraulic Engineering, 39(3), 1-9. (in Chinese)
    Jiang, S. H. 1995. Risk analysis of flood flow in river by using stochastic differential equation. Scientific Research of Water Conversancy and Water Transportation, (2), 127-136. (in Chinese)
    Jiang, S. H., Fan, Z. W, and Wu, S. Q. 2005. Flood Disaster Risk Evaluating and Flood Control Safety Decision Making. Beijing: China Waterpower Press. (in Chinese)
    Klein, B., Pahlow, M., Hundecha, Y., and Schumann, A. 2010. Probability analysis of hydrological loads for the design of flood control systems using copulas. Journal of Hydrologic Engineering,15(5), 360-369. [doi: 10.1061/(ASCE)HE.1943-5584.0000204]
    Kuo, J. T., Yen, B. C., Hsu, Y. C., and Lin, H. F. 2007. Risk analysis for dam overtopping: Feitsui Reservoir as a case study. Journal of Hydraulic Engineering, 133(8), 955-963. [doi:10.1061/(ASCE)0733-9429(2007) 133:8(955)].
    Kwon, H. H., and Moon, Y. I. 2006. Improvement of overtopping risk evaluations using probabilistic concept for existing dams. Stochastic Environmental Research and Risk Assessment, 20(4), 223-237. [doi:10.1007/ s00477-005-0017-2].
    Liu, Y. L. 2008. Uncertainty Analysis of Rainfall-runoff Models and Risk Assessment of Reservoir Flood Control. Ph. D. Dissertation. Dalian: Dalian University of Technology. (in Chinese)
    Qian, M. 2008. Huaihe River flood control and regulation in 2007. Water Resources and Hydropower Engineering, 39(1), 12-15. (in Chinese)
    Qian, M. 2009. Synchronous development of Huaihe River control and New People’s Republic of China. Huaihe River Control, 10, 4-6. (in Chinese)
    Qian, M. K. 2003. Huaihe River flood control emergency system. Office Automation, (12): 37-38. (in Chinese)
    Qian, M. K., Xu, S. J., Wang, S. X., and Wang, J. T. 2004. Study on the probability flood forecasting model at Xixian Gauging Station of Huaihe River Basin. Hydrology, 24 (2), 23-26. (in Chinese) [doi:10.3969/ j.jssn.1000-0852.2004.02.006]
    Salas, J. D., Burlando P., Heo, J. H., and Lee, D. J. 2003. The axis of risk and uncertainty in hydrologic design. Proceedings of Hydrology Days 2003,153-164.
    Tung, Y. K., and Mays, L. W. 1980. Risk analysis for hydraulic design. Journal of the Hydraulics Division, 106(5), 893-913.
    Xie, G. Q. 2006. Flood Risk Analysis of the Reservoir in the Arid Area. M. E. Dissertation. Shihezi: Shihezi University. (in Chinese)
    Yen, B. C. 1970. Risk in hydrologic design of engineering project. Journal of the Hydraulics Division, 96(4), 959-966.
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