An Approach to Reservoir Regulation for Reducing the Risk of Exceeding the Flood Storage Capacity during Flash Floods

被引:0
作者
Il’inich V.V. [1 ]
Kuznetsova E.V. [2 ]
Perminov A.V. [1 ]
机构
[1] Russian State Agrarian University — K. A. Timiryazev Moscow Agricultural Academy, Moscow
[2] Hydrometcenter of Russia, Moscow
关键词
catastrophic flood; flood-control storage; reservoir; reservoir regulation;
D O I
10.1007/s10749-023-01598-6
中图分类号
学科分类号
摘要
The problem of reservoir regulation during catastrophic rain floods is addressed. The main hypothesis is that the possibility of decreasing the water storage before the onset of a flood based on previous precipitation data depends on the regulation rules for the Krasnodar Reservoir. According to the main results, before the beginning of a catastrophic flood, the water storage can be decreased so as not to create water-supply deficit for the water consumers because it is possible to replenish the storage by the end of the flood. The use of the conventional reservoir regulation rules shows that the Krasnodar Reservoir has lost the required reliability, necessitating improvement of the rules. The modeling of the reservoir characteristics shows that preliminary storage reduction before the flood peak based on precipitation data from the chosen meteorological predictor stations can significantly reduce the degree of utilization of the flood-control storage and the risks of an emergency for the dam and surroundings. © 2023, Springer Science+Business Media, LLC, part of Springer Nature.
引用
收藏
页码:845 / 850
页数:5
相关论文
共 15 条
[1]  
Lurie P.M., Panov V.D., Tkachenko Y.Y., Kuban River: Hydrography and Runoff Regime, (2005)
[2]  
Khristoforov A.V., Yumina N.M., Stochastic model of fluctuations of the flood runoff of the rivers of the North Caucasus, No. 4, pp. 359-377, (2005)
[3]  
Ilinich V., Flow control by water reservoir in conditions of torrential floods,”, In: Proc. 11Th Int. Conf. on Hydroinformatics, pp. 1-7, (2014)
[4]  
Ilinich V., Svetlov E.A., Stochastic modeling of the functioning of an irrigation reservoir, No. 6,, pp. 25-27, (2010)
[5]  
Veliev I.G., Ilinich V., Cavalli A.B., Regulation of runoff by an irrigation reservoir taking into account storm precipitation data from the meteorological stations of the river basin,”, No. 3, pp. 33-36, (2020)
[6]  
Cavalli A.B., Ilinich V., Veliev I.G., Timonina A.S., Clarification of rules for runoff regulation by water reservoir, Proc. 5Th IAHR Europe Congr. on New Challenges in Hydraulic Research and Engineering, pp. 513-514, (2018)
[7]  
Borshch S.V., Simonov Y.A., Online system for short-term hydrological prediction of Kuban river flow rates”, Tr, Gidromettsentra Rossii, No., 349, pp. 63-68, (2013)
[8]  
Krasnodar Reservoir Regulation Rules [In Russian], Kuban’-vodproekt, (2012)
[9]  
Borshch S.V., Simonov Y.A., Khristoforov A.V., System of flood prediction and early warning of floods on the rivers of the Black Sea Coast of the Caucasus and the Kuban Basin”, Tr, Gidromettsentra Rossii, No., 356, pp. 247-260, (2015)
[10]  
Romanov A.V., Development of the flood prediction system in the Russian Federation. Part 1. Background and catalysts for changes, Tr. Gidromettsentra Rossii, 365, pp. 182-195, (2017)