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Optimal flood control operation for the Three Gorges and Qingjiang cascade reservoirs

机译:三峡和清江梯级水库的防洪优化调度。

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摘要

Both separate and joint flood control operation models for the Three Gorges and Qingjiang cascade reservoirs are proposed. The models were solved by the modified progressive optimality algorithm according to the procedure of optimization-verification-adjustment and its constraint conditions were treated by dynamic penalty function. Four typical years of 1954, 1981, 1982 and 1998 were selected to derive the design flood hydrographs for the corresponding return periods by the peak and volume amplitude method. The conventional, separate and joint cascade operation flood control models were performed for these reservoirs. The results show that the separate cascade operation gives full play to the role of flood control storage compensation between cascade reservoirs, while joint cascades operation can also perform storage compensation between two cascades. The Jingjiang River flood control standards can be raised to 118-year and 136-year design floods based on 1982 typical year, and 150-year and 168-year design floods based on the average of four typical years, respectively.
机译:提出了三峡和清江梯级水库的分洪联合调度模型。根据优化-检验-调整的程序,用改进的渐进最优算法对模型进行求解,并用动态罚函数处理约束条件。选择了四个典型的年份,分别是1954年,1981年,1982年和1998年,以峰值和体积振幅方法得出相应回水期的设计洪水水位图。对这些水库进行了常规的,分开的和联合的梯级操作洪水控制模型。结果表明,单独的梯级作业充分发挥了梯级水库之间的防洪存储补偿作用,联合梯级作业也可以实现两个梯级之间的防洪补偿。靖江防洪标准可以根据1982年的典型年分别提高到118年和136年的设计洪水,以及基于四个典型年的平均值分别提高到150年和168年的设计洪水。

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