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水力发电学报 ›› 2024, Vol. 43 ›› Issue (11): 39-48.doi: 10.11660/slfdxb.20241104

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金下-三峡-葛洲坝梯级水库联合优化调度方案比较研究

  

  • 出版日期:2024-11-25 发布日期:2024-11-25

Comparative study of joint and optimal operation schemes for lower Jinsha-Three Gorges-Gezhouba cascade reservoirs

  • Online:2024-11-25 Published:2024-11-25

摘要: 依据水库调度图进行模拟调度,以检验设计值的合理性并作为方案比较的基准。分别建立金沙江下游和三峡-葛洲坝6座梯级水库联合调度和多目标优化调度模型,采用基于Gaussian径向基函数的“参数化-模拟-优化”框架和Borg算法求解优化模型的Pareto前沿。对比研究结果表明:6库设计年发电量合理可靠,联合调度需考虑回水顶托影响;联合(优化)调度方案与单库调度方案对比,6库年均弃水量分别降低20.38%(30.44%),增发电量4.01%(5.45%),其中溪洛渡、向家坝和葛洲坝水库增发电量最大;发电量与蓄满率互相制约,三峡水库9月10日起蓄面临着枯水年难以蓄满的问题,建议进一步优化三峡水库汛期运行水位并考虑提前蓄水。

关键词: 梯级水库, 调度图, 联合调度, 多目标优化, 径向基函数, 金沙江下游, 三峡水库

Abstract: The design rule curves are used to simulate reservoir operation to verify the design values and obtain a benchmark for comparative study. Joint and multi-objective optimal operation models are developed for the lower Jinsha-Three Gorges-Gezhouba cascade reservoirs. We solve the optimal model and its Pareto frontier using a parameterization-simulation-optimization framework based on the Gaussian radial basis functions and a Borg many-objective evolutionary algorithm. Comparative study reveals that the design values of annual hydropower generation are reasonable and reliable, and the joint operation of cascade reservoirs must consider the backwater effect of downstream reservoirs. Compared to the rule curve scheme, the joint (optimal) operation scheme reduces water spillage by 20.38% (30.44%) and increases annual hydropower generation by 4.01% (5.45%), with significant increases in the generation by the reservoirs of Xiluodu, Xiangjiaba, and Gezhouba. Generally, a conflict between hydropower generation and impoundment efficiency occurs, and the Three Gorges Reservoir will be faced with a challenge in dry years if it starts impoundment on the tenth of September. We suggest that the Three Gorges Reservoir should optimize further its flood-limited water level and consider an earlier start of impoundment.

Key words: cascade reservoirs, rule curves, joint operation, multi-objective optimization, radial basis function, lower Jinsha River, Three Gorges Reservoir

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