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水力发电学报 ›› 2025, Vol. 44 ›› Issue (6): 62-71.doi: 10.11660/slfdxb.20250607

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三峡水库分期旱限水位研究

  

  • 出版日期:2025-06-25 发布日期:2025-06-25

Study on staged drought-limited water levels for Three Gorges Reservoir

  • Online:2025-06-25 Published:2025-06-25

摘要: 随着社会经济的发展和全球气候变暖,长江流域极端干旱事件频发,此时三峡水库保障长江中下游用水安全面临严峻挑战。旱限水位作为水库启动抗旱应急响应的重要依据,对提升长江流域抗旱减灾能力有重要意义。本文给出了三峡水库旱限水位的定义内涵与分期分级,基于参数模拟优化法构建旱限水位多目标优化模型,采用智能优化算法求解。结果表明:三峡水库汛期旱限水位的设置,较非汛期更为重要,分期6/10—7/31、8/1—9/9、9/10—30的一级旱限水位分别为154 m、156.9 m、164.8 m。增设旱限水位后,三峡水库在蓄水、发电、供水、航运效益方面均得到不同程度提升,多年平均、枯水典型发电量分别增长1.29%、6.54%。本研究为三峡水库制定旱限水位,开展抗旱补水调度提供了技术支撑。

关键词: 水库调度, 三峡水库, 旱限水位, 分期分级, 模拟优化

Abstract: With the development of society and economy under global warming, extreme drought events occur frequently in the Yangtze River Basin (YRB), and the Three Gorges reservoir is faced with a severe challenge in guaranteeing water security in the middle and lower reaches of the Yangtze. Drought-limited water level (DLWL) is a crucial parameter for reservoir drought relief operation to enhance this basin’s drought mitigation capability. This paper defines the reservoir’s staged grading DLWL, and construct a multi-objective optimization DLWL model based on a parameterization-simulation-optimization framework that is solved by an intelligent optimization algorithm. The results show that the reservoir’s DLWL is more significant in flood season than non-flood seasons, and DLWL at the first grade is 154 m, 156.9 m, and 164.8 m in the stages of 6/10-7/31, 8/1-9/9, and 9/10-30 respectively. By implementing DLWL operation, the reservoir can improve all the benefits-in terms of impoundment, power generation, water supply, and navigation-each to a different degree. The increases in power generation will be 1.29% and 6.54% for multi-year average and typical dry year, respectively. This study would be useful for reservoir DLWL operation and drought-relief operation.

Key words: reservoir operation, Three Gorges Reservoir, drought-limited water level, staged and grading, simulation-optimization

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