Optimization of Multi-Reservoir Operating Rules for a Water Supply System

被引:1
|
作者
Qiang Wang
Wei Ding
Yan Wang
机构
[1] Design and Research Corporation Limited,China Water Northeastern Investigation
[2] Dalian University of Technology,School of Hydraulic Engineering
[3] Baishi Reservoir Mangement Bureau of Liaoning Province,undefined
来源
关键词
Multi-reservoir system; Joint operating rules; Aggregation-disaggregation approach; Hedging rules; Demand partition approach;
D O I
暂无
中图分类号
学科分类号
摘要
To obtain the optimal releases of the multi-reservoir system, two sets of joint operating rules (JOR-I and JOR-II) are presented based on the aggregation-disaggregation approach and multi-reservoir approach respectively. In JOR-I, all reservoirs are aggregated to an equivalent reservoir, the operating rules of which, the release rule of the system is optimized following operating rule curves coupled with hedging rules. Then the system release is disaggregated into each reservoir according to water supply priorities and the dynamic demand partition approach. In JOR-II, a two-stage demand partition approach is applied to allocate the different demand priorities to determine the release from each reservoir. To assess the reliability and effectiveness of the joint operating rules, the proposed rules are applied to a multi-reservoir system in Liaoning province of China. Results demonstrate that JOR-I is suitable for high-dimensional multi-reservoir operation problems with large-scale inflow data, while JOR-II is suitable for low-dimensional multi-reservoir operation problems with small-scale inflow data, and JOR-II performs better than JOR-I but requires more computation time. The research provides guidelines for the management of multi-reservoir system.
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收藏
页码:4543 / 4559
页数:16
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