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Multi-Timescale Joint Optimal Dispatch Model Considering Environmental Flow Requirements for a Dewatered River Channel: Case Study of Jinping Cascade Hydropower Stations

机译:考虑到脱水河流渠道环境流量要求的多时间尺度联合优化调度模型:锦平级联水电站案例研究

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摘要

In this study, the authors developed a multi-timescale optimal dispatch model to balance both the environmental flow requirement of the downstream dewatered river channel and the power output of the cascade hydropower stations. The operation characteristics of turbine units, reservoir regulation capacity, inseparable hydraulic connections, and the mass balance equation of the cascade reservoirs and water head loss characteristics of the tunnels have been considered to constrain the model. The daily average flow solution set of the monthly timescale model was converted to a daily flow process solution set of the daily timescale model to decouple the two-hierarchy model. The application of the model with two hierarchies shows that the model can reduce the dimension of the decision variables and derive optimal decisions more quickly to simultaneously meet the two objectives. Considering the environmental flow demand of the dewatered river channel, this study puts forward an operation strategy for Jinping cascade hydropower stations. The research results can provide decision support for other cascade reservoirs that have a dewatered river channel.
机译:在这项研究中,作者开发了一种多时间尺度最佳调度模型,可以平衡下游脱水河道的环境流量要求和级联水电站的电力输出。的涡轮单元,水库调节能力,不可分离的液压连接,和级联水库和隧道的水头损失特性的质量平衡方程的动作特性已被认为约束模型。每月时间尺度模型的日平均流量解决方案集被转换为日常时间尺度模型的日常流程解决方案集,以解除双层结构模型。使用两个层次结构的模型的应用表明,该模型可以更快地降低决策变量的维度,并更快地推导出最佳决策,同时满足两个目标。考虑到脱水河流渠道的环境流量,本研究提出了锦平级联水电站的运作策略。研究结果可以为具有脱水河流渠道的其他级联水库提供决策支持。

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