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Annual Performance Estimation of a Multireservoir System Including a Pumped Storage Plant for the Mean Hydrological Year

机译:包括抽水蓄能电站在内的多水库系统平均水文年度的年度性能估算

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An existing Romanian hydro system (two reservoirs/peak hydropower plants), where the addition of a pumped storage plant with a weekly emptying/filling cycle was planned, was selected as a case study. For the main upstream reservoir/hydropower plant, an operational policy with a monthly time step was derived using a stochastic dynamic programming model. The optimal weekly scheduling problem of the whole system was solved by a genetic algorithm-based model. The monetary income maximization, by 2014 market energy prices for produced/consumed energy, was chosen as the objective function; any gain from ancillary services was ignored. An original methodology for coupling the monthly and weekly time-step results was used to obtain the annual performance estimation within the mean hydrological year conditions. At that level, the inclusion of the pumped storage plant would lead to a gain to nearly double the annual performance of the existing hydro system. (c) 2017 American Society of Civil Engineers.
机译:作为案例研究,选择了罗马尼亚现有的水力系统(两个水库/高峰水力发电厂),其中计划增加一个抽水蓄能电站,每周进行一次排空/填充周期。对于主要的上游水库/水力发电厂,使用随机动态规划模型得出了每月时间步长的运行策略。通过基于遗传算法的模型解决了整个系统的最佳每周调度问题。目标是选择到2014年将生产/消费能源的市场能源价格最大化的货币收入作为目标函数;辅助服务带来的任何收益都将被忽略。结合月度和每周时间步长结果的原始方法用于获得平均水文年份条件下的年度绩效估算。在这一水平上,抽水蓄能电站的建设将使现有水力系统的年性能几乎提高一倍。 (c)2017年美国土木工程师学会。

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