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首页> 外文期刊>Journal of hydraulic research >Effects of hydropeaking on the hydrodynamics of a stratified reservoir: the Rapel Reservoir case study
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Effects of hydropeaking on the hydrodynamics of a stratified reservoir: the Rapel Reservoir case study

机译:水峰对分层水库水动力的影响:Rapel水库案例研究

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The effects of hydropeaking of the Rapel Hydropower Plant on the hydrodynamics of the reservoir were investigated by combining field measurements and three-dimensional simulations performed with the Centre for Water Research, Estuary, Lake and Coastal Ocean Model. Two operational scenarios were analysed: the hydropeaking of the hydropower plant and a fictional scenario without hydropeaking. Two time periods were considered to allow different seasonal and operating conditions to be considered. The location of the thermocline was determined by the depth of the outlet and the withdrawal rate. Spectral analysis showed a strong correlation between the water withdrawals and the internal waves in the reservoir. Furthermore, vertical mixing with hydropeaking during the summer can be enhanced by one order of magnitude with respect to the case without hydropeaking. We conclude that hydropeaking has a major impact on the hydrodynamics of the reservoir, which indicates that diurnal variations in the outflows should be considered when studying these systems.
机译:通过结合现场测量和与水研究中心,河口,湖泊和沿海海洋模型进行的三维模拟,研究了Rapel水电站的水位峰值对水库水动力的影响。分析了两种运行方案:水力发电厂的水峰和没有水峰的虚构方案。考虑了两个时间段,以考虑不同的季节和操作条件。恒温槽的位置由出口的深度和抽气速率决定。频谱分析表明,水的抽出量与水库内的波浪之间有很强的相关性。此外,相对于没有加水高峰的情况,在夏季将加水高峰的垂直混合提高一个数量级。我们得出的结论是,水峰对储层的水动力有重大影响,这表明在研究这些系统时应考虑流出量的日变化。

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