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Stability Analysis of a Run-of-River Diversion Hydropower Plant with Surge Tank and Spillway in the Head Pond

机译:头池有调压池和溢洪道的引水导流水电站的稳定性分析

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摘要

Run-of-river hydropower plants usually lack significant storage capacity; therefore, the more adequate control strategy would consist of keeping a constant water level at the intake pond in order to harness the maximum amount of energy from the river flow or to reduce the surface flooded in the head pond. In this paper, a standard PI control system of a run-of-river diversion hydropower plant with surge tank and a spillway in the head pond that evacuates part of the river flow plant is studied. A stability analysis based on the Routh-Hurwitz criterion is carried out and a practical criterion for tuning the gains of the PI controller is proposed. Conclusions about the head pond and surge tank areas are drawn from the stability analysis. Finally, this criterion is applied to a real hydropower plant in design state; the importance of considering the spillway dimensions and turbine characteristic curves for adequate tuning of the controller gains is highlighted.
机译:泛滥型水力发电厂通常缺乏足够的存储能力;因此,更适当的控制策略是在进水池保持恒定的水位,以便最大程度地利用河流水流的能量或减少头池淹没的水面。本文研究了一种标准型的PI控制系统,该系统是一个带有调压池和在头池中的溢洪道的泄洪流的水力发电厂,该溢洪道排泄了部分流水厂。进行了基于Routh-Hurwitz准则的稳定性分析,并提出了调节PI控制器增益的实用准则。从稳定性分析得出有关头池和调压池面积的结论。最后,该标准适用于处于设计状态的真实水力发电厂。强调了考虑溢洪道尺寸和涡轮机特性曲线以适当调节控制器增益的重要性。

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