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A control system for low-head diversion run-of-river small hydro plants with pressure conduits considering the tailwater level variation

机译:考虑尾水水位变化的带压力导管的低水头分流河道小型水电站控制系统

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摘要

This paper presents a control system for low-head diversion run-of-river small hydro plants with pressure conduits. Since these hydropower plants usually have low or null water storage capacity, the water discharged through the turbines should be adapted to the possible extent to the natural river inflow. For this purpose, a control scheme aimed at maintaining a constant water level in the head pond is normally used in these cases. As an alternative, the option of maintaining a constant water level in the surge tank is studied in this paper. Furthermore, since in low-head hydro plants the tailwater level variation may represent a relatively important contribution to total head losses, it has been explicitly considered in the proposed control system. A small-perturbation stability analysis has been carried out in order to analyze the influence of the plant design and controller parameters in the plant dynamic response. Finally, in order to illustrate the applicability of the proposed control system, several simulations have been carried out using data gathered from a real hydro plant
机译:本文提出了一种带有压力导管的低水头分流河道小型水力发电厂的控制系统。由于这些水力发电厂通常储水能力低或为零,因此通过涡轮机排放的水应尽可能适应自然河流的流入。为此目的,通常在这些情况下使用旨在维持头池恒定水位的控制方案。作为替代方案,本文研究了在调压罐中保持恒定水位的选择。此外,由于在低水头水电厂中,尾水水位变化可能代表总水头损失的相对重要的贡献,因此已在建议的控制系统中明确考虑了这一点。为了分析工厂设计和控制器参数对工厂动态响应的影响,进行了小扰动稳定性分析。最后,为了说明所提出的控制系统的适用性,已使用从实际水力发电厂收集的数据进行了一些模拟

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