Part load resonance risk assessment of francis hydropower units

J. G. P. Junior, A. Favrel, C. Nicolet, F. Avellan
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引用次数: 1

Abstract

While operating at part load, Francis turbines feature a precessing cavitation vortex rope in its draft tube. The precession of this vortex in the elbow of the draft tube acts as a pres-sure pulsation source which frequency can match the first hydroacoustic eigenfrequency of the hydraulic system in some cases. Resonance phenomenon can be predicted by using reduced scale physical model tests and numerical simulations, but it remains challenging. This paper proposes a procedure to estimate the risk of part load resonance at the early stage of a hydropower project. The proposed procedure uses the hydroacoustic properties of a given reduced scale physical model and applies them to a large number of turbine de-signs and power plant configurations to assess the risk of resonance for each one of them. Results show that resonance are likely to occur in hydropower plants in a certain range of turbine rated head and rated discharge values. These results can then indicate if more detailed investigations in some specific hydropower projects are necessary.
混流式水电机组部分负荷共振风险评估
在部分负荷运行时,法兰式水轮机的特点是在其导流管中有一个空化涡绳。在某些情况下,尾水管弯头涡的进动作为压力脉动源,其频率可以匹配液压系统的第一水声特征频率。共振现象可以通过缩小比例的物理模型试验和数值模拟来预测,但仍然具有挑战性。本文提出了水电工程前期部分负荷共振风险的估算方法。所提出的程序使用给定的缩小比例物理模型的水声特性,并将其应用于大量的涡轮机设计和发电厂配置,以评估它们中的每一个的共振风险。结果表明,在水轮机额定水头和额定流量一定范围内,水轮机可能发生共振。这些结果可以指示是否需要对某些具体的水电项目进行更详细的调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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