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Analysis of S Characteristics and Pressure Pulsations in a Pump-Turbine With Misaligned Guide Vanes

机译:导向叶片未对准的水泵水轮机的S特性和压力脉动分析

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Growing environmental concerns and the need for better power balancing and frequency control have increased attention in renewable energy sources such as the reversible pump-turbine which can provide both power generation and energy storage. Pump-turbine operation along the S-shaped curve can lead to difficulties in loading the rejection process with unusual increases in water pressure, which lead to machine vibrations. Pressure fluctuations are the primary reason for unstable operation of pump-turbines. Misaligned guide vanes (MGVs) are widely used to control the stability in the S region. There have been experimental investigations and computational fluid dynamics (CFD) simulations of scale models with aligned guide vanes and MGVs with spectral analyses of the S curve characteristics and the pressure pulsations in the frequency and time-frequency domains at runaway conditions. The course of the S characteristic is related to the centrifugal force and the large incident angle at low flow conditions with large vortices forming between the guide vanes and the blade inlets and strong flow recirculation inside the vaneless space as the main factors that lead to the S-shaped characteristics. Preopening some of the guide vanes enables the pump-turbine to avoid the influence of the S characteristic. However, the increase of the flow during runaway destroys the flow symmetry in the runner leading to all asymmetry forces on the runner that leads to hydraulic system oscillations. The MGV technique also increases the pressure fluctuations in the draft tube and has a negative impact on stable operation of the unit.
机译:日益增长的环境关注以及对更好的功率平衡和频率控制的需求已在可再生能源(例如可提供发电和能量存储的可逆式水泵水轮机)中得到越来越多的关注。沿S形曲线的水泵水轮机运行可能导致装载排斥过程的困难,水压异常升高,从而导致机器振动。压力波动是造成水轮机运行不稳定的主要原因。偏心导向叶片(MGV)被广泛用于控制S区的稳定性。已经对具有对准的导向叶片和MGV的比例模型进行了实验研究和计算流体动力学(CFD)模拟,并在失控条件下对S曲线特征和频域和时频域中的压力脉动进行了频谱分析。 S特性的变化过程与离心力和低流量条件下的大入射角有关,导向叶片和叶片入口之间形成大涡旋,无叶腔内部的强力循环是导致S的主要因素。形特征。预打开一些导向叶片可使水泵水轮机避免受到S特性的影响。但是,失控期间流量的增加破坏了流道中的流对称性,导致流道上的所有不对称力均导致液压系统振荡。 MGV技术还会增加引流管中的压力波动,并对装置的稳定运行产生负面影响。

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