首页> 外文会议>ASME Power Conference pt.B; 20050405-07; Chicago,IL(US) >DYNAMIC BEHAVIOUR IN A HYDRO POWER ROTOR SYSTEM DUE TO THE INFLUENCE OF GENERATOR SHAPE AND FLUID DYNAMICS
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DYNAMIC BEHAVIOUR IN A HYDRO POWER ROTOR SYSTEM DUE TO THE INFLUENCE OF GENERATOR SHAPE AND FLUID DYNAMICS

机译:发电机形状和流体动力学的影响在水力发电转子系统中的动力特性

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Hydro power rotors are subjected to fluid and electromagnetic forces. In this paper measurements and simulations are shown for a hydro power rotor system. The simulation includes the influence of fluid forces in the turbine as well as the electro magnetic pull in the generator. The mechanical rotor system is modelled with the generator and the turbine treated as two rigid bodies, connected to an elastic shaft supported by three bearings. The fluid model in the turbine is based on results from the scientific literature. A model is suggested for the electro magnetic pull due to eccentricity and the shape of the stator core and the rotor rim. Results from the simulation are compared and analyzed with frequency spectrum from vibrations measurements. One can conclude that the unbalance together with geometric properties of the turbine and generator, are possible sources of the most dominant frequency peaks in the measurements.
机译:水力发电转子承受流体和电磁力。在本文中,显示了水力发电转子系统的测量和模拟。模拟包括涡轮机中流体力的影响以及发电机中的电磁拉力。机械转子系统的模型是将发电机和涡轮视为两个刚体,连接到由三个轴承支撑的弹性轴上。涡轮机中的流体模型基于科学文献的结果。由于偏心以及定子铁心和转子轮缘的形状,建议了一个电磁拉力模型。将模拟结果与振动测量的频谱进行比较和分析。可以得出这样的结论,即不平衡以及涡轮机和发电机的几何特性,可能是测量中最主要的频率峰值的来源。

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