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Finite Element Analysis Design of a Split Rotor Bracket for a Bulb Turbine Generator

机译:灯泡水轮发电机分体式转子支架的有限元分析设计

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The rotor bracket is a key component of the generator rotor with cracks in the rotor bracket leading to rubbing between the rotor and stator, which threatens safe operation of the unit. The rotor rim is so complicated that the equivalent radial stiffness of rim was determined by numerical simulation other than engineering experience. A comprehensive numerical method including finite element analyses and the contact method for multibody dynamics has been used to design the split rotor bracket. The computational results showed that cracks would occur in the initial design of the bracket when the turbine operated at the runaway speed, and the bracket design should be improved. The improved design of the bracket was strong enough to avoid cracks and rub between the rotor and stator. This design experience will help improve the design of split rotor brackets for bulb turbine generators.
机译:转子支架是发电机转子的关键部件,转子支架中的裂纹会导致转子与定子之间的摩擦,从而威胁到机组的安全运行。转子轮辋非常复杂,轮辋的等效径向刚度是通过除工程经验以外的数值模拟确定的。包括有限元分析和多体动力学接触方法在内的综合数值方法已用于设计剖分式转子支架。计算结果表明,当汽轮机以失控速度运行时,在支架的初始设计中会出现裂纹,应改进支架的设计。支架的改进设计坚固到足以避免在转子和定子之间产生裂纹和摩擦。这种设计经验将有助于改进用于灯泡涡轮发电机的分体式转子支架的设计。

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