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Electromagnetic Force and Mechanical Response of Turbo-Generator End Winding under Electromechanical Faults

机译:机电故障下汽轮发电机端绕组的电磁力与机械响应

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摘要

This paper comparatively studies the electromagnetic force and mechanical response of the end winding before and after 3 kinds of typical electromechanical faults in turbo-generator. The analytical expression of electromagnetic force of end winding is derived under the composite fault of static eccentricity and rotor interturn short circuit. Meanwhile, the three-dimensional transient finite element simulation is carried on, and the frequency composition and amplitude variation characteristics of the radial, axial, and tangential electromagnetic force are analyzed for the end windings under static eccentricity, rotor interturn short circuit, and composite fault. Therefore, it provides a reference for the vibration wear detection and electromagnetic force control of the end winding. Moreover, the maximum stress and deformation of different positions on the end involute are obtained. And the three-directional vibration acceleration characteristics of the end winding are further analyzed. Finally, the distribution law of winding fatigue failure and vibration wear is acquired, which lays a foundation for the reverse suppression of end winding fatigue failure and insulation wear.
机译:本文比较研究了汽轮发电机3种典型机电故障前后端部绕组的电磁力和机械响应。推导了静偏心和转子匝间短路复合故障下端部绕组电磁力的解析表达式。同时,进行了三维瞬态有限元仿真,分析了端部绕组在静态偏心、转子匝间短路和复合故障下的径向、轴向和切向电磁力的频率组成和幅值变化特征。因此,为端部绕组的振动磨损检测和电磁力控制提供了参考。此外,还得到了端部渐开线上不同位置的最大应力和变形。并进一步分析了端部绕组的三向振动加速度特性。最后,求解了绕组疲劳失效和振动磨损的分布规律,为端部绕组疲劳失效和绝缘磨损的反向抑制奠定了基础。

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