Modal Simulation and Verification on Stator End Winding of Large Nuclear Power Turbine Generator

Xike Yang, Jian Zhang
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引用次数: 0

Abstract

The 1300 MW nuclear power turbine generator is a four-pole generator with a rated speed of 1500 r/min. Due to its large capacity and low speed, the stator core and stator end winding bear huge electromagnetic torque. At the same time, because of the large heat generated by the stator winding during operation, the stator end winding is subjected to a large thermal expansion force. All these loads may have a serious impact on the stator end winding. In this paper, the three dimensional parametric finite element method and modal optimization algorithm are used to obtain the finite element model of each component of the stator end winding. Finally, the modal natural frequency of the overall end winding structure is obtained, so that the four-lobe modal natural frequency avoids the excitation frequency of 100 Hz, and the accuracy of the simulation mode is verified by modal test. The stator end winding modal simulation provides a reference for the stator end winding structure design of the large nuclear power turbine generator, ensures the good dynamic characteristics of the end winding structure, which provides a guarantee for the safe and stable operation of the stator end winding.
大型核动力汽轮发电机定子端部绕组模态仿真与验证
1300mw核动力汽轮发电机是一种额定转速为1500r /min的四极发电机。由于其容量大、转速低,定子铁心和定子端绕组承受巨大的电磁转矩。同时,由于定子绕组在运行过程中产生较大的热量,定子端绕组受到较大的热膨胀力。所有这些负载都可能对定子端绕组产生严重的影响。本文采用三维参数有限元法和模态优化算法,得到了定子端部绕组各部件的有限元模型。最后,获得了整体端部绕组结构的模态固有频率,使四瓣模态固有频率避免了100hz的激励频率,并通过模态试验验证了仿真模态的准确性。定子端绕组模态仿真为大型核动力汽轮发电机定子端绕组结构设计提供了参考,保证了定子端绕组结构良好的动态特性,为定子端绕组安全稳定运行提供了保障。
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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