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Electromagnetic and mechanical finite element analysis of end region of large-sized three-phase squirrel-cage induction machines

机译:大型三相鼠笼式感应电机端部区域的电磁和机械有限元分析

摘要

This piece of research is related to the design of large-sized radial flux electric machines. It aims at studying the end-region magnetic field under the steady-state operation in order for an analysis of some important electromagnetic and mechanical phenomena that require careful thought during the design of the end region. The research work is focused on the end region of two large-sized three-phase squirrel-cage induction machines. In addition to the end-region magnetic field, the stator end-winding leakage inductance, the eddy currents inside the end shield and the end frame, and the end-winding forces and vibrations are covered. The 3-D time-harmonic finite element analysis of the above aspects, carried out with a commercial software package, forms the main part of the research work. The corresponding measurement, as a complement to the finite element analysis, is mainly for validating the models and the numerical calculations. A 3-D time-harmonic finite element analysis of the end-region magnetic field with suitable boundary conditions can give an accurate distribution of the magnetic field. The stator end-winding leakage only affects the core ends; hence, the end-winding leakage inductance can be calculated from the corresponding magnetic energy separated from the total magnetic energy. The eddy currents inside the end shield and the end frame do not affect the end-region magnetic field seriously, and it is feasible to consider them as surface currents and to model them with the standard impedance boundary condition. The end-winding forces cause vibrations and deformation, but the amplitude of vibration and the degree of deformation are small because of the end-winding bracing system. With the bracing system, the natural frequency of the most excitable mode of the end winding and its bracing system is also greatly raised, so resonances may be avoided. Under the steady-state operation of large-sized induction machines, the end-region magnetic field does not bring about severely disadvantageous electromagnetic and mechanical phenomena in the end region. However, from the viewpoint of optimisation, the end frame can be shifted farther from the end winding for eliminating potential hot spots. In addition, fewer bracing parts can be fixed to the knuckle portion and the lower part of the involute portion of the end connections for improving the cooling of the end region.
机译:这项研究与大型径向磁通电机的设计有关。它旨在研究稳态操作下的端部区域磁场,以便分析一些在端部区域设计期间需要仔细考虑的重要电磁现象和机械现象。研究工作集中在两台大型三相鼠笼式感应电机的末端区域。除了端部区域磁场外,还覆盖了定子端部绕组的漏感,端部屏蔽罩和端部框架内部的涡流以及端部绕组的力和振动。利用商业软件包对上述方面的3-D时谐有限元分析构成了研究工作的主要部分。作为对有限元分析的补充,相应的测量主要用于验证模型和数值计算。在适当的边界条件下对端部区域磁场进行3-D时谐有限元分析,可以准确地分配磁场。定子端绕组泄漏仅影响铁芯端。因此,可以根据从总磁能中分离出的相应磁能计算出端部绕组漏感。端部屏蔽层和端部框架内部的涡流不会严重影响端部区域的磁场,将它们视为表面电流并在标准阻抗边界条件下进行建模是可行的。末端绕组力会引起振动和变形,但是由于末端绕组支撑系统,振动幅度和变形程度较小。借助支撑系统,端部绕组及其支撑系统的最易激发模式的固有频率也大大提高,因此可以避免共振。在大型感应电机的稳态运行下,端部区域的磁场不会在端部区域产生严重不利的电磁和机械现象。但是,从优化的角度来看,可以将端部框架从端部绕组移开,以消除潜在的热点。另外,更少的支撑部件可以固定到端部连接件的关节部分和渐开线部分的下部,以改善端部区域的冷却。

著录项

  • 作者

    Lin Ranran;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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