Impact of rotor winding and stator stepped end core on magnetic force distribution on stator end-winding of turbogenerators

A. Ghaempanah, J. Faiz
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引用次数: 5

Abstract

Impact of the rotor end-winding on the force distribution of the stator end-winding using equivalent current sheets or a concentrated coil in each rotor slot has been so far considered in the literatures. However, the impact of the stator stepped end core on the force has not been studied yet. In this paper calculation methods for magnetic force exerted on the stator end-winding are first reviewed comprehensively; then the impact of some parameters on the magnetic force distribution on the stator end-winding of a 2-pole, 200 MVA turbo-generator under sudden three-phase short-circuit are studied. Three-dimensional finite element method (FEM) based on the reduced magnetic scalar potential formulation is used. The stator and rotor end-windings actual geometry is taken into account, except their cross section areas which are approximated by combination of straight line segments. To simplify the meshing process, stator stepped end core geometry is replaced by equivalent ramp geometry. Short-circuit currents of the generator windings are computed using two-dimensional transient FEM. It is shown that these parameters affect the stator end-winding magnetic force, particularly in the involutes part of the stator end-coils.
转子绕组和定子阶梯式端铁心对汽轮发电机定子端绕组磁力分布的影响
目前文献中考虑的是转子端部绕组对定子端部绕组力分布的影响,分别采用等效电流片或转子各槽集中线圈。然而,定子阶梯式端铁心对力的影响尚未得到研究。本文首先综述了定子端部绕组磁力的计算方法;在此基础上,研究了两极200mva汽轮发电机在三相突然短路情况下,一些参数对定子端绕组磁力分布的影响。采用了基于简化磁标量势公式的三维有限元法。定子和转子端部绕组的实际几何形状考虑在内,但其横截面面积由直线段组合近似。为了简化网格划分过程,将定子阶梯式端铁心几何形状替换为等效斜坡几何形状。采用二维暂态有限元法计算了发电机绕组的短路电流。结果表明,这些参数对定子端面绕组磁力有影响,特别是在定子端面线圈的渐开线部分。
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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