3-D simulation of a rotor suffering a bar breakage

V. Climente-Alarcón, A. Arkkio, J. Antonino-Daviu
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引用次数: 0

Abstract

The development of Condition-Based Maintenance and Prognostics and Health Management systems can be fostered by models that accurately reproduce the effects and propagation of faults. Conventional methods applied to the analysis and simulation of rotor asymmetries in induction machines are based in the classical 2-D finite element approach, which is unable to reflect its complex effects, such as interbar currents and their interaction with the stator flux density wave. Thus, this work applies a 2D-3D multiphysics finite element procedure to assess the impact of a bar breakage on a rotor cage during stationary operation, with reduced computational cost compared to a full motor 3-D simulation. Initial results improve previous ones obtained for transient operation conditions, showing the potential of the approach and confirming previous analytical studies.
转子断条的三维模拟
基于状态的维护和预测以及健康管理系统的发展可以通过精确再现故障的影响和传播的模型来促进。传统的分析和模拟异步电机转子不对称的方法是基于经典的二维有限元方法,无法反映其复杂的影响,如棒间电流及其与定子磁通密度波的相互作用。因此,这项工作应用了2D-3D多物理场有限元程序来评估固定运行期间杆断裂对转子保持架的影响,与全电机3d模拟相比,计算成本更低。初步结果改进了以前在瞬态运行条件下获得的结果,显示了该方法的潜力,并证实了以前的分析研究。
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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