永磁管状直线电机的多物理场数值模拟与分析

I. Vese, F. Marignetti, M. Radulescu
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引用次数: 4

摘要

本文通过有限元数值分析,建立了永磁管状直线电机(PMTLM)电磁与热耦合现象的多物理场模型。首先得到了原型PMTLM的磁通密度分布、齿槽力、推力和损耗的二维轴对称有限元稳态和瞬态解。然后将有限元磁场结果与三维有限元热模拟相耦合,得到PMTLM的温度分布。证明了多物理场数值分析是pmtlm设计和性能优化的有效工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiphysics approach to numerical modelling and analysis of permanent-magnet tubular linear motors
The paper presents a multiphysics modelling through finite-element (FE) numerical field analysis for coupling electromagnetic and thermal phenomena in a permanent-magnet tubular linear motor (PMTLM). 2-D axial-symmetry FE steady-state and transient solutions are first obtained for the magnetic flux density distribution, cogging force, thrust and losses of the prototype PMTLM. The FE magnetic field results are then coupled to the 3-D FE thermal simulation in order to get the PMTLM temperature distribution. The paper proves that the multiphysics numerical analysis is a viable tool for the design and performance optimization of PMTLMs.
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