微特电机 ›› 2025, Vol. 53 ›› Issue (5): 13-20.

• 设计分析 • 上一篇    下一篇

永磁同步电机多工况温升特性与热管理策略研究

林  木, 万  坚   

  1. 浙江交通职业技术学院 航空学院,杭州 311112
  • 收稿日期:2025-01-24 出版日期:2025-05-28 发布日期:2025-06-04
  • 作者简介:林木( 1985—) ,博士,讲师,研究方向为数字化分析与优化。

Temperature Rise Characteristics and Thermal Management Strategies of Permanent#br# Magnet Synchronous Motors Under Multi-Operating Conditions

LIN Mu, WAN Jian   

  1. School of Aviation, Zhejiang Institute of Communications,Hangzhou 311112, China
  • Received:2025-01-24 Online:2025-05-28 Published:2025-06-04

摘要: 针对高功率密度电机的热管理需求,通过构建电磁-热耦合数值模型,结合多物理场仿真与实验验证方
法,系统评估了油水复合冷却策略的协同效应。 研究揭示了冷却介质参数对关键热源的传热影响规律,并建立高原
低气压环境下的沸腾传热修正模型。 优化后的复合冷却系统在峰值转矩工况下实现绕组热点温升降低了 14. 7%,
冷却液流量每增加 10 L / min,定子绕组温升降低了 12. 3%;螺旋形冷却通道设计使热交换效率提升。 该研究构建的
多工况适应性评估框架,为极端环境下高功率密度电机的热管理系统开发提供了包含动态调节、材料创新与智能预
测的综合解决方案。

关键词: 永磁同步电机, 温升特性, 热管理策略, 多工况分析, ANSYS 仿真

Abstract: In response to the thermal management requirements for high power density motors, an electromagneticthermal coupled numerical model was established. By integrating multiphysical field simulations with experimental validation methods, a systematic evaluation of the synergistic effects of combined oil-water cooling strategies was conducted. The research elucidates the influence of coolant parameters on heat transfer from critical heat sources and establishes a modified boiling heat transfer model under plateau low-pressure environments. The optimized composite cooling system achieved a 14. 7% reduction in winding hotspot temperatures under peak torque conditions. An increase of 10 L / min in coolant flow rate resulted in a 12. 3% decrease in stator winding temperature rise. The helical cooling channel designs enhanced heat exchange efficiency. The multi-condition adaptability assessment framework constructed in this study provides a comprehensive solution encompassing dynamic adjustment, material innovation, and intelligent prediction for the development of thermal management systems for high power density motors in extreme environments.

Key words: permanent magnet synchronous motor ( PMSM), temperature rise characteristics, thermal management strategy, multi-condition analysis, ANSYS simulation

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