首页> 外文会议>Proceedings of the ASME Heat Transfer Division 2003 >THERMAL MODELING OF A LIQUID-COOLED PM TRACTION MOTOR
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THERMAL MODELING OF A LIQUID-COOLED PM TRACTION MOTOR

机译:液冷永磁牵引电动机的热建模

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The electric motor plays a critical role for the applications of the Hybrid Electric Vehicle and Fuel Cell Electric Vehicle. It is also well known that thermal constraints represent one of the main limitations in the performance of the electric motor. For example, the electric motor will be short-circuited if the insulation coatings of the copper wire bundles fail. Furthermore, the performance of the permanent magnet electric motor reduces significantly as the rotor magnet temperature increases. In this study, a series of Computational Fluid Dynamics analyses were performed for the design of a liquid-cooled permanent magnet electric motor to achieve better thermal performance. Several thermal tests of a partial permanent magnet traction motor assembly (stator and housing only) were also performed to determine effective properties of the stator slot and thermal contact resistance between stator and housing that may vary due to the manufacturing process. A simplified thermal network model of this system was established from the Computational Fluid Dynamics analyses. Then the critical heat transfer path of this system was identified.
机译:电动机对于混合动力电动汽车和燃料电池电动汽车的应用起着至关重要的作用。众所周知,热约束是电动机性能的主要限制之一。例如,如果铜线束的绝缘涂层失效,则电动机将短路。此外,随着转子磁体温度升高,永磁电动机的性能显着降低。在这项研究中,进行了一系列计算流体动力学分析,以设计液冷永磁电动机以获得更好的热性能。还对部分永磁牵引电机组件(仅定子和外壳)进行了几次热测试,以确定定子槽的有效特性以及定子和外壳之间的热接触电阻,这些热接触电阻可能会因制造过程而发生变化。通过计算流体动力学分析,建立了该系统的简化热网络模型。然后确定了该系统的关键传热路径。

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