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首页> 外文期刊>SAE International Journal of Alternative Powertrains >Liquid Cooled Induction Motor: Computational Design, Heat Transfer Analysis, Parametric Study, and Performance Testing
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Liquid Cooled Induction Motor: Computational Design, Heat Transfer Analysis, Parametric Study, and Performance Testing

机译:液冷感应电动机:计算设计,传热分析,参数研究和性能测试

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In order to use an electric induction motor to power an automotive vehicle, heat occurred in a motor is an important issue. Generally, an induction motor could be operating at a high load for many extensive periods. The generated heat in motor could cause damage on motor parts subsequently decreasing their useful service life. The objective of this study was to develop a cooling system of the induction motor by introducing liquid coolant passages on a housing part to obtain higher cooling efficiency than that of conventional Totally Enclosed Fan Cooled system (TEFC). Principally, conventional TEFC finned housing and rear fan would be replaced by a cylindrical aluminum housing. Special heat transfer oil was chosen as a coolant mainly due to its dielectric property. The liquid cooling housing geometry was defined by series of cooling passages to guide the liquid coolant through and around the housing. The design of liquid cooling system was performed via computational simulation. In the main simulation work, the boundary conditions of heat generation in motor were obtained from previous experimental and computational work on existing TEFC motor. Using resulting temperature distribution in the motor as a design criteria, the effect of two operational variables were investigated i.e. coolant flow pattern and coolant flow rate. Simulation results in each design case were compared and discussed to determine the finalized concept of the liquid cooling system prior to a prototype fabrication and actual performance testing.
机译:为了使用感应电动机为机动车辆提供动力,电动机中产生的热量是重要的问题。通常,感应电动机可以在高负载下运行许多长时间。电动机中产生的热量可能会损坏电动机零件,从而缩短其使用寿命。这项研究的目的是通过在壳体部件上引入液体冷却剂通道来开发感应电动机的冷却系统,以获得比传统的全封闭风扇冷却系统(TEFC)更高的冷却效率。原则上,传统的TEFC翅片外壳和后风扇将由圆柱形铝外壳代替。选择特殊的导热油作为冷却剂,主要是因为其介电性能。液体冷却壳体的几何形状由一系列冷却通道限定,以引导液体冷却剂通过并围绕壳体。液体冷却系统的设计是通过计算仿真进行的。在主要的模拟工作中,电动机的热量产生的边界条件是从先前对现有TEFC电动机进行的实验和计算工作获得的。使用电动机中得到的温度分布作为设计标准,研究了两个运行变量的影响,即冷却剂流型和冷却剂流率。比较并讨论了每种设计案例中的仿真结果,以确定在原型制造和实际性能测试之前确定液体冷却系统的最终概念。

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