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首页> 外文期刊>Electric Power Applications, IET >New finite element based method for thermal analysis of axial flux interior rotor permanent magnet synchronous machine
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New finite element based method for thermal analysis of axial flux interior rotor permanent magnet synchronous machine

机译:基于新型有限元的轴向磁通内转子永磁同步机的热分析方法

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摘要

A new method for computing convection heat transfer coefficients in axial flux permanent magnet synchronous machines (AF-PMSMs) is introduced. The method is based on a two-step finite element analysis (FEA). In the first step, a simple 2D model is introduced and fluid flow and temperature fields are studied using computational fluid dynamic (CFD) technique. Convective heat transfer coefficients for all heat transfer surfaces of the model are extracted from CFD analysis and are then used as inputs to a 3D thermal finite element model. Two case studies are considered to check the accuracy of the abovementioned two-step method. One of the case studies is an air-cooled AF-PMSM that has air inlet and outlet on its enclosure and the other case is a totally enclosed AF-PMSM. The correctness of the mentioned method is verified by practical measurements on the second case. In addition, an experimental set-up is conducted to measure the temperature of different parts of the second case. It is observed that the results of the two-step CFD-FEA model are in good agreement with the experimental data. In the other case, the effect of inlet air velocity on heat transfer coefficients, as well as the thermal behaviour of the machine are explored.
机译:介绍了一种用于计算轴向磁通永磁同步机(AF-PMSMS)中的对流传热系数的新方法。该方法基于两步有限元分析(FEA)。在第一步中,引入简单的2D模型,并使用计算流体动态(CFD)技术研究了流体流动和温度场。从CFD分析中提取模型的所有传热表面的对流传热系数,然后用作3D热有限元模型的输入。两种案例研究被认为检查上述两步方法的准确性。其中一个案例研究是一种空气冷却的AF-PMSM,其外壳上具有空气入口和出口,另一个情况是完全封闭的AF-PMSM。通过第二种情况的实际测量验证了所提到的方法的正确性。另外,进行实验组以测量第二种情况的不同部分的温度。观察到,两步CFD-FEA模型的结果与实验数据吻合良好。在另一个情况下,探索了入口空气速度对传热系数的影响,以及机器的热行为。

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