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首页> 外文期刊>International Journal of Thermal Sciences >Experimentally validated numerical model of thermal and flow processes within the permanent magnet brushless direct current motor
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Experimentally validated numerical model of thermal and flow processes within the permanent magnet brushless direct current motor

机译:实验验证的永磁无刷直流电动机热流流程的数值模型

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摘要

In this paper, a numerical model describing the heat transfer and air flow inside and outside the casing of the permanent magnet brushless direct current (PM BLDC) motor is presented. In the model, a conjugate heat transfer including the heat conduction with heat sources in windings, magnets, bearings, natural and forced convection and radiation phenomena within internal and external air domain were analysed. The complex geometrical model included windings, a magnet circuit, a rotor with neodymium magnets, a PCB electronic plate, plastic covers, internal air between solid parts as well as a portion of the external air. The validation process of the developed model was realised on the basis of the velocity and temperature fields. The experimental data were recorded by 7 constant temperature anemometers at 4 levels above the motor housing, Laser Doppler Anemometry sensors in two axes inside the rear portion of the motor and 25 thermocouples fixed inside and outside the motor. The experimental and numerical tests were performed for 4 motor loadings and 3 rotational speeds. The average temperature error for the internal point was of 9 K, while that of the external points was of 2 K. The velocity field was very well predicted close to the housing wall in terms of horizontal and vertical components. A slightly worse agreement was found for the vertical component, especially in the vicinity of the shaft. The results were consistent for all the considered motor loadings and rotational speeds.
机译:在本文中,提出了一种描述永磁无刷直流(PM BLDC)电动机的壳体内外传热和气流的数值模型。在该模型中,分析了包括在绕组,磁体,轴承,天然和强制对流中的热源的热传导,内部和外部空气结构域内的热源传热。复杂的几何模型包括绕组,磁铁电路,带有钕磁铁的转子,PCB电子板,塑料盖,固体部件之间的内部空气以及外部空气的一部分。基于速度和温度场实现开发模型的验证过程。实验数据在电动机壳体上方的4个级别,在电动机的后部内部的两个轴上的激光多普勒式风皮传感器和25个热电偶固定在电动机内部和外部的电动机内部和电动机内部的恒温度传感器中记录了实验数据。实验和数值测试进行4个电动机载荷和3个转速。内部点的平均温度误差为9 k,而外部点的温度为2k。速度场在水平和垂直部件方面非常靠近壳体壁预测。为垂直部件发现略差略差,特别是在轴附近。结果对于所有考虑的电动机负载和转速是一致的。

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