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Development of correlations for windage power losses modeling in an axial flux permanent magnet synchronous machine with geometrical features of the magnets

机译:具有磁体几何特征的轴向磁通永磁同步电机风阻功率损耗建模的相关性研究

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摘要

In this paper, a set of correlations for the windage power losses in a 4 kW axial flux permanent magnet synchronous machine (AFPMSM) is presented. In order to have an efficient machine, it is necessary to optimize the total electromagnetic and mechanical losses. Therefore, fast equations are needed to estimate the windage power losses of the machine. The geometry consists of an open rotor–stator with sixteen magnets at the periphery of the rotor with an annular opening in the entire disk. Air can flow in a channel being formed between the magnets and in a small gap region between the magnets and the stator surface. To construct the correlations, computational fluid dynamics (CFD) simulations through the frozen rotor (FR) method are performed at the practical ranges of the geometrical parameters, namely the gap size distance, the rotational speed of the rotor, the magnet thickness and the magnet angle. Thereafter, two categories of formulations are defined to make the windage losses dimensionless based on whether the losses are mainly due to the viscous forces or the pressure forces. At the end, the correlations can be achieved via curve fittings from the numerical data. The results reveal that the pressure forces are responsible for the windage losses for the side surfaces in the air-channel, whereas for the surfaces facing the stator surface in the gap, the viscous forces mainly contribute to the windage losses. Additionally, the results of the parametric study demonstrate that the overall windage losses in the machine escalate with an increase in either the rotational Reynolds number or the magnet thickness ratio. By contrast, the windage losses decrease once the magnet angle ratio enlarges. Moreover, it can be concluded that the proposed correlations are very useful tools in the design and optimizations of this type of electrical machine.
机译:在本文中,提出了一套4 kW轴向磁通永磁同步电机(AFPMSM)的风功率损耗的相关性。为了拥有高效的机器,有必要优化总的电磁和机械损耗。因此,需要快速方程来估算机器的风阻功率损失。几何结构包括一个开放的转子-定子,转子的外围有十六个磁体,整个磁盘上都有一个环形开口。空气可以在磁体之间形成的通道中以及磁体和定子表面之间的小间隙区域中流动。为了建立相关性,在几何参数的实际范围(即间隙尺寸距离,转子的转速,磁体厚度和磁体)的实际范围内,通过冻结转子(FR)方法进行了计算流体动力学(CFD)模拟。角度。此后,根据损耗是主要由于粘性力还是压力而定义了两类配方,以使风阻损耗无量纲。最后,可以通过数值数据的曲线拟合获得相关性。结果表明,压力是造成空气通道侧面损失的原因,而对于间隙中面向定子表面的表面,粘性力则是造成损失的主要原因。此外,参数研究的结果表明,随着旋转雷诺数或磁体厚度比的增加,机器中的总风阻损失会增加。相反,一旦磁体角比增大,风阻损失就减小。此外,可以得出结论,在这种类型的电机的设计和优化中,建议的相关性是非常有用的工具。

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