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Equivalent core length consideration of synchronous motor with radial air-ducts by using 3D electromagnetic finite element method

机译:利用3D电磁有限元方法考虑径向风管同步电动机的等效铁心长度

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This paper presents the analysis results on the equivalent core length of MW salient pole synchronous motor with the air-ducts in the radial direction. The use of radial cooling channels has an effect on the electromagnetic performance of its motor. The main effect is that the actual core length must be replaced with the effective core length from the point of view of two dimensional electromagnetic circuit. Some papers or books for the design of the rotating machine explain this phenomenon as the fringing effect and express it as the formulas. 2D electromagnetic FEM analysis is carried out based on the formula for the calculation of effective core length. 3D FEM is also carried out to confirm if the use of the calculation is appropriate or not. As a result, there is 10% deviation of the no-load voltage between 2D and 3D FEM result. It means that the calculation, which stands for the fringing effect has to be reconsidered. Hence, it is needed to analyze the cause of the error by using 3D FEM analysis for more precise calculation of the core length, which affects values such as no-load voltage, field current and load torque in 2D perspective. Open circuit characteristic test is also carried out to compare and verify 3D FEM result.
机译:给出了带有风道的兆瓦凸极同步电动机等效铁心长度的分析结果。径向冷却通道的使用会影响其电机的电磁性能。主要效果是,从二维电磁电路的角度来看,实际磁芯长度必须替换为有效磁芯长度。一些用于旋转机设计的论文或书籍将这种现象解释为边缘效应,并将其表示为公式。基于该公式进行二维电磁有限元分析,以计算有效铁心长度。还执行3D FEM以确认使用计算是否合适。结果,2D和3D FEM结果之间的空载电压有10%的偏差。这意味着代表边缘效应的计算必须重新考虑。因此,需要使用3D FEM分析来分析错误原因,以更精确地计算铁心长度,这会影响2D角度的值,例如空载电压,励磁电流和负载扭矩。还进行了开路特性测试,以比较和验证3D FEM结果。

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