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Three-Dimensional Temperature Field Calculation and Analysis of an Axial-Radial Flux-Type Permanent Magnet Synchronous Motor

机译:三维温度场计算与轴向磁通型永磁同步电动机的分析

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摘要

This article concentrates on the steady-state thermal characteristics of the Axial-Radial Flux-Type Permanent Magnet Synchronous Motor (ARFTPMSM). Firstly, the three-dimensional mathematical models for electromagnetic calculation and analyses are established, and the machine loss, including the stator loss, armature winding loss, rotor loss, and axial structure loss is calculated by using time-step Finite Element Method (FEM). Then, the loss distribution is assigned as the heat source for the thermal calculation. Secondly, the mathematical model for thermal calculation is also established. The assumptions and the boundary conditions are proposed to simplify the calculation and to improve convergence. Thirdly, the three-dimensional electromagnetic and thermal calculations of the machine, of which the armature winding and axial field winding are developed by using copper wires, are solved, from which the temperature distributions of the machine components are obtained. The experiments are carried out on the prototype with copper wires to validate the accuracy of the established models. Then, the temperature distributions of machine components under different Axial Magnetic Motive Force (AMMF) are investigated. Since the machine is finally developing by using HTS wires, the temperature distributions of machine developed by utilizing High Temperature Superconducting (HTS) wires, are also studied. The temperature distribution differences of the machine developed by using copper wires and HTS wires are drawn. All of these above will provide a helpful reference for the thermal calculation of the ARFTPMSM, as well as the design of the HTS coils and the cryogenic cooling system.
机译:本文集中在轴向助焊剂型永磁同步电动机(ARFTPMSM)的稳态热特性上。首先,建立了用于电磁计算和分析的三维数学模型,并且通过使用时间阶跃有限元方法(FEM)计算机器损耗,包括定子损耗,电枢绕组损耗,转子损耗和轴向结构损耗。然后,将损耗分布分配为热计算的热源。其次,还建立了热计算的数学模型。提出了假设和边界条件以简化计算和提高收敛性。第三,解决了机器的三维电磁和热量计算,其中通过使用铜线开发了电枢绕组和轴向场绕组的机器,得到了机器部件的温度分布。实验在用铜线上的原型进行,以验证已建立的模型的准确性。然后,研究了不同轴向磁动力(AMMF)下的机器部件的温度分布。由于机器最终通过使用HTS线进行开发,因此还研究了通过利用高温超导(HTS)线开发的机器的温度分布。拉伸通过使用铜线和HTS线开发的机器的温度分布差。所有这些上面将为ARFTPMSM的热计算提供有用的参考,以及HTS线圈和低温冷却系统的设计。

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