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Electromagnetic and thermodynamic design of a novel integrated flux-switching motor-compressor with airfoil-shaped rotor

机译:新型翼型转子集成磁通转换电动压缩机的电磁和热力学设计

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The objective of this paper is to investigate the electromagnetic design aspects of a novel flux-switching motor-compressor with rotor poles designed as airfoils to perform compression. The proposed novel flux-switching motor-compressor is both an electric motor as well as an axial-flow compressor. Conventional motor-driven compressor system typically requires an electric motor and a gear box to connect the compressor. In contrast, the proposed novel integrated flux-switching motor-compressor simplifies the system by integrating the motor and compressor into a single machine. By eliminating the connection between the electric motor and the compressor, the proposed system has the benefits of compactness, high reliability, and high efficiency. In conventional compressor system, the electromagnetic design of the electric motor and the thermodynamic design of the compressor are not related. In the proposed integrated motor-compressor, the electromagnetic design is influenced by the shape of the novel machine including the curved rotor poles (or blades) and modified stator parts. The operating principle of the proposed motor-compressor is discussed. The design considerations including using step skewing for the stator part and soft magnetic composite (SMC) for the rotor design are elaborated. The electromagnetic performances of the proposed novel motor-compressor are compared with the conventional flux-switching motor. Results from finite element analysis (FEA) and computational fluid dynamics (CFD) validate the proposed novel motor-compressor.
机译:本文的目的是研究一种新型磁通量切换电动压缩机的电磁设计方面,该转子压缩机的转子极设计为机翼以执行压缩。所提出的新颖的通量转换电动机压缩机既是电动机又是轴流压缩机。常规的电动压缩机系统通常需要电动机和齿轮箱来连接压缩机。相反,所提出的新颖的集成式磁通转换电动机-压缩机将电动机和压缩机集成到一台机器中,从而简化了系统。通过消除电动机和压缩机之间的连接,所提出的系统具有紧凑,高可靠性和高效率的优点。在常规压缩机系统中,电动机的电磁设计和压缩机的热力学设计是不相关的。在提出的集成式电动压缩机中,电磁设计受新型机械的形状的影响,该新型机械包括弯曲的转子磁极(或叶片)和改进的定子零件。讨论了所提出的电动压缩机的工作原理。阐述了设计注意事项,包括对定子零件使用阶梯偏斜和对转子设计使用软磁复合材料(SMC)。将提出的新型电动压缩机的电磁性能与常规的磁通量开关电动机进行了比较。有限元分析(FEA)和计算流体力学(CFD)的结果验证了所提出的新型电动压缩机。

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