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Electrothermal Combined Optimization on Notch in Air-Cooled High-Speed Permanent-Magnet Generator

机译:风冷高速永磁发电机缺口的电热组合优化

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摘要

A 30 kVA, 96000 r/min, air-cooled high-speed permanent-magnet generator (HSPMG) is investigated in this paper. Considering effects on both the magnetic circuit and heat transfer paths comprehensively, the stator slot notch in this HSPMG is optimized. First, using the time-stepping finite-element method, the transient electromagnetic fields of HSPMG are numerically calculated, and the electromagnetic losses in different components are obtained. Then, after the determination of other mechanical losses in such a machine, a 3-D fluid–thermal coupling calculation model is established, and the working temperature distribution in the HSPMG is studied. Thus, the electromagnetic–fluid–thermal coupling analysis method on the HSPMG is proposed, and the use of the influences of machine notch height on machine magnetic circuit and cooling air flowing path are investigated. Meanwhile, both the electromagnetic performance and the temperature distribution in HSPMG with different stator notch height are studied, and a series of analytical equations is deduced to describe the variations of machine performances with stator notch. Using the proposed unbalance relative weighting method, the notch height is optimized to enhance the performance of HSPMG. The obtained conclusion could provide reference for HSPMG electromagnetic calculation, cooling system design, and optimization design.
机译:本文研究了一种30 kVA,96000 r / min的风冷高速永磁发电机(HSPMG)。综合考虑对磁路和传热路径的影响,此HS​​PMG中的定子槽口槽口得到了优化。首先,使用时步有限元方法,对HSPMG的瞬变电磁场进行了数值计算,并获得了不同分量的电磁损耗。然后,在确定了该机器的其他机械损耗之后,建立了3-D流体-热耦合计算模型,并研究了HSPMG中的工作温度分布。因此,提出了对HSPMG进行电磁-流体-热耦合分析的方法,并研究了机械切口高度对机械磁路和冷却空气流动路径的影响。同时,研究了定子缺口高度不同的HSPMG的电磁性能和温度分布,推导了一系列解析方程来描述定子缺口的机械性能变化。使用提出的不平衡相对加权方法,优化了切口高​​度以增强HSPMG的性能。所得结论可为HSPMG电磁计算,冷却系统设计和优化设计提供参考。

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