On the Effects of Advanced End-Winding Cooling on the Design and Performance of Electrical Machines

V. Madonna, P. Giangrande, A. Walker, M. Galea
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引用次数: 34

Abstract

High performance and reliable electrical machines are often required in modern applications and an appropriate thermal management allows to fulfil such demand. Thermal management is crucial for improving performance, reducing size and preserving the insulation lifetime of electrical machines. From this prospective, a novel cooling method for machine end-windings is proposed in the present work. Its cooling action focuses on the end-windings, since they are commonly identified as the machine hot-spot. The effectiveness of the proposed cooling method is experimentally proved and the improvement, in terms of current density, for a given wire insulation thermal class, is quantified. A previously designed permanent magnet synchronous machine, implementing a traditional housing water jacket, is used as a case study. The influence of the improved current density on machine torque density is investigated, through finite element simulations, when the proposed cooling method is integrated to the existing housing water jacket.
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先进端绕组冷却对电机设计和性能的影响
在现代应用中经常需要高性能和可靠的电机,适当的热管理可以满足这种需求。热管理对于提高电机的性能、减小尺寸和保持绝缘寿命至关重要。从这一角度出发,本文提出了一种新的机械端部绕组冷却方法。它的冷却作用集中在末端绕组,因为它们通常被认为是机器的热点。实验证明了所提出的冷却方法的有效性,并对给定导线绝缘热等级的电流密度的改进进行了量化。以先前设计的永磁同步电机为例,该电机采用了传统的壳体水套。通过有限元模拟,研究了将所提出的冷却方法集成到现有壳体水套上时,电流密度对电机转矩密度的影响。
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