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CENTRIFUGALLY PUMPED THERMOSIPHONS FOR MOTOR ROTOR COOLING

机译:离心泵式热电偶,用于电动机转子冷却

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摘要

This paper presents a detailed approach to provide improved cooling and heat spreading in electric machine rotors using centrifugally-pumped revolving thermosiphons. Design concepts are discussed that offer the following advantages: (1) high thermal performance across a wide range of operating points; (2) low-impedance heat paths; (3) excellent opportunities for integration with electric machine design for improved electromagnetic performance and structural design, as well as practical, cost-effective manufacturing. It takes advantage of centrifugal force to provide effective inertial pumping over a wide range of operating conditions. In addition, the new thermosiphon design is compatible with existing standard electric machine manufacturing techniques and cooling needs. A condenser section fin and ramp structure provides consistently high condensation performance. Surface texture design to promote effective nucleate boiling at high speeds is discussed, and fluid fill factor is analyzed. Applications include induction and PM synchronous machines. Benefits of these thermosiphons include increased steady-state power and torque density, increased and more consistent efficiency, and reduced permanent magnet volume and cost in PM synchronous machines. Other applications may include centrifugal gas compression, chemical processes, and machine tools.
机译:本文提出了一种使用离心泵旋转热虹吸管改善电机转子中的冷却和散热的详细方法。讨论了具有以下优点的设计概念:(1)在广泛的工作点上具有很高的热性能; (2)低阻抗热通道; (3)与电机设计集成以改善电磁性能和结构设计以及实用,具有成本效益的制造的绝佳机会。它利用离心力在各种运行条件下提供有效的惯性泵送。此外,新的热虹吸管设计与现有的标准电机制造技术和冷却需求兼容。冷凝器部分的翅片和斜面结构始终提供高冷凝性能。讨论了促进高速有效成核的表面纹理设计,并分析了流体填充因子。应用包括感应和PM同步电机。这些热虹吸管的好处包括:增加稳态功率和转矩密度,提高效率并保持一致,并减少永磁同步电机中的永磁体体积和成本。其他应用可能包括离心气体压缩,化学过程和机床。

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