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采用水冷板的高损耗密度电机冷却系统设计与分析

赵鑫 崔豪杰 滕云 陈哲 刘光伟

全球能源互联网(英文)2023,Vol.6Issue(3):343-354,12.
全球能源互联网(英文)2023,Vol.6Issue(3):343-354,12.DOI:10.1016/j.gloei.2023.06.008

采用水冷板的高损耗密度电机冷却系统设计与分析

Design and analysis of a high loss density motor cooling system with water cold plates

赵鑫 1崔豪杰 1滕云 1陈哲 1刘光伟1

作者信息

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摘要

Abstract

Aiming at reducing the difficulty of cooling the interior of high-density motors,this study proposed the placement of a water cold plate cooling structure between the axial laminations of the motor stator.The effect of the cooling water flow,thickness of the plate,and motor loss density on the cooling effect of the water cold plate were studied.To compare the cooling performance of water cold plate and outer spiral water jacket cooling structures,a high-speed permanent magnet motor with a high loss density was used to establish two motor models with the two cooling structures.Consequently,the cooling effects of the two models were analyzed using the finite element method under the same loss density,coolant flow,and main dimensions.The results were as follows.(1)The maximum and average temperatures of the water cold plate structure were reduced by 25.5% and 30.5%,respectively,compared to that of the outer spiral water jacket motor;(2)Compared with the outer spiral water jacket structure,the water cold plate structure can reduce the overall mass and volume of the motor.Considering a 100 kW high-speed permanent magnet motor as an example,a water cold plate cooling system was designed,and the temperature distribution is analyzed,with the result indicating that the cooling structure satisfied the cooling requirements of the high loss density motor.

关键词

冷却系统设计/高损耗密度电机/水冷板/温度场分析

Key words

Cooling system design/High loss density motor/Water cold plate/Temperature field analysis

引用本文复制引用

赵鑫,崔豪杰,滕云,陈哲,刘光伟..采用水冷板的高损耗密度电机冷却系统设计与分析[J].全球能源互联网(英文),2023,6(3):343-354,12.

基金项目

This work was supported by the National Natural Science Foundation of China(51920105011),Natural Science Foundation of Liaoning Province(2021-YQ-09),and Liaoning Bai Qian Wan Talents Program,China. (51920105011)

全球能源互联网(英文)

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