散热片
热电冷却
热管
材料科学
性能系数
水冷
机械工程
焦耳加热
热电效应
热阻
热的
冷却能力
传热
传热系数
电动机
热电发电机
核工程
热撒布器
主动冷却
计算机冷却
电加热
被动冷却
电力
电子设备冷却
热能
汽车工程
电子设备和系统的热管理
机械
热力学
电压
热传导
热接触
工作液
发热
能源消耗
作者
Xing Lv,Shuai Du,Zhonghua Wei,Yi Zhong,Yanghui Ye,Qipeng Li,Cong Dong,Chenyu Zhu
标识
DOI:10.1016/j.csite.2025.107273
摘要
A hybrid thermal management system integrating thermoelectric cooling with a flat heat pipe was developed to enhance heat dissipation in electric motors. System effectiveness under varying input voltage and electric motor power consumption ( W CP ) was evaluated using three metrics: the thermal regulation capability coefficient ( η TE ), thermal management index ( TMI ), and coefficient of performance ( COP ). Experimental and numerical results demonstrated that optimal performance occurred at 26 V and 269 W, with a temperature reduction of 41.58 K, a relative η TE of 2.63, and a relative TMI of 5.66 compared with the baseline, while maintaining a COP of 1.21. Although a higher COP of 2.63 was observed at 16 V, the limited cooling capacity and increased power consumption made this condition energetically inefficient. The flat heat pipe integrated heat sink achieved a minimum thermal resistance of 0.1005 K·W -1 , surpassing conventional strategies by more than 60% in terms of both temperature uniformity and thermal regulation capability coefficient. A key innovation was the optimization of voltage-based cooling and Joule heating mitigation, which enabled an optimal balance between cooling capacity and energy consumption. The system maintained stable cooling performance under reduced power input, thereby providing a theoretical foundation and practical guidance for thermal management optimization in high-power-density motors, system integration, and next-generation motor design. Design and working principle of a hybrid thermal management system for electric motors • Thermal management of electric motors is discussed. • Thermoelectric cooling modules coupled flat heat pipes enhance thermal management. • Thermal management index is proposed to evaluates cooling performance. • A rise in electric motor power consumption enhances the η TE . • Maximum temperature reduction, η TE , and TMI are 41.58K, 2.63, and 5.66.
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