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首页> 外文期刊>IEEE Transactions on Electron Devices >An Enhanced Thermoelectric Collaborative Cooling System With Thermoelectric Generator Serving as a Supplementary Power Source
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An Enhanced Thermoelectric Collaborative Cooling System With Thermoelectric Generator Serving as a Supplementary Power Source

机译:具有用作辅助电源的热电发电机增强的热电协同冷却系统

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摘要

Thermoelectric coolers (TECs) are widely used in state-of-the-art thermal management systems. Recently, there is a big trend to power TECs using thermoelectric generators (TEGs). Mainstream research efforts focus on attaining a higher figure of merit (ZT) of thermoelectric material, which now faces a great challenge. Alternatively, this article proposes a different approach to improve the performance of TEC, that is, integration of a TEG with a TEC. The TEG converts the collected heat energy into electric current, which reduces the power consumption and enhances the cooling capacity of the TEC. Using different methods of connecting the TEC and TEG, two thermoelectric collaborative cooling systems are proposed. Accurate SPICE models of the two cooling systems are established. The experimental results demonstrate that the discrepancy between the currents flowing through the TEC in the experiments and in the SPICE models is less than 4.8% on average. Based on the verified SPICE models, the proposed TEC-TEG collaborative cooling systems are assessed in terms of power consumption, cooling capacity, coefficient of performance, and cooling efficiency. Compared with a typical Peltier cooling system, the two collaborative cooling systems achieve significant performance improvements.
机译:热电冷却器(TECS)广泛用于最先进的热管理系统。最近,使用热电发电机(TEGS)电源TECS存在大的趋势。主流研究努力专注于获得热电材料的更高的优点(ZT),现在面临着巨大的挑战。或者,本文提出了一种不同的方法来提高TEC的性能,即TEG与TEC的整合。 TEG将收集的热能转换为电流,这降低了功耗并增强了TEC的冷却能力。使用连接TEC和TEG的不同方法,提出了两个热电协作冷却系统。建立了两个冷却系统的精确香料模型。实验结果表明,在实验中流过TEC的电流之间的差异平均小于4.8%。基于已验证的香料模型,所提出的TEC-TEG协作冷却系统是在功耗,冷却能力,性能系数和冷却效率方面进行评估的。与典型的Peltier冷却系统相比,两个协作冷却系统实现了显着的性能改进。

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