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An overview of cooling of thermoelectric devices

机译:热电设备冷却概述

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Thermoelectric generators are an environmentally friendly source of electrical power whose applications range from waste heat recovery to conversion of solar energy into electricity. Low conversion efficiencies however inhibit their wide scale deployment. Research into thermoelectrics has therefore primarily focused on improvement of material properties, leading to remarkable progress in the area which has not translated into high performing thermoelectric generators. System level efficiency is significantly dependent on effective thermal management. Heat dissipation mechanisms employed to remove waste heat from the cold side of a thermoelectric device are reviewed in this work. The prevalent methods of cooling thermoelectric devices are categorized and based on published experimental data, their contribution on the overall conversion efficiency of thermoelectric generators is quantified. A broad range of devices from low heat to high thermal flux have been covered in this work and will help guide future endeavors in thermoelectric generator design and testing.
机译:热电发电机是一种环境友好的电源,其应用范围从废热回收到将太阳能转化为电能。然而,低转换效率阻碍了它们的大规模部署。因此,热电学的研究主要集中在材料性能的改善上,从而在尚未转化为高性能热电发生器的领域取得了显着进展。系统级效率在很大程度上取决于有效的热管理。在这项工作中,对用于从热电设备的冷侧去除废热的散热机制进行了综述。对冷却热电装置的流行方法进行了分类,并根据已发布的实验数据,量化了它们对热电发电机总转换效率的贡献。这项工作涵盖了从低热量到高热通量的各种设备,将有助于指导热电发电机设计和测试的未来工作。

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