Optimized thermoelectrics for energy harvesting applications

J. Bierschenk
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引用次数: 25

Abstract

Bismuth telluride thermoelectric (TE) technology is well established in many small scale cooling applications including picnic boxes, auto seats, telecommunications lasers, military smart munitions and satellite applications. Applications using thermoelectric generators (TEGs) operating in reverse, for generating power from small ambient temperature differences are much less mature and not as well understood. Traditional bulk thermoelectric devices and thin film thermoelectric devices are not well suited for these low ¿T, low heat flux applications due to a mismatch between the TEG thermal resistance and the thermal resistance of the small natural convection heat sinks inherent to these energy harvesting applications. This paper will highlight the TE design characteristics for low ¿T energy harvesting TEGs. Performance comparisons between the new bulk TEG devices, traditional thermoelectrics and new thin film thermoelectric approaches will be provided.
用于能量收集应用的优化热电器件
碲化铋热电(TE)技术在许多小型冷却应用中得到了很好的应用,包括野餐盒、汽车座椅、电信激光器、军事智能弹药和卫星应用。使用反向工作的热电发电机(teg),利用微小的环境温差发电的应用还不太成熟,也不太为人所知。传统的块状热电器件和薄膜热电器件不太适合这些低温度、低热流通量的应用,因为这些能量收集应用中固有的TEG热阻和小型自然对流散热器的热阻之间存在不匹配。本文将重点介绍低碳能量收集teg的设计特点。将提供新的大块TEG器件,传统热电器件和新的薄膜热电方法之间的性能比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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