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The relationship between the thermoelectric generator efficiency and the device engineering figure of merit Zd,eng. The maximum efficiency 𝜼max

机译:热电发电机效率与设备工程性能指标之间的关系。最大效率𝜼 max

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Thermoelectric materials are used today in thermoelectric devices for heat to electricity(thermoelectric generators-TEG) or electricity to heat(heat pumps) conversion in a large range of applications. In the case of TEGs the final measure of their performance is given by a quantity named the maximum efficiency which shows how much from the heat input is converted into electrical power. Therefore it is of great interest to know correctly how much is the efficiency of a device to can make commercial assessments. The concept of engineering figure of merit, Zeng, and engineering power factor, Peng, were already introduced in the field to quantify the efficiency of a single material under temperature dependent thermoelectric properties, with the mention that the formulas derivation was limited to one leg of the thermoelectric generator. In this paper we propose to extend the concept of engineering figure of merit to a thermoelectric generator by introducing a more general concept of device engineering thermoelectric figure of merit, Zd,eng, which depends on the both TEG materials properties and which shall be the right quantity to be used when we are interested in the evaluation of the efficiency. Also, this work takes into account the electrical contact resistance between the electrodes and thermoelement legs in an attempt to quantify its influence upon the performance of a TEG. Finally, a new formula is proposed for the maximum efficiency of a TEG.
机译:如今,热电材料被用于热电设备中,以在许多应用中将热能转换为电能(热电发电机-TEG)或将电能转换为热能(热泵)。对于TEG,其性能的最终衡量标准是一个称为最大效率的量,该量表示将热量输入转化为电能的量。因此,非常重要的是正确地知道设备的效率可以进行商业评估的程度。已经在现场引入了工程品质因数Z eng 和工程功率因数P eng 的概念,以量化与温度相关的单一材料的效率提及公式推导仅限于热电发电机的一个分支。在本文中,我们建议通过引入设备工程热电品质因数Z d,eng 的更一般概念将其扩展到热电发电机,这取决于两个TEG材料特性,当我们对效率评估感兴趣时,应使用的正确数量。同样,这项工作考虑了电极和热电偶腿之间的电接触电阻,以试图量化其对TEG性能的影响。最后,提出了一种新的公式,以最大程度地提高TEG的效率。

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