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A Novel Identification Method of Thermal Resistances of Thermoelectric Modules Combining Electrical Characterization Under Constant Temperature and Heat Flow Conditions

机译:一种新的热电模块热阻识别方法,其在恒温和热流条件下结合电学表征

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摘要

The efficiency of a Thermoelectric Module (TEM) is not only influenced by the material properties, but also by the heat losses due to the internal and contact thermal resistances. In the literature, the material properties are mostly discussed, mainly to increase the well-known thermoelectric figure of merit ZT. Nevertheless, when a TEM is considered, the separate characterization of the materials of the p and n elements is not enough to have a suitable TEM electrical model and evaluate more precisely its efficiency. Only a few recent papers deal with thermal resistances and their influence on the TEM efficiency; mostly, the minimization of these resistances is recommended, without giving a way to determine their values. The aim of the present paper is to identify the internal and contact thermal resistances of a TEM by electrical characterization. Depending on the applications, the TEM can be used either under constant temperature gradient or constant heat flow conditions. The proposed identification approach is based on the theoretical electrical modeling of the TEM, in both conditions. It is simple to implement, because it is based only on open circuit test conditions. A single electrical measurement under both conditions (constant-temperature and constant-heat) is needed. Based on the theoretical electrical models, one can identify the internal and thermal resistances.
机译:热电模块(TEM)的效率不仅受到材料特性的影响,而且是由于内部和接触热阻引起的热损失。在文献中,主要讨论了材料特性,主要是增加了众所周知的优选ZT的热电值。然而,当考虑一个TEM时,P和N个元素的材料的单独表征不足以具有合适的TEM电气模型并更精确地评​​估其效率。最近几篇论文仅处理了热阻及其对TEM效率的影响;主要是,建议使用这些电阻的最小化,而不提供确定其值的方法。本文的目的是通过电学表征识别TEM的内部和接触热阻。根据应用,TEM可以在恒定温度梯度或恒定的热流条件下使用。所提出的识别方法是基于TEM的理论电气建模,在这两种条件下。实现简单,因为它仅基于开路测试条件。在两个条件下(恒温和恒定热)下的单电测量是必需的。基于理论电模型,可以识别内部和热阻。

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