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纳米结构微热电发电机的设计:负载电阻与效率拐点

Design of Nano-Structured Micro-Thermoelectric Generator: Load Resistance and Inflections in the Efficiency.

作者信息

Badillo-Ruiz Carlos Alberto, Olivares-Robles Miguel Angel, Chanona-Perez Jose Jorge

机构信息

Instituto Politecnico Nacional, Seccion de Estudios de Posgrado e Investigacion, Escuela Nacional de Ciencias Biologicas, Ciudad de Mexico 11340, Mexico.

Instituto Politecnico Nacional, Seccion de Estudios de Posgrado e Investigacion, Escuela Superior de Ingenieria Mecanica y Electrica Unidad Culhuacan, Coyoacan, Ciudad de Mexico 04430, Mexico.

出版信息

Entropy (Basel). 2019 Feb 27;21(3):224. doi: 10.3390/e21030224.

Abstract

In recent years the interest for the harvest of energy with micro thermoelectric generators ( μ TEG) has increased, due to its advantages compared to technologies that use fossil fuels. There are three ways to improve the performance of the device, by modifying its structure, type of material and operation control. In this study, the role of the load resistance R L on the performance of a μ TEG with nanostructured materials is investigated. The interaction of the load resistance with the thermoelements exhibits interesting features, arising from the coupling of the temperature-dependent electrical and thermal transport properties at different temperature ranges and the architecture of nanostructured thermoelectric materials. This coupling results in inflections on the efficiency, i.e., maximum and minimum values of the efficiency at higher temperatures, 600-900 K. We show the explicit dependence of the performance of the μ TEG in terms of the load resistance and discuss the underlying physics. The unusual features of the efficiency of nanostructured thermoelectric materials are a result of the behavior of the power factor and the nonequilibrium properties of the system. We also analyze the effect of the geometric shape of the thermoelements on the device. We determine the performance of the μ TEG, evaluating the generation power and its efficiency. The results show that the efficiency of the device can decrease or increase depending on the value of R L , while the power decreases with an increase of the load resistance.

摘要

近年来,人们对利用微型热电发电机(μTEG)来获取能量的兴趣日益浓厚,这是因为与使用化石燃料的技术相比,它具有诸多优势。有三种方法可以提高该装置的性能,即通过修改其结构、材料类型和运行控制。在本研究中,我们研究了负载电阻RL对具有纳米结构材料的μTEG性能的影响。负载电阻与热元件之间的相互作用呈现出有趣的特性,这源于不同温度范围内与温度相关的电传输和热传输特性的耦合以及纳米结构热电材料的结构。这种耦合导致效率出现拐点,即在较高温度(600 - 900 K)下效率的最大值和最小值。我们展示了μTEG性能与负载电阻之间的明确关系,并讨论了其背后的物理原理。纳米结构热电材料效率的异常特性是功率因数行为和系统非平衡特性的结果。我们还分析了热元件的几何形状对该装置的影响。我们通过评估发电功率及其效率来确定μTEG的性能。结果表明,该装置的效率可能会根据RL的值而降低或增加,而功率则随着负载电阻的增加而降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ca/7514704/c7b99db506e7/entropy-21-00224-g001.jpg

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