Optimization and comparison of two-stage thermoelectric generators considering the influence of temperature variation on materials for waste heat utilization

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY Journal of Computational Methods in Sciences and Engineering Pub Date : 2023-06-15 DOI:10.3233/jcm-226876
W. Cao, Jie Lei, Jianzhuang Xu, Baolin Wang, Meiying Huang, Ruifang Zhang, C. Bluth
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Abstract

Thermoelectricity technology, as a kind of cost-effective and pollution-free power generation solution, is often used for waste heat recovery and utilization. In this paper, the temperature distribution of a Two-stage Thermoelectric Generator (TTEG) under constant temperature conditions has been studied using a one-dimensional heat conduction model. Moreover, by combining the obtained temperature distribution with the three-dimensional size of TTEG, a calculation formula of resistance and voltage was developed based on the calculus method. When the sum of cross-sectional areas of all the PN-type thermoelectric arms respectively in high- and low-temperature layers is constant, the optimal ratio between cross-sectional areas of a single PN-thermoelectric arm respectively in high- and low-temperature layers can be calculated using the proposed formula in this study to achieve the maximum output power. Results also showed the relationship between the heights of PN-type thermoelectric arms and the temperature distributions in high- and low-temperature layers. Using PbTe as the medium temperature thermoelectric material and Bi2Te3 as the low temperature thermoelectric material, a case study was conducted on the PN-type thermoelectrics with the same total height and the same total cross-sectional area. The theoretical calculation results showed that the bigger of maximum output power between the two-stage thermoelectric generator and that of the Segmented Thermoelectric Generator (STEG) is related to the hot and cold end temperature.
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考虑温度变化对余热利用材料影响的两级热电发电机优化与比较
热电技术作为一种低成本、无污染的发电解决方案,常被用于余热的回收利用。本文采用一维热传导模型,研究了恒温条件下两级热电发生器(TTEG)的温度分布。将得到的温度分布与TTEG的三维尺寸相结合,建立了基于微积分法的电阻和电压计算公式。当高温层和低温层中所有pn型热电臂的截面积总和一定时,利用本文提出的公式可以计算出高温层和低温层中单个pn型热电臂的最优截面积比,从而获得最大输出功率。结果还显示了pn型热电臂的高度与高低温层温度分布之间的关系。以PbTe为中温热电材料,Bi2Te3为低温热电材料,对具有相同总高度和相同总截面积的pn型热电材料进行了实例研究。理论计算结果表明,两级热电发电机与分段式热电发电机(STEG)的最大输出功率的大小与冷热端温度有关。
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CiteScore
0.80
自引率
0.00%
发文量
152
期刊介绍: The major goal of the Journal of Computational Methods in Sciences and Engineering (JCMSE) is the publication of new research results on computational methods in sciences and engineering. Common experience had taught us that computational methods originally developed in a given basic science, e.g. physics, can be of paramount importance to other neighboring sciences, e.g. chemistry, as well as to engineering or technology and, in turn, to society as a whole. This undoubtedly beneficial practice of interdisciplinary interactions will be continuously and systematically encouraged by the JCMSE.
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