Performance analysis of thermoelectric generator by using lead telluride, perovskites, skutterudites and tetrahedrites

P. Mane, Deepali Atheaya
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引用次数: 1

Abstract

In this research paper performance analysis of thermoelectric generator by using lead telluride, perovskites, skutterudites and tetrahedrites has been proposed. The performance of thermoelectric materials and thermoelectric modules has been calculated. These thermoelectric materials were combined to make thermoelectric couple which will be used in thermoelectric generator. The performance analysis of these thermoelectric couples were simulated on COMSOL Multiphysics 5.2 software. The results indicated that Pb1-xMgxTe0.8Se0.2 and n-type PbTe, Pb1-xMgxTe0.8Se0.2 and CoSb3-xTex, Pb1-xMgxTe0.8Se0.2 and CaMn0.98Nb0.02O3, Cu12Sb4S13 and CoSb3-xTex indicated higher efficiency than other thermoelectric couples. The proposed system can be utilized for varied range of applications for waste heat recovery and renewable power generation in automotive, industrial, power plants and space sector at an excellent efficiency and lower cost.
碲化铅、钙钛矿、角钛矿和四面体热电发电机的性能分析
本文对碲化铅、钙钛矿、角钨矿和四面体热电发电机的性能进行了分析。计算了热电材料和热电模块的性能。将这些热电材料复合制成热电偶,用于热电发电机。利用COMSOL Multiphysics 5.2软件对热电偶进行了性能仿真分析。结果表明,Pb1-xMgxTe0.8Se0.2与n型PbTe、Pb1-xMgxTe0.8Se0.2与CoSb3-xTex、Pb1-xMgxTe0.8Se0.2与CaMn0.98Nb0.02O3、Cu12Sb4S13与CoSb3-xTex的效率均高于其他热电偶。该系统可广泛应用于汽车、工业、发电厂和航天领域的废热回收和可再生能源发电,效率高,成本低。
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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