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Performance Analysis of the Automotive TEG with Respect to the Geometry of the Modules

Authors :
Chuqi Su
C. G. Yu
Y. D. Deng
S. J. Zheng
Yiping Wang
Source :
Journal of Electronic Materials. 46:2886-2893
Publication Year :
2016
Publisher :
Springer Science and Business Media LLC, 2016.

Abstract

Recently there has been increasing interest in applying thermoelectric technology to recover waste heat in automotive exhaust gas. Due to the limited space in the vehicle, it’s meaningful to improve the TEG (thermoelectric generator) performance by optimizing the module geometry. This paper analyzes the performance of bismuth telluride modules for two criteria (power density and power output per area), and researches the relationship between the performance and the geometry of the modules. A geometry factor is defined for the thermoelectric element to describe the module geometry, and a mathematical model is set up to study the effects of the module geometry on its performance. It has been found out that the optimal geometry factors for maximum output power, power density and power output per unit area are different, and the value of the optimal geometry factors will be affected by the volume of the thermoelectric material and the thermal input. The results can be referred to as the basis for optimizing the performance of the thermoelectric modules.

Details

ISSN :
1543186X and 03615235
Volume :
46
Database :
OpenAIRE
Journal :
Journal of Electronic Materials
Accession number :
edsair.doi...........844cd5f3900236245e599ce05f7802db