Thermodynamic Analysis of TEG-TEC Device Including Influence of Thomson Effect

Author:

Feng Yuanli,Chen Lingen,Meng Fankai,Sun Fengrui

Abstract

AbstractA thermodynamic model of a thermoelectric cooler driven by thermoelectric generator (TEG-TEC) device is established considering Thomson effect. The performance is analyzed and optimized using numerical calculation based on non-equilibrium thermodynamic theory. The influence characteristics of Thomson effect on the optimal performance and variable selection are investigated by comparing the condition with and without Thomson effect. The results show that Thomson effect degrades the performance of TEG-TEC device, it decreases the cooling capacity by 27 %, decreases the coefficient of performance (COP) by 19 %, decreases the maximum cooling temperature difference by 11 % when the ratio of thermoelectric elements number is 0.6, the cold junction temperature of thermoelectric cooler (TEC) is 285 K and the hot junction temperature of thermoelectric generator (TEG) is 450 K. Thomson effect degrades the optimal performance of TEG-TEC device, it decreases the maximum cooling capacity by 28 % and decreases the maximum COP by 28 % under the same junction temperatures. Thomson effect narrows the optimal variable range and optimal working range. In the design of the devices, limited-number thermoelectric elements should be more allocated appropriately to TEG when consider Thomson effect. The results may provide some guidelines for the design of TEG-TEC devices.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy,General Chemistry

Reference62 articles.

1. On a Mechanical theory of thermo-electric currents;Proc. Royal Soc. Edinburgh,1857

2. Optimum design on the performance parameters of a two-stage combined semiconductor thermoelectric heat pump;Semiconductor Sci. Technol.,2003

3. Thermodynamic analyses and optimization for thermoelectric devices: The state of the arts;Sci. China: Technol. Sci.,2016

4. Multiobjective analyses of physical dimension on the performance of a TEG–TEC system;Int. J. Low-Carbon Technol.,2010

5. Optimization of thermoelectric cooling technology for an active cooling of photovoltaic panel;Renewable Sustainable Energy Rev.,2017

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