z-logo
Premium
Geometric optimization of thermoelectric generator using genetic algorithm considering contact resistance and Thomson effect
Author(s) -
Yusuf Aminu,
Bayhan Nevra,
Ibrahim Abdullahi A.,
Tiryaki Hasan,
Ballikaya Sedat
Publication year - 2021
Publication title -
international journal of energy research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.808
H-Index - 95
eISSN - 1099-114X
pISSN - 0363-907X
DOI - 10.1002/er.6467
Subject(s) - thermoelectric effect , thermoelectric generator , genetic algorithm , generator (circuit theory) , contact resistance , algorithm , materials science , computer science , mathematical optimization , mathematics , physics , nanotechnology , thermodynamics , power (physics) , layer (electronics)
Summary Contact resistance and Thomson heat are the two major factors in the analysis of thermoelectric modules that are often being ignored. Each of these factors has an adverse effect on the output performance of a thermoelectric module. In this study, expression for maximum power output that includes both the contact resistance and the Thomson effect has been optimized using genetic algorithm to obtain the optimum geometric parameters of a thermoelectric generator. Each leg has electrical and thermal contact resistances of 2 × 10 −9 Ω m 2 and 1.8 × 10 −4 m 2 K/W, respectively. The results of the optimization for the maximum power output and the energy conversion efficiency for Skutterudites thermoelectric materials operating at a maximum temperature difference of 500 K are 30.1 W and 9.87%, respectively. When only the contact resistances are not included, the results rise by 19.4% for the maximum power output and 11.65% for the energy conversion efficiency. When only the Thomson heat is not included, the result rise by 2.66% for the maximum power output and 5.67% for the energy conversion efficiency. These two factors should always be considered in the analysis of thermoelectric modules, neglecting them can lead to an overestimation of the output performance.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom