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January 23, 20260 citationsOpen Access

Investigation on Thermoelectric Device Performance by modeling and simulations

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YFYeşildal Faruk

Key Points

  • The research aims to assess the performance of thermoelectric devices using simulations to understand key factors affecting efficiency.
  • Utilized COMSOL Multiphysics for simulations
  • Applied finite element analysis for heat and energy transfer modeling
  • Examined copper thermocouples with composite materials
  • Considered surface temperature, electric potential difference, and iso-surface temperature in models
  • Performance of thermoelectric legs evaluated across mm and nm scales
  • Identified that electric and thermal conductivity, along with Seebeck values, affect device performance
  • Highlighted challenges in integrating copper thermocouples with composite materials

Abstract

This study investigates the performance of thermoelectric devices, specifically thermoelectric legs (TML), by using COMSOL Multiphysics simulations. Copper thermocouples having copper composite materials are investigated. The research uses finite element analysis to model heat and electric energy transfer within the thermoelectric system by considering whole surface temperature, electric potential difference, and iso-surface temperature. Simulation results indicate that the performance of TMLs in both mm and nm scales can be evaluated through the electric conductivity, thermal conductivity, and Seebeck values. The study explores impacts of composite material properties on thermoelectric device efficiency and highlights key challenges related to copper thermocouple integration and the complex behaviour of copper composite materials. This approach provides valuable insights for design of more efficient thermoelectric devices and addresses common issues encountered in experimental performance analysis.

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Cite This Study

Yeşildal Faruk (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f23chttps://doi.org/10.5281/zenodo.18324164
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