KANIKA AGGARWAL, VIGIL M UNNITHAN
Electricity is paramount for human life and industries, yet the existing energy supply is inadequate. This paper proposes a solution focusing on energy conservation through the recovery of waste heat from internal combustion engines. The objective is to generate power using waste heat, which can subsequently charge batteries and lower fuel consumption while enhancing battery lifespan. The study employs ANSYS for the design and analysis of Thermoelectric Generators (TEGs), evaluating their efficiency and heat transfer properties. The findings reveal various factors affecting TEG efficiency and reinforce the importance of waste heat recovery in addressing energy shortages. Additionally, the research underscores the environmental benefits of reducing heat emissions into the atmosphere. Overall, the work contributes to the practical application of waste heat recovery methods in automotive applications, suggesting a viable path toward more sustainable energy utilization.
@article{29156b3c-8806-4f50-969c-1d00fc9548c4,
title={EXPERIMENTAL DESIGN ANALYSIS OF ELECTRIC},
author={KANIKA AGGARWAL and VIGIL M UNNITHAN},
year={2026},
language={en}
}TY - JOUR TI - EXPERIMENTAL DESIGN ANALYSIS OF ELECTRIC AU - KANIKA AGGARWAL AU - VIGIL M UNNITHAN PY - 2026 LA - en ER -
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