PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2024

Exergy assessment comparison of conventional and hybrid-electric aircraft propulsion systems

Authors

Affonso, Walter
Gandolfi, Ricardo
de Oliveira, Silvio

Journal of the Brazilian Society of Mechanical Sciences and Engineering , vol. 46 , no. 12 , Article 712

ISSN: 16785878

2
Citations
4
Authors

Abstract

© The Author(s), under exclusive licence to The Brazilian Society of Mechanical Sciences and Engineering 2024.The purpose of this research is to develop an exergy-based method to evaluate and compare different aircraft propulsion systems architectures to assist the design engineer at the early stages of product development. The method was successfully applied to a case study comprised of a baseline regional aircraft powered by gas turbines, which was compared to a hybrid-electric propulsion (HEP) version comprised of the gas turbines hybridized with batteries. The highest exergy efficiency of 33.5% was obtained for a configuration that presented a 5% degree of hybridization (DOH), defined as “power coming from batteries divided by total power”, and 800Wh/kg battery density. This corresponds to an increase of 0.7% when compared to the 32.8% efficiency of the baseline gas turbine. On the other hand, the aircraft total weight increased 2,160 kg, or 7.1%. Also, both the exergy consumption and exergy destruction increased with hybridization. For the flight mission, a remarkable increase of 2% to 7% was obtained for these parameters, as hybridization increased from 5% to 15%. On top of that, the HEP configuration saves 23 kg of jet fuel or 1% of fuel burn along the mission in comparison with the baseline. CO2 emissions reduction was around 70 kg per flight mission, as expected, since emissions increase proportionately with fuel consumption. Exergy-based emission costs and exergy destroyed in the kerosene refinery plant and in the electric power generation plant were also evaluated. Finally, some possible means to re-use the exergy lost in the aircraft propulsion system were presented and discussed.

Keywords

Aircraft design Emissions Exergy analysis Hybrid electric Propulsion

Automotive Engineering (ENGI) Aerospace Engineering (ENGI) Engineering (all) (ENGI) Mechanical Engineering (ENGI) Industrial and Manufacturing Engineering (ENGI) Applied Mathematics (MATH)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-85209750683