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This paper presents a power density analysis and multi-objective optimization of an irreversible Otto cycle, aiming to improve its efficiency and power output.

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Abstract

Key findings

  • The irreversible Otto cycle's efficiency is significantly lower than the reversible cycle due to heat transfer and friction losses.
  • A multi-objective optimization approach is proposed to maximize power density and efficiency simultaneously.
  • The optimized cycle parameters show a 15% increase in power density and a 12% improvement in efficiency compared to the baseline cycle.

Keywords

Power (physics)

Identifiers

Journal
SCIENTIA SINICA Technologica
Year
2022