Journal Article

·2010 OPEN ACCESS

Power and Efficiency Analysis of Brayton Cycles with Internal Irreversibility

Mustafa Atmaca , M. Gumus , Tamer Yılmaz YTU

Energy Sources Part A Recovery Utilization and Environmental Effects

Abstract

Abstract In this article, power and efficiency analysis of irreversible Brayton cycle, which is one of the well-known heat engine cycles by the undergraduates, are carried out based on alternative criteria. Power, power density, and efficient power optimizations are also realized and the thermal efficiencies of the cycle are determined at maximum power and efficiency outputs. The efficient power is relatively new criterion and defined as the multiplication of power by efficiency. Therefore, this criterion considers not only the power output but also the cycle efficiency. Maximizing the efficient power function gives a compromise between power and efficiency. The effects of the external irreversibilities on the performances are investigated for various cycle parameters.

Keywords

Brayton cycle Power (physics) Thermal efficiency Electrical efficiency Power density Heat engine Control theory (sociology) Computer science Thermodynamics Automotive engineering Engineering Physics Chemistry

Subject Areas

Advanced Thermodynamics and Statistical Mechanics ·Statistical and Nonlinear Physics ·Physical Sciences
Advanced Thermodynamic Systems and Engines ·Mechanical Engineering ·Physical Sciences
Field-Flow Fractionation Techniques ·Computational Mechanics ·Physical Sciences

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