Journal Article

·2017 OPEN ACCESS

Performance Analysis of an Atkinson Cycle Engine under Effective Power and Effective Power Density Conditions

Güven Gonca YTU

Acta Physica Polonica A

Abstract

This study presents performance optimization of an Atkinson cycle engine using criteria named as effective power and effective power density conditions. The effects of design and operating parameters such as compression ratio, cycle pressure ratio, cycle temperature ratio, equivalence ratio, bore/stroke ratio, inlet temperature, inlet pressure, engine speed, friction coefficient, mean piston speed and stroke length, on the performance characteristics have been examined. Moreover, the energy losses have been determined as fuel energy and they have been classified as incomplete combustion losses, friction losses, heat transfer losses, and exhaust output losses. Realistic values of specific heats have been used depending on temperature of working fluid. The results of the study can be assessed as an engineering tool by the Atkinson cycle engine designers.

Keywords

Power density Power (physics) Environmental science Materials science Physics Thermodynamics

Subject Areas

Advanced Thermodynamic Systems and Engines ·Mechanical Engineering ·Physical Sciences
Advanced Aircraft Design and Technologies ·Global and Planetary Change ·Physical Sciences
Thermodynamic and Exergetic Analyses of Power and Cooling Systems ·Mechanical Engineering ·Physical Sciences

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