Exergetic analysis of an aircraft turbojet engine with an afterburner

Author:

Ehyaei M.A.1,Anjiridezfuli A.2,Rosen M.A.3

Affiliation:

1. Islamic Azad University, Pardis Branch, Pardis New City, Tehran, Iran

2. Islamic Azad University, Dezful Branch, Dezful City, Khuzestan, Iran

3. Faculty of Engineering and Applied Science, University of Ontario Institute of Technology, Simcoe Street North, Oshawa, Ontario, Canada

Abstract

An exergy analysis is reported of a J85-GE-21 turbojet engine and its components for two altitudes: sea level and 11,000 meters. The turbojet engine with afterburning operates on the Brayton cycle and includes six main parts: diffuser, compressor, combustion chamber, turbine, afterburner and nozzle. Aircraft data are utilized in the analysis with simulation data. The highest component exergy efficiency at sea level is observed to be for the compressor, at 96.7%, followed by the nozzle and turbine with exergy efficiencies of 93.7 and 92.3%, respectively. At both considered heights, reducing of engine intake air speed leads to a reduction in the exergy efficiencies of all engine components and overall engine. The exergy efficiency of the turbojet engine is found to decrease by 0.45% for every 1?C increase in inlet air temperature.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

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