Publication: Performance analysis and optimization of irreversible Dual-Atkinson cycle engine (DACE) with heat transfer effects under maximum power and maximum power density conditions
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ELSEVIER SCIENCE INC
DOI
10.1016/j.apm.2016.02.010
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Abstract
This study presents an analysis considering the effects of heat transfer loss and internal irreversibility due to adiabatic compression and expansion processes on the performance of an irreversible Dual-Atkinson cycle engine (DACE) under non-dimensional maximum power (MP), non-dimensional maximum power density (MPD) and maximum thermal efficiency (MEF) conditions. The effects of the inlet temperature, combustion constant and heat transfer constant on the engine performance are investigated. The results could be used by engine designers to optimize the performance of the internal combustion engines (ICEs). (C) 2016 Elsevier Inc. All rights reserved.
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APPLIED MATHEMATICAL MODELLING
ISSN
0307-904X
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Keywords
Dual-Atkinson cycle engine , Mathematical modeling , Performance optimization , Thermodynamic analysis , Combustion , Heat transfer loss , VARIABLE SPECIFIC-HEATS , INJECTED DIESEL-ENGINE , AIR-STANDARD ATKINSON , MILLER CYCLE , THERMODYNAMIC PERFORMANCE , WORKING FLUID , EFFICIENCY , FRICTION , PARAMETERS , DESIGN , Engineering , Mathematics , Mechanics