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Efficiency of a Miller engine
Authors:A. Al-Sarkhi  J.O. Jaber  S.D. Probert
Affiliation:1. Department of Mechanical Engineering, Hashemite University, Zarqa 13115, Jordan;2. School of Engineering, Cranfield University, Bedford MK43 0AL, UK
Abstract:Using finite-time thermodynamics, the relations between thermal efficiency, compression and expansion ratios for an ideal naturally-aspirated (air-standard) Miller cycle have been derived. The effect of the temperature-dependent specific heat of the working fluid on the irreversible cycle performance is significant. The conclusions of this investigation are of importance when considering the designs of actual Miller-engines.
Keywords:Finite-time thermodynamics   Miller cycle   Heat resistance   Friction   Temperature-dependent specific-heat
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