Design and simulation of a two- or four-stroke free-piston engine generator for range extender applications

Boru Jia, Andrew Smallbone*, Zhengxing Zuo, Huihua Feng, Anthony Paul Roskilly

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

100 引用 (Scopus)

摘要

Free-piston engines (FPEs) are known to have a greater thermal efficiency (40-50%) than an equivalent and more conventional four-stroke reciprocating engines (30-40%). Modern FPEs are proposed for the generation of electric and hydraulic power, with a potential application in hybrid electric vehicles. The numerous FPE configurations considered to date have almost exclusively operated using a two-stroke thermodynamic cycle to improve the thermal efficiency, however it is well known that the application of two-stoke cycles can be limited by noise and exhaust gas emissions constraints. In this article, a numerical model is used to investigate the techno-feasibility of operating Newcastle University's FPE prototype using a two- or four-stroke thermodynamic cycle. If operated as a four-stroke cycle, the linear generator must be used as both a motor and a generator resulting in a more irregular piston motion compared to corresponding operating in a two-stroke cycle. In four-stroke cycles, almost half the indicated power is consumed in overcoming the pumping losses of the motoring process. Whilst the heat release process is appears to be closer to a constant volume process when operated on two-stroke engine cycle, the peak cylinder pressure and compression ratio proved lower. In addition, a narrower power range is reported for a four-stroke cycle despite a corresponding higher thermal efficiency.

源语言英语
页(从-至)289-298
页数10
期刊Energy Conversion and Management
111
DOI
出版状态已出版 - 1 3月 2016

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