Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator

The free-piston engine generator is a new power machinery, which removes the crank-shaft mechanism. This article aims to study the impact of different injection rate shapes (left triangle, rectangle, and right triangle) on the free-piston engine generator spray and combustion characteristics. An ite...

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Main Authors: Cuijie Han, Chenheng Yuan, Yituan He, Yang Liu
Format: Article
Language:English
Published: SAGE Publishing 2018-05-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814018775242
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spelling doaj-69ede5116dd14622baaf093d6c3e42cf2020-11-25T03:32:33ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402018-05-011010.1177/1687814018775242Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generatorCuijie HanChenheng YuanYituan HeYang LiuThe free-piston engine generator is a new power machinery, which removes the crank-shaft mechanism. This article aims to study the impact of different injection rate shapes (left triangle, rectangle, and right triangle) on the free-piston engine generator spray and combustion characteristics. An iteration numerical model was established and validated by experiment. The results reveal that there is a positive correlation between injection rate and evaporation rate, and the faster evaporation rate is more conducive to total evaporated fuel mass. The left triangle and rectangle injection modes have the better level of atomization and mixing in the early injection due to stronger turbulent kinetic energy, longer penetration, and smaller Sauter mean diameter, while the right triangle has opposite results, which impairs the mixture formation, and its higher injection pressure in the late injection duration causes more impinged fuel mass. Moreover, the temperature, pressure, peak heat release rate, and indicated thermal efficiency for the left triangle are greater than the other two injection modes. Therefore, for the free-piston engine generator, faster injection rate in the early injection stage enables to improve the fuel evaporation, atomization, and mixing processes, meanwhile enhances the level of isochoric heat release around top dead center, resulting in higher indicated thermal efficiency.https://doi.org/10.1177/1687814018775242
collection DOAJ
language English
format Article
sources DOAJ
author Cuijie Han
Chenheng Yuan
Yituan He
Yang Liu
spellingShingle Cuijie Han
Chenheng Yuan
Yituan He
Yang Liu
Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
Advances in Mechanical Engineering
author_facet Cuijie Han
Chenheng Yuan
Yituan He
Yang Liu
author_sort Cuijie Han
title Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
title_short Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
title_full Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
title_fullStr Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
title_full_unstemmed Effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
title_sort effect of fuel injection rate shapes on mixture formation and combustion characteristic in a free-piston diesel engine generator
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2018-05-01
description The free-piston engine generator is a new power machinery, which removes the crank-shaft mechanism. This article aims to study the impact of different injection rate shapes (left triangle, rectangle, and right triangle) on the free-piston engine generator spray and combustion characteristics. An iteration numerical model was established and validated by experiment. The results reveal that there is a positive correlation between injection rate and evaporation rate, and the faster evaporation rate is more conducive to total evaporated fuel mass. The left triangle and rectangle injection modes have the better level of atomization and mixing in the early injection due to stronger turbulent kinetic energy, longer penetration, and smaller Sauter mean diameter, while the right triangle has opposite results, which impairs the mixture formation, and its higher injection pressure in the late injection duration causes more impinged fuel mass. Moreover, the temperature, pressure, peak heat release rate, and indicated thermal efficiency for the left triangle are greater than the other two injection modes. Therefore, for the free-piston engine generator, faster injection rate in the early injection stage enables to improve the fuel evaporation, atomization, and mixing processes, meanwhile enhances the level of isochoric heat release around top dead center, resulting in higher indicated thermal efficiency.
url https://doi.org/10.1177/1687814018775242
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AT chenhengyuan effectoffuelinjectionrateshapesonmixtureformationandcombustioncharacteristicinafreepistondieselenginegenerator
AT yituanhe effectoffuelinjectionrateshapesonmixtureformationandcombustioncharacteristicinafreepistondieselenginegenerator
AT yangliu effectoffuelinjectionrateshapesonmixtureformationandcombustioncharacteristicinafreepistondieselenginegenerator
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