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Effect of piston profile on performance and emission characteristics of a GDI engine with split injection strategy - A CFD study
Yashas Karaya,
Published in Institute of Physics Publishing
2017
Volume: 243
   
Issue: 1
Abstract
Gasoline direct injection (GDI) engines have gained popularity in the recent times because of lower fuel consumption and exhaust emissions. But in these engines, the mixture preparation plays an important role which affects combustion, performance and emission characteristics. The mixture preparation in turn depends mainly upon combustion chamber geometry. Therefore, in this study, an attempt has been made to understand the effect of piston profile on the performance and emission characteristics in a GDI engine. The analysis is carried out on a four-stroke wall guided GDI engine using computational fluid dynamics (CFD). The spray breakup model used is validated with the available experimental results from the literature to the extent possible. The analysis is carried out for four piston profiles viz., offset pentroof with offset bowl (OPOB), flat piston with offset bowl (FPOB), offset pentroof with offset scoop (OPOS) and inclined piston with offset bowl (IPOB) fitted in an engine equipped with a six-hole injector with the split injection ratio of 30:70. All the CFD simulations are carried out at the engine speed of 2000 rev/min., with the overall equivalence ratio of about 0.65±0.05. The performance and emission characteristics of the engine are compared while using the above piston profiles. It is found that, the OPOB piston is preferred compared to that of the other pistons because it has better in-cylinder flow, IMEP and lower HC emissions compared to that of other pistons. © Published under licence by IOP Publishing Ltd.
About the journal
JournalIOP Conference Series: Materials Science and Engineering
PublisherInstitute of Physics Publishing
ISSN17578981
Open AccessYes
Concepts (20)
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    Combustion chambers
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    Diesel engines
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    Direct injection
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    Dynamics
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    Engine pistons
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    Engines
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    FLUID DYNAMICS
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    Fuel injection
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    Industrial research
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    Mixtures
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    Pistons
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    Equivalence ratios
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    Exhaust emission
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    GASOLINE DIRECT INJECTION ENGINES
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    IN-CYLINDER FLOWS
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    MIXTURE PREPARATIONS
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    Performance and emissions
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    PISTON PROFILES
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    Split injection strategy
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    Computational fluid dynamics