Comparative Investigation of Gaseous Emissions and Particle Emission Characteristics from Turbo-Charged Direct Injection (DI) Engine with Gasoline and LPG Fuel Depending on Engine Control Parameters
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作者:
Seungho Ahn
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机构:Korea University,School of Mechanical Engineering
Seungho Ahn
Jaeho Cho
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机构:Korea University,School of Mechanical Engineering
Jaeho Cho
Sungha Baek
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机构:Korea University,School of Mechanical Engineering
Sungha Baek
Kangjin Kim
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机构:Korea University,School of Mechanical Engineering
Kangjin Kim
Jinyoung Ko
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机构:Korea University,School of Mechanical Engineering
Jinyoung Ko
Cha-Lee Myung
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机构:Korea University,School of Mechanical Engineering
Cha-Lee Myung
Simsoo Park
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机构:Korea University,School of Mechanical Engineering
Simsoo Park
机构:
[1] Korea University,School of Mechanical Engineering
Turbo-charged gasoline direct injection;
Alternative fuel;
Liquified petrolum gas;
Particulate matter;
Gaseous emissions;
Engine dynamometer;
Engine control parameter;
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摘要:
To meet greenhouse gas (GHG) emission target, automotive manufacturers should promote low carbon emission technology, including gasoline direct injection (GDI) systems. However, recent studies have shown that excessive levels of nanoparticles were emitted from GDI vehicles compared to port fuel injection (PFI) vehicles. One of the many ways to decrease nanoparticle emissions from GDI engine is to use alternative fuel This study used turbo charged 2.0 L 4-cylinder LPG direct injection engine (T-LPDi) that was converted from a turbo charged gasoline direct injection engine (T-GDI) with dedicated LPG fuel supply and control system. To analysis on combustion phenomena and nanoparticle emissions, in-cylinder pressure and exhaust gas were measured under engine dynamometer test. Additionally, various engine control parameters were swung to understand the effects of the control parameters on combustion and nanoparticle characteristics. Throughout this study, T-LPDi engine, compared to T-GDI engine, showed ∼ 9 % and 76 % reduction of CO2 and PN emissions respectively. By optimizing engine parameters based on parametric study, PN emissions were improved 70 % from the baseline of T-LPDi engine emissions.
机构:
Department of Mechanical Engineering, College of Technology and Engineering, Udaipur, RajasthanDepartment of Mechanical Engineering, College of Technology and Engineering, Udaipur, Rajasthan
Salvi B.L.
Jindal S.
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Department of Mechanical Engineering, College of Technology and Engineering, Udaipur, RajasthanDepartment of Mechanical Engineering, College of Technology and Engineering, Udaipur, Rajasthan