首页> 外文期刊>International Journal of Automotive Technology >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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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

机译:汽油和LPG燃料对涡轮带直喷(DI)发动机的气体排放和颗粒发射特性的比较研究,取决于发动机控制参数

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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 similar to 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.
机译:为了满足温室气体(GHG)排放目标,汽车制造商应促进低碳排放技术,包括汽油直接注射(GDI)系统。然而,最近的研究表明,与端口燃料喷射(PFI)车辆相比,从GDI车辆发出过多的纳米颗粒。减少GDI发动机的纳米粒子排放的许多方法之一是使用替代燃料本研究使用涡轮增压2.0 L 4缸LPG直接喷射发动机(T-LPDI)从涡轮增压汽油直接注射发动机转换(T- GDI)具有专用的LPG燃油供应和控制系统。为了分析燃烧现象和纳米粒子排放,在发动机测功机试验下测量缸内压力和废气。另外,各种发动机控制参数被播放以了解对照参数对燃烧和纳米颗粒特性的影响。在本研究中,与T-GDI发动机相比,T-LPDI发动机分别表现出类似于CO 2和PN排放的9%和76%。通过优化基于参数研究的发动机参数,PN排放从T-LPDI发动机排放的基线提高了70%。

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