首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effect of Premixed Fuel Preparation for Partially Premixed Combustion With a Low Octane Gasoline on a Light-Duty Multicylinder Compression Ignition Engine
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Effect of Premixed Fuel Preparation for Partially Premixed Combustion With a Low Octane Gasoline on a Light-Duty Multicylinder Compression Ignition Engine

机译:低辛烷值汽油部分预混燃烧的预混燃料制备对轻型多缸压缩点火发动机的影响

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摘要

Gasoline compression ignition (GCI) concepts with the majority of the fuel being introduced early in the cycle are known as partially premixed combustion (PPC). Previous research on single- and multicylinder engines has shown that PPC has the potential for high thermal efficiency with low NO_x and soot emissions. A variety of fuel injection strategies have been proposed in the literature. These injection strategies aim to create a partially stratified charge to simultaneously reduce NO_x and soot emissions while maintaining some level of control over the combustion process through the fuel delivery system. The impact of the direct injection (DI) strategy to create a premixed charge of fuel and air has not previously been explored, and its impact on engine efficiency and emissions is not well understood. This paper explores the effect of sweeping the direct injected pilot timing from -91 deg to -324 deg ATDC, which is just after the exhaust valve closes (EVCs) for the engine used in this study. During the sweep, the pilot injection consistently contained 65% of the total fuel (based on command duration ratio), and the main injection timing was adjusted slightly to maintain combustion phasing near top dead center. A modern four cylinder, 1.91 diesel engine with a variable geometry turbo-charger (VGT), high pressure common rail injection system, wide included angle injectors, and variable swirl actuations was used in this study. The pistons were modified to an open bowl configuration suitable for highly premixed combustion modes. The stock diesel injection system was unmodified, and the gasoline fuel was doped with a lubricity additive to protect the high pressure fuel pump and the injectors. The study was conducted at a fixed speed/load condition of 2000 rpm and 4.0 bar brake mean effective pressure (BMEP). The pilot injection timing sweep was conducted at different intake manifold pressures, swirl levels, and fuel injection pressures. The gasoline used in this study has relatively high fuel reactivity with a research octane number of 68. The results of this experimental campaign indicate that the highest brake thermal efficiency (BTE) and lowest emissions are achieved simultaneously with the earliest pilot injection timings (i.e., during the intake stroke).
机译:汽油压缩点火(GCI)的概念被认为是部分预混燃烧(PPC),其中大部分燃料在循环的早期被引入。先前对单缸和多缸发动机的研究表明,PPC具有在降低NO_x和烟尘排放的同时提高热效率的潜力。文献中已经提出了多种燃料喷射策略。这些喷射策略旨在产生部分分层的装料,以同时减少NO_x和烟灰排放,同时通过燃料输送系统对燃烧过程保持一定程度的控制。以前尚未研究过直接喷射(DI)策略产生的燃料和空气的预混合装料的影响,并且它对发动机效率和排放的影响尚不清楚。本文探讨了将直接喷射的先导正时从-91度ATDC扫描到-324度ATDC的效果,这正是本研究中所用发动机的排气门关闭(EVC)之后。在扫气期间,引燃喷射始终占总燃料的65%(基于命令持续时间比率),并且对主喷射正时进行了些微调整,以将燃烧定相保持在上止点附近。在这项研究中,使用了具有可变几何涡轮增压器(VGT)的现代四缸,1.91柴油发动机,高压共轨喷射系统,大角度喷射器和可变涡流致动。活塞被修改为适合于高度预混合燃烧模式的开放式碗形配置。未更改库存柴油喷射系统,并在汽油中添加了润滑添加剂,以保护高压燃油泵和喷射器。该研究在2000 rpm的固定速度/负载条件和4.0 bar制动平均有效压力(BMEP)下进行。先导喷射正时扫描是在不同的进气歧管压力,涡旋水平和燃料喷射压力下进行的。本研究中使用的汽油具有相对较高的燃料反应性,研究辛烷值为68。该实验活动的结果表明,与最早的引燃喷射正时(即,在进气冲程中)。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第11期|111506.1-111506.12|共12页
  • 作者单位

    Oak Ridge National Laboratory, Fuels, Engines, and Emissions Research Center, National Transportation Research Center, 2360 Cherahala Boulevard, Knoxville, TN 37932;

    Oak Ridge National Laboratory, Fuels, Engines, and Emissions Research Center, National Transportation Research Center, 2360 Cherahala Boulevard, Knoxville, TN 37932;

    Oak Ridge National Laboratory, Fuels, Engines, and Emissions Research Center, National Transportation Research Center, 2360 Cherahala Boulevard, Knoxville, TN 37932;

    Chevron Energy Technology Company, 6001 Bollinger Canyon Road, San Ramon, CA 94583;

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