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Experimental investigation of impacts of engine hardware, operating parameters and combustion performance on particulate emissions in a DISI engine

机译:发动机硬件,运行参数和燃烧性能对DISI发动机中颗粒物排放的影响的实验研究

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With increasing concern over ultrafine Particulate Matter (PM) emissions from Direct Injection Spark Ignition (DISI) engines and ever tightening emissions legislation, substantial research work is required to obtain a better understanding of influence of advanced engine technologies on particulate formation and oxidation. In this work, experimental investigation of engine-out particulate emissions were carried out on a single cylinder spray-guided DISI engine. With regard to effects of engine hardware on PM emissions; impacts of fuel spray angle, fuel flow rate and intake valves' lift and camshaft phasing were examined over a wide start of injection sweep window. Injector tests highlighted a complex relation between injector characteristics and engine operating parameters with PM emissions as a result of fuel impingement and poor mixture preparation. Valvetrain tests indicated some benefits from engine throttling by valve lift and intake camshaft phasing in particulate number concentration reduction at low load. This was associated with increased intake flow turbulence and improved mixture preparation. Number weighted particle size distribution was also affected by intake valve modes at low load. Nevertheless, at high load, impacts of variable valve lift and camshaft phasing on particulate number concentration and size distribution became negligible. Furthermore, combustion phase indicators were studied in order to probe impacts of combustion performance on PM emissions. While no satisfactory correlation of initial flame development with PM emissions was identified; shorter rapid-burning angles were observed with lower particulate number concentrations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随着人们越来越关注直接喷射火花点火(DISI)发动机的超细颗粒物(PM)排放以及日益严格的排放法规,需要进行大量的研究工作才能更好地理解先进的发动机技术对颗粒形成和氧化的影响。在这项工作中,对单缸喷雾引导DISI发动机进行了发动机排出的颗粒物排放的实验研究。关于发动机硬件对颗粒物排放的影响;在较宽的喷射扫掠窗口开始时,检查了燃油喷雾角度,燃油流量以及进气门升程和凸轮轴相位的影响。喷油器测试突出显示了喷油器特性与发动机运行参数之间的复杂关系,这是由于燃料撞击和不良的混合气制备导致的PM排放。气门机构测试表明,通过在低负荷下通过气门升程和进气凸轮轴定相来节流发动机,可减少颗粒物中的微粒浓度,从而带来一些好处。这与增加的进气流湍流和改进的混合物制备有关。在低负荷下,数字加权粒度分布也受到进气​​门模式的影响。然而,在高负载下,可变气门升程和凸轮轴相位对颗粒数浓度和尺寸分布的影响可以忽略不计。此外,研究了燃烧阶段指标,以探讨燃烧性能对颗粒物排放的影响。虽然未发现初始火焰发展与PM排放之间令人满意的关联;在较低的微粒数浓度下观察到较短的快速燃烧角。 (C)2016 Elsevier Ltd.保留所有权利。

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