汽油
火花点火发动机
活塞(光学)
发动机效率
环境科学
汽车工程
自然吸气发动机
汽油直喷
汽化
燃烧
平均有效压力
发动机爆震
辛烷值
燃油喷射
汽油机
内燃机
材料科学
核工程
均质压燃
燃烧室
废气再循环
化学
废物管理
工程类
压缩比
物理
有机化学
波前
光学
作者
Xin He,Matthew A. Ratcliff,Bradley T. Zigler
出处
期刊:Energy & Fuels
[American Chemical Society]
日期:2012-03-05
卷期号:26 (4): 2014-2027
被引量:155
摘要
A single-cylinder, wall-guided, spark ignition direct injection engine was used to study the impact of engine operating parameters on engine-out particle number (PN) emissions. Experiments were conducted with certification gasoline and a splash blend of 20% fuel grade ethanol in gasoline (E20), at four steady-state engine operating conditions. Independent engine control parameter sweeps were conducted including start of injection, injection pressure, spark timing, exhaust cam phasing, intake cam phasing, and air–fuel ratio. The results show that fuel injection timing is the dominant factor impacting PN emissions from this wall-guided gasoline direct injection engine. The major factor causing high PN emissions is fuel liquid impingement on the piston bowl. By avoiding fuel impingement, more than an order of magnitude reduction in PN emission was observed. Increasing fuel injection pressure reduces PN emissions because of smaller fuel droplet size and faster fuel–air mixing. PN emissions are insensitive to cam phasing and spark timing, especially at high engine load. Cold engine conditions produce higher PN emissions than hot engine conditions due to slower fuel vaporization and thus less fuel–air homogeneity during the combustion process. E20 produces lower PN emissions at low and medium loads if fuel liquid impingement on piston bowl is avoided. At high load or if there is fuel liquid impingement on piston bowl and/or cylinder wall, E20 tends to produce higher PN emissions. This is probably a function of the higher heat of vaporization of ethanol, which slows the vaporization of other fuel components from surfaces and may create local fuel-rich combustion or even pool-fires.
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