首页> 外文会议>ASME Internal Combustion Engine Division technical conference >LEAN HCCI / RICH SACI GASOLINE COMBUSTION CYCLING AND THREE-WAY CATALYST FOR FUEL EFFICIENCY AND NO_x REDUCTION
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LEAN HCCI / RICH SACI GASOLINE COMBUSTION CYCLING AND THREE-WAY CATALYST FOR FUEL EFFICIENCY AND NO_x REDUCTION

机译:稀HCCI / RICH SACI汽油燃烧循环和三元催化剂的燃料效率和NO_x还原

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Multi-mode combustion (MMC) concepts using homogeneous charge compression ignition (HCCI) gasoline combustion at low loads and spark assisted compression ignition (SACI) gasoline combustion at medium loads have the potential for improved fuel efficiency relative to spark ignition (SI) gasoline combustion. Two MMC concepts are compared in this paper with respect to fuel efficiency and tailpipe NO_x emissions. The first concept uses stoichiometric HCCI and SACI to allow standard three-way catalyst (TWC) operation. The second concept also uses HCCI and SACI, but cycles between lean and rich combustion and uses a TWC with increased oxygen storage capacity (OSC) for potentially even greater fuel efficiency improvement. This paper performs a preliminary comparison of the two MMC concepts by analyzing two scenarios: 1) cycling between stoichiometric HCCI at 2 bar BMEP (brake mean effective pressure) and stoichiometric SACI at 3 bar BMEP, and 2) cycling between lean HCCI at 2 bar BMEP and rich SACI at 3 bar BMEP. The effects of excess oxygen ratio during HCCI operation and the frequency of oxygen depletion events on TWC performance and fuel efficiency are investigated. Results show that MMC lean/rich cycling can achieve better fuel efficiency than stoichiometric HCCI/SACI cycling. NO_x emissions are moderately higher, but may still be low enough to meet current and future emission regulations.
机译:在低负荷下使用均质充量压缩点火(HCCI)汽油燃烧以及在中等负荷下使用火花辅助压缩点火(SACI)汽油燃烧的多模式燃烧(MMC)概念相对于火花点火(SI)汽油燃烧具有提高燃油效率的潜力。本文就燃油效率和尾管NO_x排放量比较了两种MMC概念。第一个概念使用化学计量的HCCI和SACI来允许标准的三元催化器(TWC)操作。第二个概念也使用HCCI和SACI,但是在稀薄燃烧和浓燃烧之间循环,并使用具有增加的氧气存储容量(OSC)的TWC,以可能进一步提高燃油效率。本文通过分析以下两种情况对两种MMC概念进行了初步比较:1)在2 bar BMEP(制动平均有效压力)和化学计量SACI在3 bar BMEP的化学计量HCCI之间循环,以及2)在2 bar的稀HCCI之间的循环BMEP和3 bar BMEP的丰富SACI。研究了HCCI操作过程中过量氧气比率以及氧气消耗事件的频率对TWC性能和燃油效率的影响。结果表明,MMC稀/富循环比化学计量HCCI / SACI循环可实现更好的燃油效率。 NO_x排放适度较高,但仍可能足够低,无法满足当前和将来的排放法规。

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