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Application of bioethanol to advanced Cl engines; dual fuel and RCCI combustion modes - a review

机译:生物乙醇在高级CL发动机中的应用;双重燃料和RCCI燃烧模式 - 评论

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This review will be concentrated on the application of bioethanol to advanced CI engines. Among the several advanced CI engines, dual fuel combustion and RCCI engine are selected to discuss. In the dual fuel combustion with ethanol and diesel, fumigation and dual injection are only discussed. Most studies have shown that the main challenge in using bioethanol in DF mode is the considerable increase of HC and CO emissions, particularly at low load operating conditions. In DF combustion, it is clear from experimental and computational works than the PRR is significantly reduced by introducing the split injection, resulting in the decrease of knock intensity. In addition, diesel post injection or double injection as same as split injection was suggested to reduce HC and CO emissions. DF combustion with ethanol and diesel can be operated from low to high loads (0.2-1.95 MPa IMEP), particularly up to 2.2 MPa IMEP with E85, with very low NOx and soot emissions. The researches on the DF combustion adopted wet ethanol PFI and biodiesel produced from the inedible vegetable oils DI are required in the future. In RCCI combustion, double injection fueling strategy is the most commonly adopted for the diesel injection. It is composed of the early pilot at 60 CAD bTDC to raise the reactivity in the squish region and the second main injection at around 25-30 CAD bTDC to ignite the cylinder charge. The premixed ratios for RCCI with single injection and double injection were studied up to 80%, and 90%, respectively.
机译:本综述将集中在生物乙醇中的应用到高级CI发动机。在若干先进的CI发动机中,选择双燃料燃烧和RCCI发动机讨论。在与乙醇和柴油的双燃料燃烧中,仅讨论熏蒸和双注射。大多数研究表明,在DF模式下使用生物乙醇的主要挑战是HC和CO排放的相当大增加,特别是在低负荷操作条件下。在DF燃烧中,通过引入分流注入,实验和计算作品明显,从而显着降低了PRR,导致爆震强度降低。此外,提出了与分裂注射一样相同的柴油后注射或双注射,以减少HC和CO排放。与乙醇和柴油的DF燃烧可从低载荷(0.2-1.95MPa)操作(0.2-1.95MPa),特别是高达2.2MPa的E85,NOx和烟灰排放非常低。未来需要对DF燃烧采用湿乙醇PFI和生物柴油的研究。在RCCI燃烧中,双注射燃料策略是柴油注射最常采用的。它由60 CAD BTDC的早期导频组成,以提高鳞状区域的反应性,并在25-30Cad BTDC左右提高第二主喷射,以点燃汽缸电荷。研究了具有单注射和双注射的RCCI的预混合比率分别为80%和90%。

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