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首页> 外文期刊>Energy >Effects of 2,5-dimethylfuran fuel properties coupling with EGR (exhaust gas recirculation) on combustion and emission characteristics in common-rail diesel engines
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Effects of 2,5-dimethylfuran fuel properties coupling with EGR (exhaust gas recirculation) on combustion and emission characteristics in common-rail diesel engines

机译:2,5-二甲基呋喃燃料特性与EGR(废气再循环)耦合对共轨柴油发动机燃烧和排放特性的影响

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The effects of DMF (2,5-dimethylfuran) fuel properties combined with EGR (exhaust gas recirculation), CA50, EHN (2-Ethylhexyl nitrate) and multi-injection strategies on combustion and emission characteristics were experimentally investigated in two common-rail diesel engines including a single-cylinder engine and a multi-cylinder engine. Results demonstrate that, with DMF addition into diesel, ID (ignition delay) prolongs and smoke decreases more greatly as EGR rate increases. When DMF addition fraction increases up to 40%, the inherent trade-off between NOx, and smoke can be eliminated, but the MPRR (maximum pressure rise rate) is too high. However, the higher MPRR can be reduced efficiently without serious penalties in smoke and BTE (brake thermal efficiency) by delaying CA50 and adding EHN reasonably. Although DMF and gasoline have very similar physic-chemical properties, DMF/diesel blends are much more efficient than gasoline/diesel wide-distillation blends to reduce soot with high EGR rates due to its much longer ID and atomic oxygen. With increasing DMF addition fraction, BTE is affected less by the delay of CA50, meanwhile, multi-injection strategies have less impact on soot generation. Additionally, as compared to the delay of CA50 and the addition of EHN, the employ of pilot injection is poor to reduced MPRR for DMF/diesel blends. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在两种共轨柴油机上,通过实验研究了DMF(2,5-二甲基呋喃)燃料性能与EGR(废气再循环),CA50,EHN(硝酸2-乙基己基酯)和多次喷射策略的组合对燃烧和排放特性的影响。发动机包括单缸发动机和多缸发动机。结果表明,将DMF添加到柴油中后,ID(点火延迟)会延长,并且随着EGR率的增加,烟气的减少也会更大。当DMF的添加比例增加到40%时,可以消除NOx和烟雾之间的固有折衷,但是MPRR(最大压力上升率)太高。但是,可以通过延迟CA50并合理添加EHN来有效降低较高的MPRR,而不会产生严重的烟雾和BTE(制动热效率)损失。尽管DMF和汽油具有非常相似的物理化学特性,但由于DMF /柴油混合物的ID和原子氧更长,因此在高EGR率下降低烟灰的效率比汽油/柴油宽馏混合物更高。随着DMF添加分数的增加,CATE的延迟对BTE的影响较小,同时,多次喷射策略对烟灰生成的影响也较小。此外,与CA50的延迟和EHN的添加相比,对于DMF /柴油混合物,采用引燃喷射的MPRR较差。 (C)2015 Elsevier Ltd.保留所有权利。

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