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Towards a comprehensive understanding of the influence of fuel properties on the combustion characteristics of a RCCI (reactivity controlled compression ignition) engine

机译:全面了解燃料特性对RCCI(反应堆控制压燃)发动机燃烧特性的影响

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The influence of fuel chemical properties on combustion characteristics of a RCCI (reactivity controlled compression ignition) engine was investigated using multi-dimensional simulations. The operating ranges of combustion phasing (CA50) for gasoline/diesel and methanol/diesel RCCI combustion were determined with respect to limited boundaries of fuel efficiency, RI (ringing intensity), and NOx (nitrogen oxide) emissions. The results indicated that a more retarded CA50 was necessary for methanol/diesel RCCI to avoid excessive RI due to its fast combustion rate. Because of the shortened combustion duration, reduced incomplete combustion, and lower heat transfer losses, improved fuel efficiency was achieved by methanol/diesel RCCI than gasoline/diesel RCCI. The trade-off relationship between RI and EISFC (equivalent indicated specific fuel consumption) could be defeated by increasing premixed fuel ratio (methanol or gasoline). For methanol/diesel RCCI, the more retarded CA50 was the primary reason for the higher sensitivity of CA50 to the variation of in cylinder initial temperature (T-IVC), which consequently could lead to higher cyclic variations. In addition, the weakened low temperature heat release of methanol/diesel also deteriorated the stability of CA50 with the variation of T-IVC Overall, with optimized premixed fuel ratio, RCCI combustion demonstrated more advantages in EISFC, RI, controllability, and stable operation over HCCI (homogeneous charge compression ignition) combustion for a wide load range. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用多维模拟研究了燃料化学性质对RCCI(反应控制压燃)发动机燃烧特性的影响。汽油/柴油和甲醇/柴油RCCI燃烧的燃烧定相(CA50)的运行范围是根据燃油效率,RI(振铃强度)和NOx(氮氧化物)排放的有限边界确定的。结果表明,由于甲醇/柴油RCCI的快速燃烧速率,它需要更缓和的CA50来避免过多的RI。由于缩短了燃烧时间,减少了不完全燃烧并降低了热传递损失,因此甲醇/柴油RCCI比汽油/柴油RCCI可以提高燃油效率。 RI和EISFC之间的折衷关系(等效表示的特定燃料消耗)可以通过提高预混合燃料比(甲醇或汽油)来克服。对于甲醇/柴油RCCI,CA50的阻滞性更大是CA50对气缸初始温度(T-IVC)变化较高的敏感性的主要原因,这可能导致较高的循环变化。此外,随着T-IVC的变化,甲醇/柴油的低温放热减弱也使CA50的稳定性下降。总体而言,通过优化预混燃料比,RCCI燃烧在EISFC,RI,可控性和稳定运行方面显示出更多优势。 HCCI(均匀充量压缩点火)燃烧可在较宽的负载范围内燃烧。 (C)2016 Elsevier Ltd.保留所有权利。

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