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Effect of Cetane Number and Fuel Properties on Combustion and Emission Characteristics of an HCCI-DI Combustion Engine Using a Novel Dual Injection Strategy

机译:三烷数量和燃料特性对使用新型双注射策略的HCCI-DI燃烧发动机燃烧和排放特性的影响

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Homogeneous Charge Compression Ignition (HCCI) combustion was studied as a means of reducing PM and NO_x emission simultaneously while maintaining high thermal efficiency and lower fuel consumption. An innovative low cost dual injection strategy is developed to investigate HCCI-DI combustion. This study is focused on the effect of fuel properties and cetane number on HCCI-DI combustion to understand the combustion and emission behavior of a direct injection HCCI engine using double injection strategy with blends of n-heptane and isooctane as fuel. A comparison is also made to understand the behavior and benefits of HCCI-DI combustion over the conventional combustion system. All experiments were carried out at a constant speed of 1350 rev/min and at zero, 15% and 30% of the full load conditions to avoid high knock intensity for high cetane fuel which occurs beyond this operating load condition. The most important finding is that a two phase heat release pattern is observed for high cetane fuel. As the quantity of isooctane is increased, low temperature heat release part diminishes and peak HRR, peak PRR and SOC moves away from the TDC due to longer ignition delay. It is observed that cetane number plays a major role in controlling the combustion phasing and emission behavior of the HCCI-DI combustion engine. A significant improvement in NO_X and smoke emissions are observed in HCCI combustion when compared with the conventional single injection combustion for all five blends of the fuel. It is observed that fuel with lower cetane number helps in reducing smoke and NO_X emission due to higher ignition delay with a marginal penalty in HC and CO emissions from such HCCI-DI engines.
机译:研究了均匀的电荷压缩点火(HCCI)燃烧作为减少PM和NO_X发射的手段,同时保持高热效率和较低的燃料消耗。开发了一种创新的低成本双注射策略来调查HCCI-DI燃烧。该研究专注于HCCI-DI燃烧对燃料特性和十六烷值的影响,了解使用双注射策略与正庚烷和异辛烷共混物的双注射策略来了解直喷HCCI发动机的燃烧和排放行为。还可以比较来了解HCCI-DI燃烧对传统燃烧系统的行为和益处。所有实验均以1350 Rev / min的恒定速度和零,15%和30%的全负荷条件进行,以避免高分燃料的高爆震强度,这发生超出该工作负载条件的高分子燃料。最重要的发现是为高分子燃料观察到两相热释放图案。随着异辛烷的量增加,低温热释放部分减小和峰值HRR,由于较长的点火延迟,峰值PRR和SOC远离TDC移动。观察到,十六烷值在控制HCCI-DI燃烧发动机的燃烧相位和排放行为方面发挥了重要作用。与燃料的所有五个共混物相比,在HCCI燃烧中观察到NO_X和烟雾排放的显着改善。观察到具有较低的十六烷数量的燃料有助于降低由于HC中具有边缘惩罚的较高点火延迟而降低烟雾和NO_X排放,并且来自这种HCCI-DI发动机的共同排放。

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