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THE EFFECTS OF FUEL INJECTION PRESSURE AND FUEL TYPE ON THE COMBUSTION CHARACTERISTICS OF A DIESEL ENGINE

机译:燃油喷射压力和燃油类型对柴油机燃烧特性的影响

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In an effort to understand the effects of injection system pressure on alternative fuel performance, a single cylinder diesel engine was outfit with a modern common rail fuel injection system and piezoelectric injector. As future new fuels will likely be used in both older mechanical injected engines as well as newer high pressure common rail engines, the question as to the sensitivity of a new fuel type across a range of engines is of concern. In this study conventional diesel fuel (Navy NATO F76) was compared with the new Navy HRD (Hydro-processed Renewable Diesel) fuel from algal sources, as well as the high cetane reference fuel nC16 (n-hexadecane CN=100). It was seen that in general, IGD (Ignition Delay) was shortened for all fuels with increasing fuel injection pressure, and was shortened with higher CN fuels. The combustion duration for all fuels was also significantly reduced with increasing fuel injection pressure, however, longer durations were seen for higher CN fuels at the same fuel pressure due to less pre-mixing before the start of combustion. Companion modeling using the LLNL (Lawrence Livermore National Lab) heavy hydro-carbon and diesel PRF chemical kinetic mechanisms for HRD and nC16 was applied to understand the relative importance of the physical and chemical delay periods of the IGD. It was seen that at low fuel injection pressures, the physical and chemical delay times are of comparable duration. However, as injection pressure increases the importance of the chemical delay times increases significantly (longer), especially with the lower CN fuel.
机译:为了理解喷射系统压力对替代燃料性能的影响,单缸柴油机配备了现代共轨燃料喷射系统和压电喷射器。由于未来的新燃料将可能同时用于较旧的机械喷射发动机和较新的高压共轨发动机中,因此新燃料类型在各种发动机上的敏感性问题值得关注。在这项研究中,将常规柴油(海军NATO F76)与海藻来源的新型海军HRD(水处理可再生柴油)燃料以及高十六烷值参考燃料nC16(正十六烷CN = 100)进行了比较。可以看出,总体上,随着燃料喷射压力的增加,所有燃料的IGD(点火延迟)都会缩短,而CN含量较高的燃料会缩短IGD(点火延迟)。随着燃料喷射压力的增加,所有燃料的燃烧持续时间也显着减少,但是,在相同的燃料压力下,较高的CN燃料的燃烧时间更长,这是因为在燃烧开始之前预混合较少。使用LLNL(Lawrence Livermore National Lab)重烃和柴油PRF的HRD和nC16化学动力学机理进行伴侣建模,以了解IGD物理和化学延迟期的相对重要性。可以看出,在低燃油喷射压力下,物理和化学延迟时间是可比较的。但是,随着喷射压力的增加,化学延迟时间的重要性会显着增加(更长),尤其是使用较低的CN燃料时。

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