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A Study on the Effects of Cetane Number on the Energy Balance between Differently Sized Engines

机译:十六烷数对不同尺寸发动机能量平衡影响的研究

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This paper investigates the effect of the cetane number (CN) of a diesel fuel on the energy balance between a light duty (1.9L) and medium duty (4.5L) diesel engine. The two engines have a similar stroke to bore (S/B) ratio, and all other control parameters including: geometric compression ratio, cylinder number, stroke, and combustion chamber, have been kept the same, meaning that only the displacement changes between the engine platforms. Two Coordinating Research Council (CRC) diesel fuels for advanced combustion engines (FACE) were studied. The two fuels were selected to have a similar distillation profile and aromatic content, but varying CN. The effects on the energy balance of the engines were considered at two operating conditions; a “low load” condition of 1500 rev/min (RPM) and nominally 1.88 bar brake mean effective pressure (BMEP), and a “medium load” condition of 1500 RPM and 5.65 BMEP. Results were recorded at the same crank angle 50% burn (CA50) condition to decouple fuel effects from engine effects. The results show that the CN of the fuel impacts the distribution of supplied fuel energy in both engine systems. At the low load condition, a decrease in the fractional cylinder heat transfer is seen for the medium duty engine as CN increases. In general, the sensitivity of the engines to CN is found to increase as engine load increases. At the medium load condition, the observed differences in the fractional heat transfer are larger, and this is especially true for the medium duty engine. This in turn balances the tradeoff between the changes in mixture temperatures and combustion durations. Moreover, as the CN increases, the energy lost to the exhaust increases for both engines at the medium load condition. This is in contrast to the low load condition, where increasing the CN increases the energy in the exhaust of the medium duty engine, but decreases the energy in the exhaust of the light duty engine. Finally, at the low load condition, a higher CN consistently increases the brake fuel efficiency of both engines. This is in contrast, to the medium load condition, where increasing the CN of the fuel increases the brake fuel efficiency of the light duty engine, but causes a slight decrease in the brake fuel efficiency of the medium duty engine.
机译:本文研究了柴油燃料的十六烷值(CN)对轻型(1.9L)和中义(4.5L)柴油发动机之间的能量平衡的影响。两个发动机的孔(S / B)比具有类似的行程,并且所有其他控制参数包括:几何压缩比,汽缸数,行程和燃烧室一直保持相同,这意味着只有位移变化发动机平台。研究了两个协调研究委员会(CRC)用于先进燃烧发动机(面部)的柴油燃料。选择两种燃料具有类似的蒸馏曲线和芳族含量,但是Cn的变化。在两个操作条件下考虑了对发动机能量平衡的影响; “低负荷”条件为1500 Rev / min(rpm)和标称1.88巴制动器平均有效压力(BMEP),以及1500 rpm和5.65 bmep的“中等负荷”条件。结果以相同的曲柄角50%烧伤(CA50)条件记录,以与发动机效果脱油燃料效应。结果表明,燃料的CN会影响两个发动机系统中提供的燃料能量的分布。在低负荷条件下,随着CN增加,可以看到介质芯片传热的减小。通常,由于发动机负荷增加,发现发动机对CN的敏感性增加。在中负荷条件下,分数传热的观察到的差异较大,这对于中型发动机尤其如此。这反过来余额平衡混合温度和燃烧持续时间的变化之间的权衡。此外,随着CN的增加,在介质负载条件下的两个发动机损失到排气的能量增加。这与低负载条件相反,其中增加CN增加了中占用发动机的排气中的能量,但是降低了轻型发动机的排气中的能量。最后,在低负载条件下,较高的CN始终增加两个发动机的制动燃料效率。这相反,到介质负载条件,其中增加燃料的CN增加了轻型发动机的制动燃料效率,但是导致介质发动机的制动燃料效率略微降低。

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