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The influence of fatty acid methyl ester profiles on inter-cycle variability in a heavy duty compression ignition engine

机译:脂肪酸甲酯特性对重型压燃式发动机循环间可变性的影响

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摘要

With the advent of alternative fuels, such as biodiesels and related blends, it is important to develop an understanding of their effects on inter-cycle variability which, in turn, influences engine performance as well as its emission. Using four methanol trans-esterified biomass fuels of differing carbon chain length and degree of unsaturation, this paper provides insight into the effect that alternative fuels have on inter-cycle variability. The experiments were conducted with a heavy-duty Cummins, turbo-charged, common-rail compression ignition engine. Combustion performance is reported in terms of the following key in-cylinder parameters: indicated mean effective pressure (IMEP), net heat release rate (NHRR), standard deviation of variability (StDev), coefficient of variation (CoV), peak pressure, peak pressure timing and maximum rate of pressure rise. A link is also established between the cyclic variability and oxygen ratio, which is a good indicator of stoichiometry. ududThe results show that the fatty acid structures did not have a significant effect on injection timing, injection duration, injection pressure, StDev of IMEP, or the timing of peak motoring and combustion pressures. However, a significant effect was noted on the premixed and diffusion combustion proportions, combustion peak pressure and maximum rate of pressure rise. Additionally, the boost pressure, IMEP and combustion peak pressure were found to be directly correlated to the oxygen ratio. The emission of particles positively correlates with oxygen content in the fuel as well as in the air-fuel mixture resulting in a higher total number of particles per unit of mass.
机译:随着替代燃料的出现,例如生物柴油和相关混合物,重要的是要了解它们对循环间可变性的影响,而循环间可变性又会影响发动机性能及其排放。本文使用四种碳链长度和不饱和度不同的甲醇酯交换生物质燃料,本文提供了替代燃料对循环间可变性的影响的见解。实验是使用重型康明斯涡轮增压共轨压缩点火发动机进行的。根据以下关键缸内参数报告燃烧性能:指示平均有效压力(IMEP),净热释放率(NHRR),变异性标准偏差(StDev),变异系数(CoV),峰值压力,峰值压力正时和最大压力上升率。在循环可变性和氧比之间也建立了联系,这是化学计量的良好指示。结果表明,脂肪酸结构对喷射时间,喷射时间,喷射压力,IMEP的StDev或峰值机动时间和燃烧压力的时间没有显着影响。但是,在预混合和扩散燃烧比例,燃烧峰值压力和最大压力上升速率方面,注意到了显着的影响。另外,发现增压,IMEP和燃烧峰值压力与氧气比直接相关。颗粒的排放与燃料以及空气燃料混合物中的氧含量成正相关,导致每单位质量的颗粒总数更高。

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