Effect of Split and Timing Injection Techniques on Diesel-Biodiesel Blends Fueled RCCI Engines

N. K. F. Al-Abboodi, Alaa R. Al-Badri, Ali A. Abdulsaeed
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Abstract

On reactivity-controlled compression ignition engines, numerical simulations approach were conducted to study the combined effect of the 2nd pulse fraction and dwell time on combustion and emissions characteristics powered by the diesel-biodiesel blends. The Diesel-RK commercial software carried out the simulation the engine was chosen. Meanwhile, the fuel is directly injected through engine cylinder, four stroke, and single cylinder. Simulations were conducted with different dwell times between start of injections of the 1st and 2nd pulses, while the start of injections times of 1st pulse keeping at -40o CA ATDC. Besides, the fuel fraction ratio of the 2nd pulse was changed at 90, 80,70, and 70%, accordingly. In this current study, the peak cylinder pressure and peak cylinder temperature were compared at various boundary conditions. The extracted results extracted from simulation showed that, in contrast to the dwell time 5o CA, a slightly reduction in peak cylinder pressure by 8.9, 7.8, 6.7, and 9.1% for 10, 15. 20, 25o CA respectively. Peak cylinder temperature showed identical trend, its decreased by 9.0, 6.8, 7.8, and 8.8% . Moreover, the results showed that by decreased fuel fraction ratio from 90 to 60%, the peak cylinder pressure increased by 10.1%, while peak cylinder temperature decreased by 7.9%. As a result of the current study, and based on the results of the experimental work published in the literature, it has been consistently demonstrated that the predictive numerical model is reliable..
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分注和定时喷射技术对以柴油-生物柴油混合物为燃料的 RCCI 发动机的影响
对反应控制压燃发动机进行了数值模拟,以研究第二脉冲分数和停留时间对柴油-生物柴油混合燃料的燃烧和排放特性的综合影响。选用 Diesel-RK 商业软件对发动机进行模拟。同时,燃油通过发动机气缸直接喷射,分为四冲程和单缸两种。在第 1 脉冲和第 2 脉冲开始喷射之间的停留时间不同的情况下进行了模拟,而第 1 脉冲的开始喷射时间保持在 -40o CA ATDC。此外,第 2 个脉冲的燃料分数比也相应地改变为 90%、80%、70% 和 70%。在本次研究中,比较了不同边界条件下的气缸压力峰值和气缸温度峰值。模拟提取的结果显示,与停留时间为 5o CA 时相比,在 10、15、20 和 25o CA 时,气缸峰值压力分别略微降低了 8.9、7.8、6.7 和 9.1%。气缸峰值温度的变化趋势相同,分别降低了 9.0%、6.8%、7.8% 和 8.8%。此外,研究结果表明,当燃料分量比从 90% 降至 60% 时,气缸峰值压力增加了 10.1%,而气缸峰值温度降低了 7.9%。通过本次研究,并根据文献中公布的实验结果,我们一致认为预测数值模型是可靠的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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