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首页> 外文期刊>Energy Conversion & Management >Experimental and chemical kinetic study of the impact of n-butanol blending on the gross engine performance of a CRDI engine
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Experimental and chemical kinetic study of the impact of n-butanol blending on the gross engine performance of a CRDI engine

机译:正丁醇混合对CRDI发动机总发动机性能影响的实验和化学动力学研究

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摘要

The effect of different fuel injection strategies for a CI internal combustion engine running on n-butanol/diesel blends is reported in this study. n-Butanol was blended in proportions of 5%, 10% and 20% (by vol.) and engine performance was compared with those obtained from commercially available diesel fuel. The effects of fuel injection pressure [HP], start of injection [SOU and split injection ratios were explored in this work. A single cylinder common rail direct injection engine running at a speed of 1050 +/- 30 rpm was used for performance analysis. Initially, a baseline set of experiments were performed for all the fuel blends with the engine operating at 800 bars fuel injection pressure [FIP], 9 degrees BTDC SOI, 3.48 BMEP and with 0% split injection. In-cylinder pressure, heat release rate, exhaust gas temperature and NOx emission were recorded for all the experiments. Additionally, for the base case, indicated gross engine performance parameters like BSFC and BTE were also determined. Subsequently, a parametric study of three different injection strategies was performed and variations in the indicated parameters and NOx emissions were thoroughly analysed. Significant reduction in NOx emission due to n-butanol blending, retarded start of injection and split injection were observed and reported as part of this work. A skeletal n-dodecane-butanol mechanism was used to investigate the causes for NOx emissions decrease due to the addition of n-butanol to diesel fuel. Qualitative insights gained from combustion kinetics simulations in an idealized homogeneous combustion model are discussed.
机译:在这项研究中报道了CI内燃机在正丁醇/柴油混合物上运行时不同燃料喷射策略的影响。将正丁醇以5%,10%和20%(以体积计)的比例混合,并将发动机性能与从市售柴油获得的性能进行比较。在这项工作中,研究了燃油喷射压力[HP],喷射开始[SOU]和分流喷射比的影响。性能分析使用了以1050 +/- 30 rpm的速度运行的单缸共轨直喷发动机。最初,对所有混合燃料进行了一组基准实验,发动机在800 bar燃油喷射压力[FIP],9度BTDC SOI,3.48 BMEP以及0%分喷的情况下运行。记录所有实验的缸内压力,放热率,排气温度和NOx排放。另外,对于基本情况,还确定了指示的总发动机性能参数,例如BSFC和BTE。随后,对三种不同的喷射策略进行了参数研究,并对指示参数和NOx排放量的变化进行了全面分析。观察到由于正丁醇混合,延迟的开始喷射和分流喷射而导致的NOx排放量显着减少,并已报告为这项工作的一部分。使用骨架正十二烷/正丁醇机理研究了由于向柴油中添加正丁醇而导致NOx排放减少的原因。讨论了从理想均质燃烧模型中的燃烧动力学模拟获得的定性见解。

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