Quantification and Analysis of the Charge Cooling Effect of Methanol in a Compression Ignition Engine Utilizing PPC Strategy

Sam Shamun, B. Zincir, P. Shukla, Pablo Garcia Valladolid, S. Verhelst, M. Tunér
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引用次数: 7

Abstract

The charge cooling effect of methanol was studied and compared to that of iso-octane. The reduction in compression work due to fuel evaporation and the gain in expansion work were evaluated by the means of in-cylinder pressure measurements in a HD CI engine. A single injection strategy was utilized to obtain a longer premixing period to adequately capture the cooling effect. The effect was clear for both tested fuels, however, methanol generally caused the pressure to reduce more than iso-octane near TDC. It was found that the contribution of reduced compression work to the increased net indicated efficiency is negligible. Regarding the expansion work, a slower combustion with higher pressure was obtained for methanol in comparison to that of iso-octane due to the cooling effect of fuel evaporation. As a result from this, a lower heat transfer loss was obtained for methanol, in addition to the significantly lower NOx emissions.
基于PPC策略的压缩点火发动机甲醇充装冷却效果定量分析
研究了甲醇的充注冷却效果,并与异辛烷进行了比较。通过HD CI发动机的缸内压力测量,评估了燃油蒸发对压缩功的减少和膨胀功的增加。采用单次喷射策略,获得较长的预混期,以充分捕捉冷却效果。对两种测试燃料的影响都很明显,然而,在上止点附近,甲醇通常比异辛烷更能降低压力。结果发现,压缩功的减少对增加的净指示效率的贡献可以忽略不计。在膨胀功方面,由于燃料蒸发的冷却作用,与异辛烷相比,甲醇的燃烧速度较慢,压力较高。因此,除了显著降低NOx排放外,甲醇的传热损失也降低了。
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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