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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A quasi-dimensional combustion model for spark ignition engines fueled with gasoline–methanol blends
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A quasi-dimensional combustion model for spark ignition engines fueled with gasoline–methanol blends

机译:用汽油 - 甲醇共混物加油的火花点火发动机的准尺寸燃烧模型

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摘要

>The current work provides a quasi-dimensional model for the combustion of methanol–gasoline blends. New correlations for the laminar burning velocity of gasoline and methanol are developed and used together with a mixing rule to calculate the laminar burning velocity of the blends. Several factors (such as the laminar burning velocity, initial flame kernel, residual gas fraction, turbulence, etc.) have been investigated and the sensitivity of these factors and the used sub-models on the predictive performance was assessed. The simulation results were compared with measurement data from two engines on different gasoline–methanol blends. The results show the importance of the laminar burning velocity correlation, the method of initializing combustion and the turbulent burning velocity model. The newly developed laminar burning velocity correlation of gasoline performed equally or better than the existing correlations and the newly developed correlation of methanol outperformed the other correlations. The initial flame kernel size had a strong influence on the ignition delay. Changing the initial flame kernel to reproduce the same ignition delay was very effective to improve the simulations. Several turbulent combustion models were tested with the newly developed laminar burning velocity correlations and optimized ignition delay. In conclusion, the model of Bradley reproduced the trend going from gasoline to methanol much better than others due to the inclusion of the Lewis number.
机译: >当前工作提供甲醇 - 汽油共混物燃烧的准尺寸模型。开发汽油和甲醇的层流燃烧速度的新相关性,并与混合规则一起使用,以计算共混物的层状燃烧速度。已经研究了几种因素(例如层状燃烧速度,初始火焰核,剩余气体分数,湍流等),并评估了这些因素和使用的子模型对预测性能的敏感性。将仿真结果与来自不同汽油 - 甲醇共混物的两个发动机的测量数据进行了比较。结果表明了层流燃烧速度相关性,初始化燃烧和湍流燃烧速度模型的重要性。新开发的汽油的层状燃烧速度相关性同样或优于现有的相关性和甲醇的新开发的相关性优于其他相关性。初始火焰核大小对点火延迟产生了很强的影响。更改初始火焰内核以再现相同的点火延迟非常有效地改善模拟。用新开发的层状燃烧速度相关性和优化的点火延迟测试了几种湍流燃烧模型。总之,布拉德利的模型转载了从汽油到甲醇的趋势,这比其他人含有lewis编号。

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