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首页> 外文期刊>Thermal science >Combustion simulation in a spark ignition engine cylinder: Effects of air-fuel ratio on the combustion duration
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Combustion simulation in a spark ignition engine cylinder: Effects of air-fuel ratio on the combustion duration

机译:火花点火发动机气缸内的燃烧模拟:空燃比对燃烧持续时间的影响

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Combustion is an important subject of internal combustion engine studies. To reduce the air pollution from internal combustion engines and to increase the engine performance, it is required to increase combustion efficiency. In this study, effects of air/fuel ratio were investigated numerically. An axisymmetrical internal combustion engine was modeled in order to simulate in-cylinder engine flow and combustion. Two dimensional transient continuity, momentum, turbulence, energy, and combustion equations were solved. The k-e turbulence model was employed. The fuel mass fraction transport equation was used for modeling of the combustion. For this purpose a computational fluid dynamics code was developed by using the finite volume method with FORTRAN programming code. The moving mesh was utilized to simulate the piston motion. The developed code simulates four strokes of engine continuously. In the case of laminar flow combustion, Arrhenius type combustion equations were employed. In the case of turbulent flow combustion, eddy break-up model was employed. Results were given for rich, stoichiometric, and lean mixtures in contour graphs. Contour graphs showed that lean mixture (l = 1.1) has longer combustion duration.
机译:燃烧是内燃机研究的重要课题。为了减少来自内燃机的空气污染并提高发动机性能,需要提高燃烧效率。在这项研究中,对空燃比的影响进行了数值研究。为了模拟缸内发动机的流动和燃烧,对轴对称内燃机进行了建模。求解了二维瞬态连续性,动量,湍流,能量和燃烧方程。采用了k-e湍流模型。燃料质量分数传输方程用于燃烧建模。为此,通过使用有限体积方法和FORTRAN编程代码开发了计算流体动力学代码。运动的网格被用来模拟活塞的运动。开发的代码连续模拟发动机的四个冲程。在层流燃烧的情况下,采用Arrhenius型燃烧方程。在湍流燃烧的情况下,采用涡流分解模型。在等高线图中给出了浓,化学计量和稀混合气的结果。等高线图显示,稀薄混合气(l = 1.1)具有更长的燃烧持续时间。

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