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Numerical analysis of the combustion process in a four-stroke compressed natural gas engine with direct injection system

机译:直喷四冲程压缩天然气发动机燃烧过程的数值分析

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In this paper, a numerical study to simulate and analyze the combustion process occurred in a compressed natural gas direct injection (CNG-DI) engine by using a multi-dimensional computational fluid dynamics (CFD) code was presented. The investigation was performed on a single cylinder of the 1.6-liter engine running at wide open throttle at a fixed speed of 2000 rpm. The mesh generation was established via an embedded algorithm for moving meshes and boundaries for providing a more accurate transient condition of the operating engine. The combustion process was characterized with the eddy-break-up model of Magnussen for unpremixed or diffusion reaction. The modeling of gaseous fuel injection was described to define the start and end of injection timing. The utilized ignition strategy into the computational mesh was also explained to obtain the real spark ignition timing. The natural gas employed is considered to be 100% methane (CH4) with three global step reaction scheme. The CFD simulation was started from the intake valves opening until the time before exhaust valves opening. The results of CFD simulation were then compared with the data obtained from the single-cylinder engine experiment and showed a close agreement. For verification purpose, comparison between numerical and experimental work are in the form of average in-cylinder pressure, engine power as well as emission level of CO and NO.
机译:本文利用多维计算流体动力学(CFD)代码对数值模拟研究和分析了压缩天然气直喷(CNG-DI)发动机中的燃烧过程进行了数值研究。研究是在全开节气门以2000 rpm的固定速度运行的1.6升发动机的单个气缸上进行的。网格生成是通过嵌入式算法建立的,该算法用于移动网格和边界,以提供运行引擎的更准确的瞬态条件。 Magnussen的涡流分解模型对未预混合或扩散反应进行了燃烧过程表征。描述了气体燃料喷射的模型以定义喷射正时的开始和结束。还说明了在计算网格中使用的点火策略,以获得实际的火花点火正时。采用三个全局步骤的反应方案,认为所用天然气为100%甲烷(CH4 )。 CFD模拟从进气门打开直到排气门打开之前开始。然后,将CFD模拟的结果与从单缸发动机实验获得的数据进行比较,并显示出密切的一致性。为了验证目的,数值和实验工作之间的比较是以平均缸内压力,发动机功率以及CO和NO的排放水平的形式进行的。

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