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首页> 外文期刊>Thermal science >COMPUTATIONAL FLUID DYNAMICS SIMULATION OF THE COMBUSTION PROCESS, EMISSION FORMATION AND THE FLOW FIELD IN AN IN-DIRECT INJECTION DIESEL ENGINE
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COMPUTATIONAL FLUID DYNAMICS SIMULATION OF THE COMBUSTION PROCESS, EMISSION FORMATION AND THE FLOW FIELD IN AN IN-DIRECT INJECTION DIESEL ENGINE

机译:直喷式柴油机燃烧过程,排放形成和流场的计算流体动力学模拟

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摘要

In the present paper, the combustion process and emission formation in the Lister 8.1 I.D.I Diesel engine have been investigated using a Computational Fluid Dynamics (CFD) code. The utilized model includes detailed spray atomization, mixture formation and distribution model which enable modeling the combustion process in spray/wall and spray/swirl interactions along with flow configurations. The analysis considers both part load and full load states. The global properties are presented separately resolved for the swirl chamber (pre-chamber) and the main chamber. The results of model verify the fact that the equal amount of the fuel is burned in the main and pre-chamber at full load state while at part load the majority of the fuel is burned in the main chamber. Also, it is shown that the adherence of fuel spray on the pre-chamber walls is due to formation of a stagnation zone which prevents quick spray evaporation and plays an important role in the increase of soot mass fractions at this zone at full load conditions. The simulation results, such as the mean in-cylinder pressure, heat release rate and exhaust emissions are compared with the experimental data and show good agreement. This work also demonstrates the usefulness of multidimensional modeling for complex chamber geometries, such as in I.D.I Diesel engines, to gain more insight into the flow field, combustion process and emission formation.
机译:在本文中,已经使用计算流体动力学(CFD)代码研究了Lister 8.1 I.D.I柴油机的燃烧过程和排放物形成。所使用的模型包括详细的喷雾雾化,混合物形成和分布模型,这些模型能够对喷雾/壁和喷雾/旋流相互作用以及流动配置中的燃烧过程进行建模。分析同时考虑了部分负载和满载状态。旋涡室(预燃室)和主室的整体属性分别解决。模型的结果证实了这样的事实,即在满负荷状态下,在主腔室和预燃室中燃烧的燃料量相等,而在部分负荷下,大部分燃料在主腔室中燃烧。另外,还显示出燃料喷雾在预燃室壁上的附着是由于形成了停滞区,该停滞区阻止了喷雾的快速蒸发,并且在满负荷条件下在该区域烟灰质量分数的增加中起着重要作用。将缸内平均压力,放热率和废气排放等模拟结果与实验数据进行了比较,并显示出良好的一致性。这项工作还证明了对复杂的腔室几何形状进行多维建模(例如在I.D.I柴油发动机中)的有用性,以获取对流场,燃烧过程和排放物形成的更多了解。

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