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On the Validation of Large Eddy Simulation Applied to Internal Combustion Engine Flows Part II: Numerical Analysis

机译:大涡模拟应用于内燃机流量的验证第二部分:数值分析

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In internal combustion engines, the characteristic in-cylinder flow field is essential and significantly contributes to engine efficiency and performance. This paper describes the numerical investigation of the flow field in a motored 4-stroke, single-cylinder research engine. Quantitative and qualitative comparisons between experimental and numerical data have been performed at selected crank angle and results obtained in this work are discussed. Statistical flow properties are exam- ined to analyze the averaged and instantaneous flow field. In order to investigate higher order statistical velocity moments and gain insight in the physical processes describing the engine flow structure, multi-cycle Large Eddy Simulation (LES) was carried out on two meshes with different spatial resolution. The three-dimensional structure of the flow has been also visualized by means of iso-surfaces of vortical structures, based on the Q criterion for individual cycles during intake. In order to assess the analysis and to verify that the computational mesh is applicable for the performance of LES simulations, the turbulence resolution M and the ratio of sgs-viscosity to the laminar viscosity were evaluated along the planes of interest. A direct comparison of the statistics of the flow field extracted from the numerical predictions shows a very good agreement with measurements conducted in the same configuration.Discrepancies have been however observed, in particular in the higher moments of the velocity components. Whilst this can be attributed mostly to the limited number of statistical sample (50 LES cycles) collected during the simulation,further investigation is certainly necessary to assess the relevance of modeling and spatial resolution issues.
机译:在内燃机中,独特的缸内流场是必不可少的,并极大地有助于提高发动机的效率和性能。本文介绍了电动四冲程单缸研究型发动机流场的数值研究。在选定的曲柄角上进行了实验和数值数据之间的定量和定性比较,并讨论了在这项工作中获得的结果。检查统计流量属性以分析平均流场和瞬时流场。为了研究高阶统计速度矩并在描述发动机气流结构的物理过程中获得更多见识,对两个具有不同空间分辨率的网格进行了多周期大涡模拟(LES)。流动的三维结构也已通过涡流结构的等值面可视化,这是基于进气过程中各个循环的Q准则。为了评估分析并验证计算网格适用于LES模拟的性能,沿感兴趣的平面评估了湍流分辨率M和sgs粘度与层流粘度的比率。从数值预测中提取的流场统计数据的直接比较表明,与在相同配置下进行的测量非常吻合,但是观察到了差异,特别是在速度分量的较高矩处。尽管这主要归因于模拟过程中收集到的统计样本数量有限(50个LES周期),但肯定有必要进行进一步的研究以评估建模和空间分辨率问题的相关性。

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